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US3071161A - Bidirectionally flexible segmented tube - Google Patents

Bidirectionally flexible segmented tube
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Publication number
US3071161A
US3071161AUS29443AUS2944360AUS3071161AUS 3071161 AUS3071161 AUS 3071161AUS 29443 AUS29443 AUS 29443AUS 2944360 AUS2944360 AUS 2944360AUS 3071161 AUS3071161 AUS 3071161A
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portions
tube
flexible
guide member
lines
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US29443A
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Gustav A Ulrich
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Bausch and Lomb Inc
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Bausch and Lomb Inc
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G. A. ULRICH 3,071,161
BIDIRECTIONALLY FLEXIBLE SEGMENTED TUBE Filed May 16, 1960 Jan. 1, 1963 o Rum tlllllllllllllllllillllllllllllllllllll Ill!Illllllllllllllflfllllllllllllllllll G USTAV A. ULRICH INVENTOR.
" 8; W .im awzzv ATZDRNEYS United States Patent 3 071 161 BIDIRECTIONALLY FIZEXIBLE SEGMENTED TUBE Gustav A. Ulrich, Rochester, N.Y., assignor to Bausch & Lomb Incorporated, a corporation of New York Filed May 16, 1960, Ser. No. 29,443 3 Claims. (Cl. 138120) This invention relates to an improved flexible tube for use in endoscopic instruments or the like, and, more particularly, to a flexible tube of segmented construction including one portion free to flex in one plane and a second portion for flexing in a different plane.
One object of the present invention is to provide an improved construction for a flexible tube for endoscopes or the like, of the type including two portions for flexing in mutually different planes so that it may be guided into difflcultly accessible body cavities such as the duodenum.
Other objects are: to provide an improved construction for a flexible tube of this character in which a flexing force may be transmitted through a first portion for flexing a second portion without applying undue flexing force to the first portion; to provide an improved device of this character in which mechanical control lines extend through integrally formed guideways in the walls of the individual segments, all of the segments being identical to each other, and selected ones of the lines being independent of flexing of the different portions of the tube; and in general, to provide an improved bi-directionally flexible, segmented tube which is of relatively simple and inexpensive construction, easy to manufacture and assemble, and rugged and long lasting in service.
These and other objects and advantages of the invention will become apparent in the following detailed description of a presently preferred embodiment thereof, taken in conjunction with the drawing wherein:
FIG. 1 is an elevational view, partly in section of an endoscope including a flexible tube according to the invention;
FIG. 2 is an elevational view, on an enlarged scale of a rigid guide segment, which is included in the flexible tube shown in FIG. 1, being disposed between'the tw differently flexing portions thereof;
FIG. 3 is a plan view of the rigid segment shown in FIG. 2; and
FIG. 4 is a cross sectional view taken along the line 4-4 of FIG. 1.
Briefly, the invention contemplates a segmented, articulated tube having at least two longitudinally extending portions arranged in series for flexing in mutually different planes. Tension lines for hingedly securing the segments together and for mechanically operating various difierent portions of the device, as well as for controllably flexing one of the portions of the tube extend longitudinally through the entire length of the tube in separate guideways formed integrally in the individual segments thereof. A special, spirally grooved segment is disposed between the two diflerently flexing portions of the tube for guiding the control lines along a spiral path so that the control lines may be oriented in a rotated relation in one portion with respect to the other portion of the tube.
In this way, certain ones of the control lines may be guided through the length of the tube in positions closely adjacent to the hinge axes between the segments so that flexing of the tube has substantially no effect on them.
The control lines for controllably flexing the one portion of the tube are 90 offset from the hinge connecting points in both portions, so that it might be expected that they would exert a flexing force on both of the portions of the tube. However, in this type of construction, it appears that the flexing force achieved by tensioning the flexing control lines is such that the portion of the tube immediately adjacent to the points of anchorage for the lines flexes first, and substantially one entire portion of the tube may be almost completely flexed without the application of undue flexing force on the other portion, even though the lines are tensioned through the other portion.
Referring now to the drawing, the endoscope illustrated therein includes front and rear elongatedflexible portions 10 and 12, respectively, an intermediatecylindrical connector 14 disposed between theflexible portions 10 and 12, an objective assembly (not shown) at the front of the front flexible portion 10, and acontrol housing 16 secured at the rear of the rearflexible portion 12. The objective assembly is arranged for projecting a light image of the object, or field to be viewed upon the front face of a flexible image transmitting device such as thecoherent bundle 18 of glass fibres, which is fitted within theflexible portions 10 and 12 and extends therein from the objective assembly to thecontrol housing 16. A light image transmitted through thefiber bundle 18 may be viewed upon the rear face 20 of the bundle by any convenient viewing device (not shown) such as a low power microscope or other eyepiece.
Theflexible portions 10 and 12 are made up of a. plurality of relatively short, articulatedtubular segments 22 and 23, all of which are of identical construction. Thesegments 22 and 23 are urged towards each other by flexible tension members, orhinge lines 24, which extend along opposite sides of theflexible portions 10 and 12 and serve also to align the segments one with another. Oneface 26 of each segment is tapered to form a diametrically extendingpivot ridge 27, which bears against theopposite face 28 of the next segment to provide a fulcrum. Thehinge lines 24 extend throughguideways 30 in the segment walls, passing through thepivot ridges 27 of the segments, and thereby permitting flexure of theflexible portions 10 and 12 without loss of tension and retaining force.
Thesegments 22 in the front flexible portion 10 are displaced from thesegments 23 in the rearflexible portion 12 so that the front portion 10 flexes perpendicularly to the direction of flexure of therear portion 12. Thehinge lines 24 in the front portion 10 are also 90 displaced from their position in therear portion 12.
In addition to thehinge lines 24,other control lines 32, 34, and 36 extend throughseparate guideways 38, 40, and 42 in the segment walls and are retained in the guideways by theelastomeric sheath 56. Thelines 32 and 34 may be, for example, tension members for controlling the focus and angular position of the objective assembly at the front end of the front flexible portion 10. The last set ofcontrol lines 36, as shown, are flexible tension members for controllably flexing the front portion 10.
It is desirable to maintain the relative positions of thevarious lines 24, 32, 34, and 36 constant throughout the length of the endoscope so that all of thesegments 22 and 23 may be of identical construction, thus minimizing the cost of manufacturing the instrument. Toward this end, in order to maintain the relative positions of the various lines uniform throughout the length of the endoscope, while at the same time providing for differently polarized fiexure of the front andrear portions 10 and 12 respectively, anintermediate connector 14 havingspiral guideways 44, 46, 48, and 50 is disposed between the twoportions 10 and 12 for positively guiding thelines 24, 32, 34, and 36 through the required 90 displacement.
Theguideways 44, 46, 48 and 50 are preferably formed along the natural lines of tension between their angularly displaced entrant and exit ends, so that thelines 24, 32, 34, and 36 will have a natural tendency to remain in the guideways when grey are tensioned.
Preferably, the entrance and exit portions of each guideway are holes formed by drilling, as best shown in FIG. 2, to provide positive retention of the lines at both ends of the guideways. Intermediate portions of the guideways may be formed by milling spiral grooves between the end portions.
The lines are retained within the spiral grooves by anelastomeric sheath 56 which extends over the entire flexible portion of the endoscope.
Theintermediate connector 14 thus maintains the desired angular relationship between the two flexible portions and 12 despite tension applied to thevarious lines 24, 32, 34, and 36, which extend through both of theportions 10 and 12, and which would tend to draw the twoportions 10 and 12 into angular alignment with each other. The connector also minimizes friction against thelines 24, 32, 34, and 36, and permits overall simplification of the construction.
Various features of the illustrated endoscope, which are not described in detail herein, are described and claimed in the following co-pending applications of the same assignee:
Gilbert J. Sheldon, Ser. No. 679,566, filed August 22, 1957, entitled Flexible Tube Structures;
Gilbert J. Sheldon, Ser. No. 686,320, filed September 26,1957, entitled Optical Viewing Instrument, now Patent Number 2,975,785;
Gilbert J. Sheldon, Ser, No. 715,820, filed February 17, 1958, entitled Optical System for Endoscopes and the Like, now Patent Number 2,987,960;
Gilbert I. Sheldon, et al., Ser. No. 29,416, filed concurrently herewith, entitled Focusing Endoscope;
Gustav A. Ulrich, Ser. No. 29,255, filed concurrently herewith, entitled Holder for Camera and Viewing Device."
What is claimed is:
1. A flexible tube for an endoscope or the like comprising two elongated flexible portions arranged in series for flexure in mutually different planes, a tension line extending through both of said portions along the side walls thereof, and a guide member between said two portions, an elastomeric sheath encasing said portions and said guide member, said guide member having a spiral guideway for guiding said tension line through an angular displacement between said two portions so that when the respective portions of said line coextensive with said two flexible tube portions are oriented in a rotated relation between said flexible tube portions and said line is tensioned the twisting force exerted by said line upon the tube is resisted by said guide member and the angular displacement between said flexible tube portions remains undisturbed.
2. A flexible tube for an endoscope or the like comprising two flexible portions arranged in series for flexure in mutually dilferent planes, said portions being composed of a plurality of articulated tubular segments, all of said segments being of substantially identical construction and including longitudinally extending guideways in their walls, tension lines extending through said guideways from one of said portions to the other one thereof and lying in corresponding guideways in said two portions, and a guide member disposed between said portions, an elastomeric case receiving said member and said portions of the tube, said guide member having spiral guideways for guiding said lines through an angular displacement between said two portions, the opposite ends of said spiral guideways being aligned respectively with the corresponding longitudinal guideways of said segments of said two portions, whereby the twisting force exerted by said lines when they are tensioned is taken by said guide member without imposing substantial torsional forces between said two flexible portions.
3. A flexible tube for an endoscope or the like comprising two elongated flexible portions arranged in series for flexure in mutually difierent planes, a tension line extending through both of said portions along the side walls thereof, and a guide member between said two portions, an elastomeric sheath enclosing said member and said portions of said tube, said guide member having a spiral guideway for guiding said tension line through an angular displacement between said two portions so that when the respective portions of said line coextensive with said two flexible tube portions are oriented in a rotated relation between said flexible tube portions and said line is tensioned the twisting force exerted by said line upon the tube is resisted by said guide memher and the angular displacement between said flexible tube portions remains undisturbed, said spiral guideway including tubular end portions and an'outwardly opening groove portion intermediate said end portions, said groove portion extending along the natural line of tension between said end portions.
References Cited in the file of this patent UNITED STATES PATENTS 809,977 OBrien Jan. 16, 1906 1,143,824 Haese June 22, 1915 1,340,818 Brinkman May 18, 1920 2,975,785 Sheldon Mar. 21, 1961

Claims (1)

1. A FLEXIBLE TUBE FOR AN ENDOSCOPE OR THE LIKE COMPRISING TWO ELONGATED FLEXIBLE PORTIONS ARRANGED IN SERIES FOR FLEXTURE IN MUTUALLY DIFFERENT PLANES, A TENSION LINE EXTENDING THROUGH BOTH OF SAID PORTIONS ALONG THE SIDE WALLS THEREOF, AND A GUIDE MEMBER BETWEEN SAID TWO PORTIONS, AN ELASTOMERIC SHEATH ENCASING SAID PORTIONS AND SAID GUIDE MEMBER, SAID GUIDE MEMBER HAVING A SPIRAL GUIDEWAY FOR GUIDING SAID TENSION LINE THROUGH AN ANGULAR DISPLACEMENT BETWEEN SAID TWO PORTIONS SO THAT WHEN THE RESPECTIVE PORTIONS OF SAID LINE COEXTENSIVE WITH SAID TWO FLEXIBLE TUBE PORTIONS ARE ORIENTED IN A ROTATED RELATION BETWEEN SAID FLEXIBLE TUBE PORTIONS AND SAID LINE IS TENSIONED THE TWISTING FORCE EXERTED BY SAID LINE UPON THE TUBE IS RESISTED BY SAID GUIDE MEMBER AND THE ANGULAR DISPLACEMENT BETWEEN SAID FLEXIBLE TUBE PORTIONS REMAINS UNDISTURBED.
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Cited By (68)

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US3145249A (en)*1962-01-021964-08-18Bausch & LombEndoscope window
US3162214A (en)*1963-01-161964-12-22American Optical CorpFlexible tubular structures
US3266059A (en)*1963-06-191966-08-16North American Aviation IncPrestressed flexible joint for mechanical arms and the like
US3430662A (en)*1964-09-211969-03-04Stephen GuarnaschelliFlexible segmented tube
US3557780A (en)*1967-04-201971-01-26Olympus Optical CoMechanism for controlling flexure of endoscope
US3583393A (en)*1967-12-261971-06-08Olympus Optical CoBendable tube assembly
DE1541153B1 (en)*1966-05-271971-06-09Olympus Optical Co Hose arrangement for examining the inner walls of curved organs
US3598155A (en)*1967-11-011971-08-10Goodyear Tire & RubberFlexible member
US3625200A (en)*1969-08-261971-12-07Us Catheter & Instr CorpControlled curvable tip member
US3799151A (en)*1970-12-211974-03-26Olympus Optical CoControllably bendable tube of an endoscope
US4068088A (en)*1975-03-201978-01-10Coal Industry (Patents) LimitedUnderground mine equipment
EP0017016A1 (en)*1979-03-161980-10-15Robotgruppen HBFlexible arm, particularly a robot arm
WO1984002196A1 (en)*1982-11-191984-06-07Haduch Judith E Legal RepresenFlexible inspection system
US4483326A (en)*1981-04-211984-11-20Kabushiki Kaisha Medos KenkyushoCurvature control mechanism in endoscopes
US4589410A (en)*1985-07-151986-05-20Miller Larry SEndotracheal tube
EP0165718A3 (en)*1984-05-221986-09-03Pilkington Medical Systems Limited (formely Minvade Limited)Endoscopes
US4643720A (en)*1986-02-141987-02-17Medi-TechDrainage catheter
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US4740195A (en)*1986-02-141988-04-26Medi-Tech, IncorporatedDrainage catheter
US4807370A (en)*1987-07-061989-02-28Anterior, Inc.Adjustable tube bending pattern device
US5110645A (en)*1986-10-031992-05-05Olympus Optical Company Ltd.Sheath of articulated tube for endoscope
DE4317914A1 (en)*1993-05-281994-12-01Haas Carl Gmbh & Co Flexible endoscope tube
US5632432A (en)*1994-12-191997-05-27Ethicon Endo-Surgery, Inc.Surgical instrument
US5752644A (en)*1995-07-111998-05-19United States Surgical CorporationDisposable loading unit for surgical stapler
US6648875B2 (en)2001-05-042003-11-18Cardiac Pacemakers, Inc.Means for maintaining tension on a steering tendon in a steerable catheter
US6652506B2 (en)2001-05-042003-11-25Cardiac Pacemakers, Inc.Self-locking handle for steering a single or multiple-profile catheter
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US20050154258A1 (en)*2000-04-032005-07-14Tartaglia Joseph M.Endoscope with adjacently positioned guiding apparatus
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US20060258912A1 (en)*2000-04-032006-11-16Amir BelsonActivated polymer articulated instruments and methods of insertion
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Cited By (168)

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US3145249A (en)*1962-01-021964-08-18Bausch & LombEndoscope window
US3162214A (en)*1963-01-161964-12-22American Optical CorpFlexible tubular structures
US3266059A (en)*1963-06-191966-08-16North American Aviation IncPrestressed flexible joint for mechanical arms and the like
US3430662A (en)*1964-09-211969-03-04Stephen GuarnaschelliFlexible segmented tube
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US3557780A (en)*1967-04-201971-01-26Olympus Optical CoMechanism for controlling flexure of endoscope
US3598155A (en)*1967-11-011971-08-10Goodyear Tire & RubberFlexible member
US3583393A (en)*1967-12-261971-06-08Olympus Optical CoBendable tube assembly
US3625200A (en)*1969-08-261971-12-07Us Catheter & Instr CorpControlled curvable tip member
US3799151A (en)*1970-12-211974-03-26Olympus Optical CoControllably bendable tube of an endoscope
US4068088A (en)*1975-03-201978-01-10Coal Industry (Patents) LimitedUnderground mine equipment
EP0017016A1 (en)*1979-03-161980-10-15Robotgruppen HBFlexible arm, particularly a robot arm
US4483326A (en)*1981-04-211984-11-20Kabushiki Kaisha Medos KenkyushoCurvature control mechanism in endoscopes
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US4589410A (en)*1985-07-151986-05-20Miller Larry SEndotracheal tube
US4643720A (en)*1986-02-141987-02-17Medi-TechDrainage catheter
US4740195A (en)*1986-02-141988-04-26Medi-Tech, IncorporatedDrainage catheter
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US5110645A (en)*1986-10-031992-05-05Olympus Optical Company Ltd.Sheath of articulated tube for endoscope
US4807370A (en)*1987-07-061989-02-28Anterior, Inc.Adjustable tube bending pattern device
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US5752644A (en)*1995-07-111998-05-19United States Surgical CorporationDisposable loading unit for surgical stapler
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USRE38708E1 (en)1995-07-112005-03-01United States Surgical CorporationDisposable loading unit for surgical stapler
US20060258912A1 (en)*2000-04-032006-11-16Amir BelsonActivated polymer articulated instruments and methods of insertion
US11026564B2 (en)2000-04-032021-06-08Intuitive Surgical Operations, Inc.Apparatus and methods for facilitating treatment of tissue via improved delivery of energy based and non-energy based modalities
US6858005B2 (en)2000-04-032005-02-22Neo Guide Systems, Inc.Tendon-driven endoscope and methods of insertion
US8062212B2 (en)2000-04-032011-11-22Intuitive Surgical Operations, Inc.Steerable endoscope and improved method of insertion
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US20050154258A1 (en)*2000-04-032005-07-14Tartaglia Joseph M.Endoscope with adjacently positioned guiding apparatus
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US12076102B2 (en)2000-04-032024-09-03Intuitive Surgical Operations, Inc.Connector device for a controllable instrument
US20060052664A1 (en)*2000-04-032006-03-09Julian Christopher AConnector device for a controllable instrument
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