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US3766910A - Disposable delicate tissue retractor - Google Patents

Disposable delicate tissue retractor
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US3766910A
US3766910AUS00079372AUS3766910DAUS3766910AUS 3766910 AUS3766910 AUS 3766910AUS 00079372 AUS00079372 AUS 00079372AUS 3766910D AUS3766910D AUS 3766910DAUS 3766910 AUS3766910 AUS 3766910A
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blades
retractor
body member
elongated members
separations
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P Lake
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Abstract

A disposable self-retaining brain and delicate tissue retractor with interchangeable disposable blades. The retractor and blades are designed to be molded from a lightweight material such as a plastic. The blades may be made of various shapes and sizes and, in most instances, are designed to be coated with a strip of gauze like material to protect and prevent injury to the brain or other soft tissue.

Description

United States Patent 1191 Lake 5] Oct. 23, 1973 DISPOSABLE DELICATE TISSUE 3,030,947 4/1962 Engelbert 128/20 x RETRACTOR 3,199,512 8/1965 Cavanaugh et al. 128/345 X 3,364,919 1/1968 Hunnicutt 128/20 Inventor: Peter Lake, 121 Palm Canyon 3,570,475 3/1971 Weinstein 1213/20 Dr., Palm Springs, Calif. 92262 1 22 F] d FOREIGN PATENTS OR APPLICATIONS 1 1970 339,072 4/1936 Italy 128/345 [21] Appl, No; 79,372 11,426 0/1901 Great Britain. 128/17 559,239 7/1957 Belgium 128/17 lll. 1286361122433; Primary Examiner xy.le L- Howe," 58 Field of Search 24/20 TT, 248 L, A'tomeyspensley and Lub'tz 24/255 SL, 255 TZ; 128/17, l8, 19, 20, 242,
243, 244, 341, 345 ABSTRACT V A disposable self-retaining brain and delicate tissue [56] References f retractor with interchangeable disposable blades. The UNITED STATES PATENTS retractor and blades are designed to be molded from a 2 233 5 4/1941 Jacques." 123/34] X lightweight material such as a plastic. The blades-may 447,761 3/1891 Clough 123/17 be made of 'various shapes and sizes and, in most in- 569,839 10/1896 Roeloffs 128/17 stances, are designed to be coated with astrip of 776,302 9 CrQCkett 1213/20 gauze like material to protect and prevent injury to v I 3 the brain or other soft tissue 2,083,573 6/1937 Morgan 128/345 X 1 2,717,592 9/1955 Swineheart 128/17 19 Claims, 17 Drawing Figures PATENTEDUCT 23 I975 SHEET 1% 3 1 N VEN TOR.
PMENTEDUBIZB I975 3.756310 sum 2 or 3 1 N VEN TOR.
PAIENIEnnmams armsmo SHEET 3 OF 3 P572? 4 [4/65 INVENTOR.
. .1 DISPOSABLE DELICATE TISSUE RETRACTOR BACKGROUND OF THE INVENTION 1. Field of the Invention This invention relates to the field of surgical devices and more particularly to soft tissue retraction surgical devices.
2. Prior Art An important part of all surgical procedures is exposure of an adequate operative field. To do this, soft tissue must be retracted for prolonged periods. By way of example, in brain surgery, it is often necessary to incise through braintissue and retract it aside to reach for tumors or blood clots deep within the brain substance. Also, manyoperations are designed to elevate the brain from the floor of the skull by retraction in order to reach the blood vessels and structures beneath the brain. i
1 Existing brain retractors in current use are of .two types. There are bent metal retractors, somewhat similar in shape to the familiar tongue depressor, in general being bent to achieve more complicated shapes. Such instruments are held by hand and, therefore, require the surgeon to perform all other tasks with the remaining hand. These instruments are further limited by the fact that they retract only one lip or side of an incision at a time and, because they are hand-held, the pressure applied to the tissue, such as the brain, is variable with the delicacy and length of the operating procedure. In addition, they are relatively expensive, ranging in price from $3.00 to $25.00 for each retractor.
The second type of available retractor is the selfretaining type. These instruments are not hand-held and, therefore, leave free both hands of the surgeon to perform other operating tasks. However, these retractors are fabricated of metal, and as such are heavy and may damage the soft tissue simply by the weight alone unless fixed or supported in some way. For brain surgery they require fixation to the bone of the skull either by clamping, which may be unstable, or by drilling another hole into the skull andscrewing a fixation post intothe bone. These retraction devices, like the handheld retraction device described above, also retract only one lip or side of a wound; Their cost-ranges typically from about $300000 to $1,000.00 for each retractor. I
BRIEF SUMMARY OF THE INVENTION ther designed to minimize any trauma which brain or other delicate tissue may undergo with retraction.
Three specific embodiments of the present invention are described herein. All the embodiments are' designed to be molded of plastic and contain arms on which disposable blades of various designs may readily be mounted. The retractors contain means for adjusting and locking the retractor blade separation and are of sufficiently low weight so as to allow the resting of ing additional support.
The retractor is designed to havedisposable blades and to retract both sides of an incision in varying amounts depending on the operation requirements. By
having disposable blades of various sizes and shapes, the retractor maybe used as a soft tissue retractor for nearly any operation. ;In addition, one of the disposable blades may be replaced with a tooth blade or a hook which, by way of example, would hook to the skull at the edge of the opening .in the skull created for purposes of the operation. In this mannerthe other blade would provide support for the brain and retraction between the brain and the skull. t
For most operations, a strip of gauze-like material, (e.g., telfa") with adhesive on the reverse side is fastened to the soft tissueside of the retractor blades and overlaps the plastic border thereon by approximately one millimeter to protect the soft tissue and to assist in absorbing fluids that may be secreted as a result of the wound.
BRIEF DESCRIPTION 'OF DRAWINGS FIG. 1 is a perspective of the retractor of the present invention showing the locking device, the retractable blades and the telfa pads thereon.
FIG. 2 is a top viewof the retractor of FIG. 1 showing the locking means in greater detail and indicating two. of the many possible lock positions for the arms of the retractor.
FIG. 3 is a side view of the retractor of FIG. 1 showingadditional detail in its structure.
FIG. 4 is a view of the retractor looking into the end of the retractor arms with the arms set so as to achieve the minimum retractor blade spacing.
FIG. 5 is a cross-sectional view of part of the retractor of FIG. 1 showing greater detail in the locking mechanism for the retractor arms.
FIG. 6 is an end view of one of the retractor arms end blade showing an alternate shape for a disposable blade and the location of the pad of gauze-like material on the blade.
FIG. 7 is a side viewof the blade and arm of FIG. 6 illustrating the overlap of the gauze-like pad with respect to the interchangeable blade.
FIG. 8 is a sketch illustrating the: use of the retractor of FIG. 1 to retract or separate the walls of an incision in brain tissue to enable the brain surgeon to reach tumors or blood clots deep within the brain substance.
FIG. 9 is a perspective view of a hook which may be used in place of one of the interchangeable blades of the retractor of FIG. 1.
FIG. 10 is a sketch illustrating the use of the retractor with the hook of FIG. 9, whereby the hook engages the skull at the edge of the skull opening and the blade of the retractor elevatesthe brain away from the base of the skull so that the surgeon may reach blood vessels and structures in that area. v
FIG. 11 is a top view of an alternate embodiment of the present invention, showing an alternate configura- FIG. 14 is a perspective view of a preferred embodiment with the locking members snapped together in functional disposition.
FIG. 15 is a perspective view of the preferred embodiment of the present invention as it would be molded of plastic.
FIG. 16 is a side view of the present invention soft tis sue retractor of FIG. 15.
FIG. 17 is a cross-sectional view of the preferred embodiment of the soft tissue retractor taken along lines 17-l7 of FIG. 15, showing the manner in which the locking members are retained in functional relationship to each other.
DETAILED DESCRIPTION OF THE INVENTION The invention to be presently described in detail is a disposable, self-retaining brain and delicate tissue retractor fitted with interchangeabledisposable blades lined with a disposable protective coating. This retractor is designed to be low cost, light in weight and to enable the surgeon to have both hands free to perform other tasks in the operation. The retractor is designed to minimize any trauma which brain or other delicate tissue may undergo upon retraction, and is further designed to retract both sides of an incision in soft tissue, or to elevate soft tissue away from bone structure.
Now referring to FIG. 1, a perspective view of one embodiment of the present invention soft tissue retractor may be seen. This embodiment of the retractor is comprised of the assembly of four separate molded parts. These parts are a molded ring 10 withretractor blade arms 12, two interchangeabledisposable retractor blades 14, each of which slides into a mating groove in the ends of the retractor blade arms, and alocking member 16 which locks ring member 10 so as to achieve the desired separation inretractor blades 14. Theretractor blade arms 12 each containfinger grips 18, which the surgeon may use to vary the separation in theretractor blades 14 prior to locking the retractor blades in position bylocking member 16. Also, illus :trated in FIG. 1 are the disposable protective covering 20 of the retractor blades, which are generally used on the retractor of the present invention.
Now referring to FIG. 2, additional details of the retractor may be seen. Retractor ring 10 contains atongue member 30 which extends into the opening betweenmembers 32.Tongue member 30 has a plurality ofholes 34 generally disposed in a radial direction of ring 10 and equally spaced about the circular arc oftongue 30.Members 32 also contain a plurality of holes 36 generally directed in a radial direction of ring 10, and disposed in a circumferential direction with the same spacing ofholes 34 intongue member 30.
Lockingmember 40 contains locking pins 42 which have the same spacing asholes 34 and 36 ofmembers 30 and 32 respectively. Therefore, locking pins 42 may be inserted intoholes 34 and 36 when someholes 34 oftongue member 30 are in line with the holes 36 inmembers 32 as shown in the cutaway sketch of FIG. 5. When so positioned, the-lockingpins 42lock tongue member 30 with respect tomembers 32, thereby lockingretractor arms 12 at a specific separation and more importantly, lockinterchangeable retractor blades 14 at a fixed separation.
In the embodiment shown, lockingmember 40 contains three lockingpins 42 andmembers 32 contain three sets of holes 36 whereastongue member 30 conains a plurality of holes substantially exceeding three in number, so that three holes oftongue member 30 will align with the holes 36 inmembers 32 for various separations ofretractable blades 14, thereby allowing the locking of theblades 14 by lockingmember 40 at various distances of separation.
' Shown in phantom of FIG. 2 is the position of theretractor arms 12 for minimum separation of theretractor blades 14. It may be seen that theretractor arms 12 do not come together in this position, but are disposed in a substantially parallel position with a substantial separation therebetween. However, theretractor blades 14 are substantially in contact when theretractor arms 12 are so located. This is well illustrated in FIG. 4 where it may be seen that because of the angle or bend 44 in theretractor blades 14, a-large portion of theretractor blades 14 generally, indicated by the numeral 46, is in contact with or in close proximity to the other retractor blade. Also illustrated in FIG. 4 is the separation in theretractor arms 12 when theretractor blades 14 are in close'proximity as just described.
FIG. 4 furtherillustrates the use of thetelfa pads 50 on the outer surfaces of the retractor blades. It may be seen that in general the gauze-like pads 50 will extend from approximately theangle 44 in theretractor blades 14 to slightly beyond the lower edge of theretractor blades 14, so as to provide an overlap ofpadding 52 to curve around the lower end of the retractor blades and to prevent damage to tissue by the end of the blades. Thepad 50 also extends in a direction parallel to theretractor arms 12 so as to slightly overlap the edges of theretractor blades 14 again for the purposes of pre- '-venting injury to the tissue by the edges of theretractor blades 14. This may be seen generally in FIGS. 1, 2, 3, 7 and 12, generally indicated by the numeral 52. In the preferred embodiment,pad 50 would be provided with an adhesive backing so that it would naturally adhere to the surfaces of theretractor blades 14 in the desired position. In alternative embodiments,pad 50 might be in the shape of an envelope so as to substantially fully enclose the lower portion of theretractor blades 14, fully protecting the wound from contact withretractor blades 14 and perhaps retain in position on the retractor blades by adhesive backing, appropriately placed.
Referring to FIG. 3, a side view of the retractor of FIG. I'may be seen. This figure illustrates the generally planar character of ring 10 andretractor arms 12 and the nature of the protrusion which forms the finger grips 18. Also shown in this figure is the generally overlapping nature oftelfa pad 50 at the edges of theretractor blade 14 indicated generally by theareas 54 of the telfa pad. In general, the underside ofarms 12 and ring 10, generally indicated bysurface 60, will rest on and be supported by an area of the body surrounding the incision in whichretractor blades 14 have been inserted. The generally planar character ofretractor arms 12 and ring 10 is suitable for most operations and, therefore, constitutes the form of the preferred embodiment. However, it is to be understood thatarms 12 and ring 10 can be given other shapes so as to generally conform to the contours of the areas of the body and operations being performed.
FIG.6 shows an alternate shape forretractor blade 14. This blade is similar in shape to the blades shown in FIG. 4 but does not have theangle 44. Such a blade might be used in conjunction with the retractor of FIG. 1 to provide a wider retraction at the mouth of the incision than at the base of the incision. At a further alternative, the slots in the end of theretractor arms 12 in which theretractor blades 14 fit may be substantially vertical when viewed as shown in FIG. 4, rather than inclined as shown in that FIG. In such a case, retractor blades such as those shown in FIG. 6 would project substantially parallel to each other when mounted to theretractor arms 12 and would allow locking of the retractor blades at greater separations than possible with the configuration of FIG. 4, though such blades would have a substantially greater minimum separation than is possible with the configuration of FIG. 4. It is to be understood that the details of the manner in whichretractor blades 14 are attached to theretractor arms 12 may be varied without departing from the spirit and scope of the present invention. Similarly, the blades themselves may be varied so as to be adapted for use in various surgical procedures. By way of example, in the preferred embodiment, interchangeable retractor blades of various lengths, widths, angles, offsets or curvatures would be made available for use with the same retractor, so as to make that retractor useful in many varied types of operation. In general, the retractor blades and the retractor body would be sold independently in presterilized packages so that only the package containing the desired blades need be opened for a specific operation, and only those blades and the retractor body need be disposed of after the operation.
FIG. 7 is a side view of theretractor arm 12 with aretractor blade 14 mounted thereon and atelfa pad 50 attached to the retractor blade. It may be seen that thepad 50 is somewhat larger than theretractor blade 14 so as to overlap both theedges 54 and the bottom 52 of theretractor blade 14, presenting to the wound a fully padded and protected retractor blade.
FIG. 8 is. a sketch illustrating the use of the present invention, retractor in brain surgery. As shown in the F IG., the brain is exposed by drilling sixholes 60 in the skull and slicing the skull so as to interconnect theholes 60 to make removeable an area of the skull 64 defined by the holes. A portion of the scalp between two holes is not severed so that the removeable portion of the scalp 64 may be pivoted on the flap the brain scalp 66 and made to rest on an adjacent area of the head to expose the desired area. This exposes the dura mater which envelopes the brain and is external to the arachnoid and pia mater. In such an operation it is often necmember 40 may then be inserted so as to lock thering 12 in a fixed'position so that finger pressure is no longer required on finger grips 18 to maintain the desired separation inretractor blades 14. Although ring member 10 may only be locked in certain specific positions, a sufficient number of locked positions may be provided by the plurality of holes 30 (FIG. 2) so as to achieve substantially all desired retractor settings. Also, it is to be understood that means for locking the retractor other than that shown in detail in FIGS. 2 and 5 may be provided. By way of example,member 40 might be designed to have only one or two lockingpins 42 andmembers 32 might have a plurality of holes 36 equal in number to one more or one less than the number of holes intongue member 30, thereby providing a vernier adjustment or selection of the retractor blade spacing by inserting lockingmember 40 into one of the possible hole combinations. This and other locking means may readily be adapted for use with the retractor of the present invention by anyone skilled in the mechanical arts.
The retractor of the present invention is sufficiently light in weight that'it requires no fixation to the body of the patient, other than that which naturally arises from the location of the retractor blade in the incision while the soft tissue is retracted. Furthermore, the retractor need not rest on or be supported by bone structure. By way of example, as shown in FIG. 8, the retractor may rest upon and be supported by the dura covering the brain without fear of injury to either the dura or the brain structure thereunder. Therefore, separate holes in the skull for purposes of anchoring the retractor are not required, nor is the surgeon required to use one hand for operating the retractor once the retractor is properly set. Furthermore, since the retractor may rest on the dura, the retractor physically may be relatively small and, therefore, need not needlessly encumber the operating area.
In some operations it is necessary to elevate the brain from the floor of the skull by retraction in order to reach the blood vessels and structures beneath the brain. For such purposes, one of the retractor blades may be configured as a hook-like member as shown in FIG. 9. (Though the blades heretofore described have been substantially fiat blades, the term blade as used herein is used in the general sense to include, by way of, example, blades of various shapes and curvatures,
essary to incise through brain tissue and retract it aside to reach for tumors or blood clots deep within the brain substance. To do this an incision is first made and then the retractor of the present invention is used to separate the brain tissue at the incision so as to make accessable tissue deep within thebrain substance. The retractor may be put in place by removing lockingmember 40, squeezing on finger grips 18 so as to bring theretractor blades 14 into close proximity as shown in FIG. 4, and inserting theretractor 14 into the incision. Because theretractor blades 14 are interchangeable, the size and shape of the blade may be selected depending on the requirements of the particular operation and the nature of the incision which has been made. Once the blades are inserted in the incision, the brain tissue may be retracted by lessening the pressure applied to the finger grips 18', thereby allowing ring 10 to partially spring open forcingretractor blades 14 to move away from each other and to open the incision made in the brain. When the desired opening is obtained, locking and to include hooks and hook members, as are about to be described herein.) In this figure, hook member containshook 72 and mountingsurfaces 74 which make it interchangeable with theblades 14 of the retractor variously depicted in FIGS. 1 through 8.Hook member 70 may be used in conjunction with one of theretractor blades 14 in a retractor to elevate the brain as shown in FIG. 10. In this figure, as opening has been made in the side of the skull so as to provide access to the base of the brain.Retractor blade 14 is then inserted beneath thebrain 76 withhook members 70 hooking over the edge of the opening in theskull 78, thereby allowing retraction of thebrain 76 with respect to theskull 78 to lift the brain from the base of theskull 78 and provide access to the floor of the skull in order to reach the blood vessels and other structures there located. 7 1
FIGS. 11 and 12 present a top view and a side view of an alternate embodiment of the present invention. In this embodiment, theretractor blades 14 may be sub- 7 stantially the same as the retractor blades in the embodiment pictured in FIG. 1. As in that embodiment, the blades of the embodiment shown in FIGS. 11 and 12 are also removeable and blades or hooks of various designs may readily be slipped in place in the ends ofretractor arms 80. The retractor arms of this embodiment form a basic V shape with the structure in the vicinity of the apex of the V providing the required elasticity to encourage theretractor arms 80 to a fully separated position. Finger grips 82 are similar in function to fingergrips 18 of the embodiment shown in FIG. 1, and provide a means for changing the separation of theretractor blades 14.
Lockingmember 84 may be used to lock theretractor blades 14 at various separations by the placement oflock 84 at any of a plurality of possible positions along theretractor arms 80. Lockingmember 84 is shown in FIG. 11 in a position to lock theretractor arms 80 in the position formaximum retractor blade 14 spacing. Shown in phantom in that figure is an alternate location for lockingmember 84, which locks retractor arms in a position for a smaller retractor blade spacing. Additional retractor blade spacings may be obtained either by providing more numerous positions for lockingmember 84 or by providing a selection of lockingmembers 84 which may be used so as to achieve virtually any desiredretractor blade 14 spacing.
FIG. 13 presents a cross-section of the retractor of FIGS. 11 and 12 taken on lines 13-13 of FIG. 12. This cross-section shows further details in the structure of lockingmember 84 and ofretractor arms 80 in the regions of the various locking member positions.Retractor arms 80 have a generally circular cross-section in the locking area withV notches 86 in eacharm 80 disposed in a generally outward facing direction. Lockingmember 84 contains hook-like projections 88 which, when in position, retainarms 80 with respect to lockingmember 84. By applying pressure on finger grips 82 (FIG. 11), theretractor arms 80 may be encouraged into closer proximity to each other, thereby allowing the removal or change of lockingmember 84 to a new locking position. Further integrity in the locking action between lockingmember 84 and theretractor arms 80 is provided by the contouring of the inner surface of locking member 84' so as to mate with the surfaces ofnotches 86 in theretractor arms 80.
Now referring to FIG. 14, a perspective view of a preferred embodiment of the present invention may be seen. This embodiment of the invention consists ofbody member 100 with twoarms 102, extending therefrom in side by side relationship and each having areplaceable retractor blade 104 attached to the end thereof. The arrangement ofarms 102 and the manner in whichreplaceable blades 104 attach thereto is the same as in the embodiments previously disclosed herein, particularly the embodiment shown in FIGS. 1 through 4.Body member 100 is in the form of a split ring having aflexible portion 106 betweenarms 102 and further havingmating locking members 108 and 109 adjacent to the split inbody member 100. As molded, the lockingmembers 108 and 109 are disposed in a non-functional relation as shown in FIG. 15, and are subsequently elastically encouraged to the functional relationship shown in FIG. 14. In this position, the teeth 1070f the lockingmembers 108 and 109 are elastically encouraged into engagement and, as a result of this engagement, provide a means of locking the-retractor blades 104 in the desired separation.
The body member is molded of plastic material in the shape shown in FIG. 15. As previously described, lockingmembers 108 and 109 are disposed in a nonfunctional relationship butbody member 100 is intentionally designed and fabricated to have sufficient elastic properties so that lockingmembers 108 and 109 may be elastically deformed to their functional disposition shown in FIG. 14. It is to be also noted in FIG. 15 thatbody member 100 is molded witharms 102 in a substantially converging orientation so that whenretractor blades 104 are mounted thereto, as was shown in FIG. 4 for theretractor blades 14 pictured therein, thearms 102 are elastically urged into substantially a parallel relationship. In this manner, theelastic area 106 betweenarms 102 is elastically encouragingretractor blades 104 into closer proximity to each other even for little or substantially no initial retractor blade separation. Of course, as the soft tissue retractor is normally disposed in an incision in soft tissue, the normal pressure of the soft tissue onretractor blades 104 also encourages the retractor blades into lesser separation. Consequently, lockingmembers 108 and 109 need not provide a bilateral locking action, but need only provide a unilateral action so as to preventretractor blades 104 from moving into lesser separations. To accomplish this, theteeth 107 of the lockingmembers 108 and 109 are inclined in the manner shown in FIGS. 14 and 15 so that they provide the desired unilateral locking action but are free to slip over each other in the opposite direction to adjust to and lockretractor blades 104 at greater separations.
Body member 100 contains finger grips 110 which extend upward frombody member 100. By applying finger pressure betweenthese finger grips 100, theretractor blades 104 may be moved into greater distances of separation and locked at any of a number of separations by the action of theteeth 107 on lockingmembers 108 and 109. Also protruding upward are therelease fingers 112, one of which extends upward from the end of a lockingmember 108 and the other from the end of lockingmember 109. To release thelockingmembers 108 and 109 so thatretractor blades 104 may be moved to lesser separations, finger pressure may be applied to therelease fingers 112 so as to elasticallyencourage lockingmembers 108 and 109 into separation, thereby allowing the translation of the locking members with respect to each other in a direction normally' prevented by the engagement of the teeth thereof.
Now referring to FIG. 16, a side view of this preferred embodiment of the present invention soft tissue retractor may be seen. As was previously described in regard to previously disclosed embodiments,body member 100 is a substantially flat member with the only substantial downward protrusions being thereplaceable retractor blades 104. Since the soft tissue retractor will normally be molded of a light weight material and in particular a light weight plastic material, the substantially flat bottom surface ofbody member 100 allows the soft tissue retractor to lie flat on an area of the body adjacent to the incision without additional anchoring or support. Also shown in this figure are the finger grips 110 and therelease fingers 112, which are the only substantial protrusions above the top surface ofbody member 100, thereby providing a minimum of obstruction and encumbrance of the operating region.
Now referring to FIG. 17, a cross-section of lockingmembers 108 taken along lines 17-17 of FIG. may be seen. In this figure, it may be seen that lockingmembers 108 and 109 have mating toothed surfaces substantially in the form of a tongue and groove with theteeth 107 located on the end of the tongue and inthe bottom of the groove. This arrangement tends to retain lockingmembers 108 and 109 in functional disposition and to prevent their lateral displacement and return to the molded position shown in FIG. 15, particularly with finger pressure is applied tofinger grips 110 or releasefingers 112.
In this last embodiment, which is the preferred=embodiment, thebody member 100 elastically encouragesretractor blades 104 to lesser separations and the lockingmembers 108 and 109 act to prevent the movement ofretractor blades 104 to such lesser separations. In this manner, any slippage or failure of the lockingmembers 108 and 109 result in the movement of theretractorblades 104 to lesser separations, that is, to the closed position, as a result of both the elastic deflection of theelastic member 106 and the normal pressure that the wound would apply to theretractor blades 104. This movement, that is the movement of the retractor blades so as to close the wound, upon the unlikely occurrence of the failure in the lockingmember 108 and 109 to properly perform, would in most operations be the desired occurrence. This is in contrast to the characteristics of the two specific embodiments previously described, both of which are elastically encouraged to the open position, that is to greater separations of theretractor blades 104, should a malfunction of the locking mechanism occur.
The soft tissue retractor of the present invention reduces the trauma experienced during the operation over that experienced by using the prior art retractors.
. In addition to the trauma reducing effect of the gauze pads, the more equal distribution of pressure around the incision, because of equal retraction on both sides of the incision rather than the unilateral retraction characteristic of the prior art retractors, has a substantial trauma reducing effect. Also, it is easier to periodically loosen the present invention retractor during the operation which also has a trauma reducing effect.
The soft tissue retractor of the presnt invention may be molded of any of a number of plastics, since many plastics have sufficient strength and elasticity for such purposes and yet are sufficiently light to yield a durable and useful soft tissue retractor which doesnot require anchoring or support. Though a plastic having the capability of maintaining its properties when immersed in boiling water would allow sterilization of the soft tissue retractor in boiling water, such a temperature capability in the plastic used is not required, as other means of sterilization are commonly used for such equipment. By way of example, plastic forceps and other instruments are commonly sterilized in an ethylene oxide atmosphere at normal temperatures, thereby providing adequate sterilization without temperature elevation. Consequently, plastic such as polypropylene and polyethylene are suitable for such purposes because of their light weight, moldability, strength and physical integrity. Also of particular interest for use in the present invention is polystyrene, which though havng a relatively low heat resistance, is an inexpensive material which is easily molded and readily sterilized in an oxidizing atmosphere.
It is to be understoodthatthethree embodiments of the present invention described herein in detail are presentedmerely for purposes of illustration, and having now described the details of these embodiments, one skilled in the art of surgical devicescould readily construct soft tissue retractors of otherdesigns having theinvented features of theherein described soft tissue retractorsrBy way ofexamplegflexible member 106 in FIGS. 14 and 15 might be replacedbya pivot, thereby making body member into twopieces and allowing the pressure of the softtissue to encourageretractor blades 104 .into lesser separations should the locking device fail to properlyperform. Similarly,body member 100, whether one piece or two as just described, might be curved, bent or have other shapes substantially different from the flat ring like shape shown in FIG. 14 and FIG. 15. Also various otherlocking devices may be .used inplace of the locking devices disclosed herein. These and other variations of the present invention may become particularly useful in specific types of operations wherein a specific configuration or specific locking method is particularly desired.
Iclaim:
l. A soft tissue retractor comprised of blades, a body member and a locking means,
said body member having first and second end re gions and being curved so as to enclose an area, with said first and second end regions adjacently disposedinoverlapping relationship with respect to each other, said body member including integral therewith two adjacent generally coplanar elongated members extending therefrom generally in theplane of said body member, and extending from one side of said body member;
said elongated members each supporting one of said blades near the outer end of said elongated member;
said blades being disposed in a plane substantially normal to the longitudinal axis of said elongated members and adapted to retract soft tissue;
said locking means including means to retain said i first and second end regions in any of a plurality of relative dispositions whereby said blades may be retained at any of a selection of separations.
2. The retractor of claim 1 whereinsaid body member further includes two finger grips extending from whereby finger pressure may be applied to said finger grips to encourage said blades to different separations.
3. The retractor of claim 1 wherein said locking means includes a separate member adapted to engage with said end regions.
4. The retractor of claim 1 wherein said blades are detachable from said elongated members and said blades and said elongated members. contain mating surfaces, said mating surfaces being adapted to allow said blades and said elongated members to be pushed together and retained, one to the other.
5. The retractor of claim 1 wherein one blade includes at least one hook-like protrusion to locate with respect to bone structure.
6. The retractor of claim 1 further comprised of gauze-like pads on said blades, said gauze-like pads having an adhesive backing to adhere to said blades, wherein said gauze-like pads substantially fully surround the portion of each of said blades which is adapted to retract soft tissue, said pads being constructed in the form of an envelope and being open only at one edge to facilitate the placement of said pads on the blades and to allow the protrusion of the portion of said blades that connects with said elongated members.
7. The retractor of claim 1 wherein said retractor is constructed of plastic.
8. The retractor of claim 1 wherein said body member has cooperatively disposed toothed regions adjacent its said ends and means for elastically encouraging said toothed regions to mate to retain said blades at any of a selection of separations.
9. A soft tissue retractor comprised of two blades, a body member and a locking means,
said body member being a ring member having two adjacent generally coplanar elongated members extending therefrom generally in the plane of said body member, and extending from one side of said body member; I
said elongated members each supporting one of said blades near the outer end of said elongated member;
said blades being disposed in a plane substantially normal to the longitudinal axis of said elongated members and adapted to retract soft tissue;
said ring member having a tongue member forming a portion of the arc of said ring member and extending between two mating members of said ring member;
said mating members also forming a portion of the arc of said ring member;
said tongue member and said mating members each having a plurality of holes therein;
said holes being disposed so as to form at least one continuous hole through said tongue member and said mating members at a plurality of separations of said blades;
said locking means including at least one pin member, said pin member being adapted for insertion into a continuous hole-through said tongue member and said mating members to lock said blades at any of said plurality of separations.
10. The retractor of claim 9 wherein said body member elastically encourages said blades to greater separations, said body member further including two fingers grips extending therefrom whereby finger pressure may be applied to said finger grips to encourage said blades to smaller separations.
11. A soft tissue retractor comprised of two blades and a body member,
said body member having first and second ends and being curved so as to enclose an area with its ends overlapping, said body member having two adjacent generally coplanar elongated members extending therefrom generally in the plane of said body member, and extending from one side of said body member;
said elongated members each supporting one of said blades near the outer end of said elongated members;
said blades being disposed in a plane substantially normaljto the longitudinal axes of said elongated members and adapted to retract soft tissue;
said body member having cooperatively disposed toothed regions adjacent its said ends, and means for elastically encouraging said toothed regions to mate to retain said blades at any of a selection of separations.
12. The soft tissue retractor of claim 11 wherein said teeth are inclined to provide means to allow movement of said retractor blades to greater separations and to prevent substantial movement of said retractor blades to lesser separations without elastically and separately forcing said toothed regions out of engagement.
13. The retractor of claim 11 wherein said body member further includes two extending finger grips whereby finger pressure may be applied to said finger grips to encourage said blades to increased separations.
14. The retractor of claim 11 wherein said body member further includes two extending release grips whereby finger pressure may be applied to said release grips to encourage said toothed regions into separation.
15. The retractor of claim 11 wherein the portion of said body member between said elongated arms comprises means elastically encouraging said retractor blades to lesser separations.
16. The retractor of claim 11 wherein said blades are detachable from said elongated members and said blades and said elongated members contain mating surfaces, said mating surfaces being adapted to allow said blades and said elongated members to be pushed together and retained, one to the other.
17. The retractor of claim 11 wherein one blade includes at least one hook-like protrusion to locate with respect to bone structure.
18. The retractor of claim 11 further comprised of gauze-like pads on said blades, said gauze-like pads having an adhesive backing to adhere to said blades, wherein said gauze-like pads substantially fully surround the portion of each of said blades which is adapted to retract soft tissue, said pads being constructed in the form of an envelope and being open only at one end to facilitate the placement of said pads on the blades and to allow the protrusion of the portion of said blades that connects with said elongated members.
19. The retractor of claim 11 wherein said retractor is constructed of plastic.

Claims (19)

1. A soft tissue retractor comprised of blades, a body member and a locking means, said body member having first and second end regions and being curved so as to enclose an area, with said first and second end regions adjacently disposed in overlapping relationship with respect to each other, said body member including integral therewith two adjacent generally coplanar elongated members extending therefrom generally in the plane of said body member, and extending from one side of said body member; said elongated members each supporting one of said blades near the outer end of said elongated member; said blades being disposed in a plane substantially normal to the longitudinal axis of said elongated members and adapted to retract soft tissue; said locking means including means to retain said first and second end regions in any of a plurality of relative dispositions whereby said blades may be retained at any of a selection of separations.
9. A soft tissue retractor comprised of two blades, a body member and a locking means, said body member being a ring member having two adjacent generally coplanar elongated members extending therefrom generally in the plane of said body member, and extending from one side of said body member; said elongated members each supporting one of said blades near the outer end of said elongated member; said blades being disposed in a plane substantially normal to the longitudinal axis of said elongated members and adapted to retract soft tissue; said ring member having a tongue member forming a portion of the arc of said ring member and extending between two mating members of said ring member; said mating members also forming a portion of the arc of said ring member; said tongue member and said mating members each having a plurality of holes therein; said holes being disposed so as to form at least one continuous hole through said tongue member and said mating members at a plurality of separations of said blades; said locking means including at least one pin member, said pin member being adapted for insertion into a continuous hole through said tongue member and said mating members to lock said blades at any of said plurality of separations.
11. A soft tissue retractor comprised of two blades and a body member, said body member having first and second ends and being curved so as to enclose an area with its ends overlapping, said body member having two adjacent generally coplanar elongated members extending therefrom generally in the plane of said body member, and extending from one side of said body member; said elongated members each supporting one of said blades near the outer end of said elongated members; said blades being disposed in a plane substantially normal to the longitudinal axes of said elongated members and adapted to retract soft tissue; said body member having cooperatively disposed toothed regions adjacent its said ends, and means for elastically encouraging said toothed regions to mate to retain said blades at any of a selection of separations.
US00079372A1970-10-091970-10-09Disposable delicate tissue retractorExpired - LifetimeUS3766910A (en)

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Cited By (48)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
EP0018209A3 (en)*1979-04-201981-02-18Codman & Shurtleff, Inc.Pressure-responsive surgical tool assembly
US4457300A (en)*1982-06-071984-07-03Ohio Medical Instrument Co., Inc.Surgical retractor
US4754746A (en)*1986-09-251988-07-05Cox Kenneth LSelf-retaining metatarsal spreader
WO1990001298A1 (en)*1988-07-291990-02-22Michelson Gary KImproved spinal retractor
US5052373A (en)*1988-07-291991-10-01Michelson Gary KSpinal retractor
US5088472A (en)*1990-04-041992-02-18Mehdi FakhraiRetractor
US5125396A (en)*1990-10-051992-06-30Ray R CharlesSurgical retractor
EP0731669A4 (en)*1992-12-111996-05-03Tekdyne IncSelf-retaining retractor
US6123667A (en)*1997-03-202000-09-26Focal, Inc.Retracting tissue using photoadhering adhesive
US6309349B1 (en)1996-04-102001-10-30Endoscopic Technologies, Inc.Surgical retractor and stabilizing device and method for use
US6547783B1 (en)2000-10-242003-04-15Enduratec Systems Corp.Thermo-electric grip for holding soft tissue
US6923799B1 (en)*1999-06-042005-08-02Wilson T. AsforaSubdural evacuating port system
US20050238537A1 (en)*1999-10-072005-10-27Pepex Biomedical, L.L.C.Sensor for measuring a bioanalyte such as lactate
US20060142643A1 (en)*2004-12-232006-06-29Brad ParkerRadially expanding surgical retractor
US20060287583A1 (en)*2005-06-172006-12-21Pool Cover CorporationSurgical access instruments for use with delicate tissues
US20080021286A1 (en)*2004-12-292008-01-24Olof RistoRetractor
EP1923006A3 (en)*2004-09-302008-08-06Codman & Shurtleff, Inc.Disposable padding for a self-retaining retraction device
US20080312509A1 (en)*2007-06-122008-12-18Levahn Intellectual Property Holding Company, LlcSurgical Clamp For Cylindrical Stock
US20090093684A1 (en)*2007-10-082009-04-09Scott SchorerSurgical retractor device and method of use
WO2009037498A3 (en)*2007-09-192009-05-07Ayrshire And Arran Health BoarRetractor with integrated light source
US7553290B1 (en)1999-06-042009-06-30Medtronic Ps Medical, Inc.Subdural evacuating port aspiration system
US20100022844A1 (en)*2005-06-222010-01-28Mangiardi John RSurgical Access Instruments for Use with Spinal or Orthopedic Surgery
US7694821B1 (en)1999-06-042010-04-13Medtronic Ps Medical, Inc.Subdural evacuating port system
US20100234690A1 (en)*2009-03-132010-09-16Cardiolife Research S.A.Rib retractor
US20100290669A1 (en)*2007-12-142010-11-18Hiroto TomitaImage judgment device
US20110028930A1 (en)*2008-11-212011-02-03N.B.R. New Biotechnology ResearchSurgical instrument for operations on the spinal column
US20110319719A1 (en)*2010-02-122011-12-29O'prey CormacThoracic access port
US8702932B2 (en)2007-08-302014-04-22Pepex Biomedical, Inc.Electrochemical sensor and method for manufacturing
US8876709B2 (en)2011-09-232014-11-04Invuity, Inc.Illuminated and modular soft tissue retractor
US20150018628A1 (en)*2013-07-092015-01-15Globus Medical, IncSurgical Access System and Methods
US20150359528A1 (en)*2006-05-022015-12-17K2M, Inc.Minimally open retraction device
US9216015B2 (en)2004-10-282015-12-22Vycor Medical, Inc.Apparatus and methods for performing brain surgery
US9585605B2 (en)2011-05-192017-03-07Pepex Biomedical, Inc.Fluid management and patient monitoring system
US9737287B2 (en)2014-05-132017-08-22Vycor Medical, Inc.Guidance system mounts for surgical introducers
US10238374B2 (en)2013-04-152019-03-26Clifford T. SolomonTissue protection system and method
US10376258B2 (en)2016-11-072019-08-13Vycor Medical, Inc.Surgical introducer with guidance system receptacle
US10426567B2 (en)2014-11-122019-10-01Clear Surgical LimitedRetractor with improved light source, and light source for an improved retractor
US10543016B2 (en)2016-11-072020-01-28Vycor Medical, Inc.Surgical introducer with guidance system receptacle
CN111134743A (en)*2020-01-142020-05-12浙江大学 A unilateral interlaminar approach microsurgical retractor for intraspinal lesions
WO2020234577A1 (en)*2019-05-172020-11-26Cambridge University Hospitals Nhs Foundation TrustTissue splayer
US11016052B2 (en)2007-08-302021-05-25Pepex Biomedical Inc.Electrochemical sensor and method for manufacturing
US11045124B2 (en)2014-06-042021-06-29Pepex Biomedical, Inc.Electrochemical sensors and methods for making electrochemical sensors using advanced printing technology
US20210212723A1 (en)*2009-05-202021-07-15DePuy Synthes Products, Inc.Patient-Mounted Retraction
US11224367B2 (en)2012-12-032022-01-18Pepex Biomedical, Inc.Sensor module and method of using a sensor module
US11534152B2 (en)*2020-07-102022-12-27Retractortho, Inc.Stabilizing retractor system for distal radius fracture repair
US20230091940A1 (en)*2020-02-172023-03-23The Research Foundation For The State University Of New YorkAdaptor for surgical retractors
US12178469B2 (en)2016-11-072024-12-31Vycor Medical Inc.Surgical introducer with guidance system receptacle
US12440200B2 (en)2024-01-122025-10-14Retractortho, Inc.Stabilizing retractor system

Citations (13)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
BE559239A (en)*
US447761A (en)*1891-03-10Speculum
US569839A (en)*1896-10-20John t
GB190111426A (en)*1901-06-041902-04-03James Ernest ArnoldImprovements in Eye Specula for Use in Surgical Operations and the like.
US776302A (en)*1904-04-041904-11-29James G CrockettCheek-distender.
US1706500A (en)*1927-08-011929-03-26Henry J SmithSurgical retractor
US2083573A (en)*1936-04-181937-06-15Clifford V MorganSpeculum
US2238563A (en)*1939-01-241941-04-15Anna J JacquesEmbalming instrument
US2717592A (en)*1954-04-121955-09-13Medical Specialties IncPivoted surgical retractor
US3030947A (en)*1960-05-161962-04-24Richard M EngelbertSpeculum
US3199512A (en)*1963-02-011965-08-10Denab Lab IncValved dilating device for hygienic irrigation
US3364919A (en)*1965-06-081968-01-23Instr Res IncAccessory for surgical retractor
US3570475A (en)*1968-11-141971-03-16Mandel WeinsteinSurgical retractor

Patent Citations (13)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
BE559239A (en)*
US447761A (en)*1891-03-10Speculum
US569839A (en)*1896-10-20John t
GB190111426A (en)*1901-06-041902-04-03James Ernest ArnoldImprovements in Eye Specula for Use in Surgical Operations and the like.
US776302A (en)*1904-04-041904-11-29James G CrockettCheek-distender.
US1706500A (en)*1927-08-011929-03-26Henry J SmithSurgical retractor
US2083573A (en)*1936-04-181937-06-15Clifford V MorganSpeculum
US2238563A (en)*1939-01-241941-04-15Anna J JacquesEmbalming instrument
US2717592A (en)*1954-04-121955-09-13Medical Specialties IncPivoted surgical retractor
US3030947A (en)*1960-05-161962-04-24Richard M EngelbertSpeculum
US3199512A (en)*1963-02-011965-08-10Denab Lab IncValved dilating device for hygienic irrigation
US3364919A (en)*1965-06-081968-01-23Instr Res IncAccessory for surgical retractor
US3570475A (en)*1968-11-141971-03-16Mandel WeinsteinSurgical retractor

Cited By (94)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
EP0018209A3 (en)*1979-04-201981-02-18Codman & Shurtleff, Inc.Pressure-responsive surgical tool assembly
US4457300A (en)*1982-06-071984-07-03Ohio Medical Instrument Co., Inc.Surgical retractor
US4754746A (en)*1986-09-251988-07-05Cox Kenneth LSelf-retaining metatarsal spreader
WO1990001298A1 (en)*1988-07-291990-02-22Michelson Gary KImproved spinal retractor
US5052373A (en)*1988-07-291991-10-01Michelson Gary KSpinal retractor
US5088472A (en)*1990-04-041992-02-18Mehdi FakhraiRetractor
US5125396A (en)*1990-10-051992-06-30Ray R CharlesSurgical retractor
EP0731669A4 (en)*1992-12-111996-05-03Tekdyne IncSelf-retaining retractor
US6309349B1 (en)1996-04-102001-10-30Endoscopic Technologies, Inc.Surgical retractor and stabilizing device and method for use
US6123667A (en)*1997-03-202000-09-26Focal, Inc.Retracting tissue using photoadhering adhesive
US6936005B2 (en)1997-03-202005-08-30Focal, Inc.Biodegradable tissue retractor
US20050234397A1 (en)*1997-03-202005-10-20Focal, Inc.Biodegradable tissue retractor
US7694821B1 (en)1999-06-042010-04-13Medtronic Ps Medical, Inc.Subdural evacuating port system
US6923799B1 (en)*1999-06-042005-08-02Wilson T. AsforaSubdural evacuating port system
US8343138B2 (en)1999-06-042013-01-01Medtronic Xomed, Inc.Subdural evacuation port aspiration device
US7553290B1 (en)1999-06-042009-06-30Medtronic Ps Medical, Inc.Subdural evacuating port aspiration system
US20050238537A1 (en)*1999-10-072005-10-27Pepex Biomedical, L.L.C.Sensor for measuring a bioanalyte such as lactate
US20100252430A1 (en)*1999-10-072010-10-07Pepex Biomedical, L.L.C.Sensor for measuring a bioanalyte such as lactate
US6547783B1 (en)2000-10-242003-04-15Enduratec Systems Corp.Thermo-electric grip for holding soft tissue
EP1923006A3 (en)*2004-09-302008-08-06Codman & Shurtleff, Inc.Disposable padding for a self-retaining retraction device
US20100210913A1 (en)*2004-09-302010-08-19Codman & Shurtleff, Inc.Disposable padding for a self-retaining retraction device
US9968415B2 (en)2004-10-282018-05-15Vycor Medical, Inc.Apparatus and methods for performing brain surgery
US9386974B2 (en)2004-10-282016-07-12Vycor Medical, Inc.Apparatus and methods for performing brain surgery
US9216015B2 (en)2004-10-282015-12-22Vycor Medical, Inc.Apparatus and methods for performing brain surgery
US9968414B2 (en)2004-10-282018-05-15Vycor Medical, Inc.Apparatus and methods for performing brain surgery
US20060142643A1 (en)*2004-12-232006-06-29Brad ParkerRadially expanding surgical retractor
US8579809B2 (en)2004-12-232013-11-12Symmetry Medical Manufacturing, Inc.Radially expanding surgical retractor
US20080021286A1 (en)*2004-12-292008-01-24Olof RistoRetractor
US8287565B2 (en)2004-12-292012-10-16Surg-Mate ABRetractor
US9307969B2 (en)2005-06-172016-04-12Vycor Medical, Inc.Tissue retractor apparatus and methods
US20090312611A1 (en)*2005-06-172009-12-17Vycor Medical LlcSurgical Access Methods For Use With Delicate Tissues
US20060287583A1 (en)*2005-06-172006-12-21Pool Cover CorporationSurgical access instruments for use with delicate tissues
US9782157B2 (en)2005-06-172017-10-10Vycor Medical, Inc.Tissue retractor apparatus and methods
US9675331B2 (en)2005-06-172017-06-13Vycor Medical, Inc.Tissue retractor apparatus and methods
US9566052B2 (en)2005-06-172017-02-14Vycor Medical, Inc.Tissue retractor apparatus and methods
US8608650B2 (en)2005-06-172013-12-17Vycor Medical, LlcSurgical access instruments for use with delicate tissues
US20100010315A1 (en)*2005-06-172010-01-14Vycor Medical LlcSurgical Access Instruments For Use With Delicate Tissues
US8409083B2 (en)2005-06-172013-04-02Vycor Medical, Inc.Surgical access methods for use with delicate tissues
US20100022844A1 (en)*2005-06-222010-01-28Mangiardi John RSurgical Access Instruments for Use with Spinal or Orthopedic Surgery
US8360970B2 (en)2005-06-222013-01-29Vycor Medical, Inc.Surgical access instruments for use with spinal or orthopedic surgery
US10485529B2 (en)2006-05-022019-11-26K2M, Inc.Minimally open retraction device
US9681863B2 (en)*2006-05-022017-06-20K2M, Inc.Minimally open retraction device
US11529132B2 (en)2006-05-022022-12-20K2M, Inc.Minimally open retraction device
US20150359528A1 (en)*2006-05-022015-12-17K2M, Inc.Minimally open retraction device
US20080312509A1 (en)*2007-06-122008-12-18Levahn Intellectual Property Holding Company, LlcSurgical Clamp For Cylindrical Stock
US8702932B2 (en)2007-08-302014-04-22Pepex Biomedical, Inc.Electrochemical sensor and method for manufacturing
US11016052B2 (en)2007-08-302021-05-25Pepex Biomedical Inc.Electrochemical sensor and method for manufacturing
US9459228B2 (en)2007-08-302016-10-04Pepex Biomedical, Inc.Electrochemical sensor and method for manufacturing
US11150212B2 (en)2007-08-302021-10-19Pepex Biomedical, Inc.Electrochemical sensor and method for manufacturing
US9339262B2 (en)2007-09-192016-05-17Clear Surgical LimitedRetractor with integrated light source
WO2009037498A3 (en)*2007-09-192009-05-07Ayrshire And Arran Health BoarRetractor with integrated light source
US8876713B2 (en)*2007-09-192014-11-04Clear Surgical LimitedRetractor with integrated light source
US20100317928A1 (en)*2007-09-192010-12-16Ayrshire And Arran Health BoardRetractor with integrated light source
US20090093684A1 (en)*2007-10-082009-04-09Scott SchorerSurgical retractor device and method of use
US20100290669A1 (en)*2007-12-142010-11-18Hiroto TomitaImage judgment device
US8888694B2 (en)*2008-11-212014-11-18N.B.R. New Biotechnology ResearchSurgical instrument and method for operations on the spinal column
US20110028930A1 (en)*2008-11-212011-02-03N.B.R. New Biotechnology ResearchSurgical instrument for operations on the spinal column
US8663101B2 (en)*2008-11-212014-03-04N.B.R. New Biotechnology ResearchSurgical instrument for operations on the spinal column
US20100234690A1 (en)*2009-03-132010-09-16Cardiolife Research S.A.Rib retractor
US20210212723A1 (en)*2009-05-202021-07-15DePuy Synthes Products, Inc.Patient-Mounted Retraction
US12349936B2 (en)*2009-05-202025-07-08DePuy Synthes Products, Inc.Patient-mounted retraction
US20110319719A1 (en)*2010-02-122011-12-29O'prey CormacThoracic access port
US9585605B2 (en)2011-05-192017-03-07Pepex Biomedical, Inc.Fluid management and patient monitoring system
US10779756B2 (en)2011-05-192020-09-22Pepex Biomedical Inc.Fluid management and patient monitoring system
US9173648B2 (en)2011-09-232015-11-03Invuity, Inc.Illuminated and modular soft tissue retractor
US9718130B1 (en)2011-09-232017-08-01Invuity, Inc.Illuminated and modular soft tissue retractor
US8876709B2 (en)2011-09-232014-11-04Invuity, Inc.Illuminated and modular soft tissue retractor
US11633094B2 (en)2011-09-232023-04-25Invuity, Inc.Illuminated and modular soft tissue retractor
US10220445B2 (en)2011-09-232019-03-05Invuity, Inc.Illuminated and modular soft tissue retractor
US9610130B2 (en)2011-09-232017-04-04Invuite, Inc.Illuminated and modular soft tissue retractor
US10953466B2 (en)2011-09-232021-03-23Invuity, Inc.Illuminated and modular soft tissue retractor
US11224367B2 (en)2012-12-032022-01-18Pepex Biomedical, Inc.Sensor module and method of using a sensor module
US10238374B2 (en)2013-04-152019-03-26Clifford T. SolomonTissue protection system and method
US10463354B2 (en)*2013-07-092019-11-05Globus Medical, IncSurgical access system and methods
US20150018628A1 (en)*2013-07-092015-01-15Globus Medical, IncSurgical Access System and Methods
US11116487B2 (en)2014-05-132021-09-14Vycor Medical, Inc.Guidance system mounts for surgical introducers
US12059144B2 (en)2014-05-132024-08-13Vycor Medical, Inc.Guidance system mounts for surgical introducers
US9737287B2 (en)2014-05-132017-08-22Vycor Medical, Inc.Guidance system mounts for surgical introducers
US10327748B2 (en)2014-05-132019-06-25Vycor Medical, Inc.Guidance system mounts for surgical introducers
US11045124B2 (en)2014-06-042021-06-29Pepex Biomedical, Inc.Electrochemical sensors and methods for making electrochemical sensors using advanced printing technology
US10426567B2 (en)2014-11-122019-10-01Clear Surgical LimitedRetractor with improved light source, and light source for an improved retractor
US11517347B2 (en)2016-11-072022-12-06Vycor Medical, Inc.Surgical introducer with guidance system receptacle
US10543016B2 (en)2016-11-072020-01-28Vycor Medical, Inc.Surgical introducer with guidance system receptacle
US11045182B2 (en)2016-11-072021-06-29Vycor Medical, Inc.Surgical introducer with guidance system receptacle
US10376258B2 (en)2016-11-072019-08-13Vycor Medical, Inc.Surgical introducer with guidance system receptacle
US12178469B2 (en)2016-11-072024-12-31Vycor Medical Inc.Surgical introducer with guidance system receptacle
WO2020234577A1 (en)*2019-05-172020-11-26Cambridge University Hospitals Nhs Foundation TrustTissue splayer
CN111134743A (en)*2020-01-142020-05-12浙江大学 A unilateral interlaminar approach microsurgical retractor for intraspinal lesions
US20230091940A1 (en)*2020-02-172023-03-23The Research Foundation For The State University Of New YorkAdaptor for surgical retractors
US11534152B2 (en)*2020-07-102022-12-27Retractortho, Inc.Stabilizing retractor system for distal radius fracture repair
US11779323B2 (en)2020-07-102023-10-10Retractortho, Inc.Single use radiolucent stabilizing retractor system
US11583268B2 (en)2020-07-102023-02-21Retractortho, Inc.Radiolucent, 3-D printed soft tissue retractor
US12440248B2 (en)2022-06-282025-10-14DePuy Synthes Products, Inc.Minimally invasive instrument set, devices, and related methods
US12440200B2 (en)2024-01-122025-10-14Retractortho, Inc.Stabilizing retractor system

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