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US3690323A - Device for draining ventricular fluid in cases of hydrocephalus - Google Patents

Device for draining ventricular fluid in cases of hydrocephalus
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US3690323A
US3690323AUS94069AUS3690323DAUS3690323AUS 3690323 AUS3690323 AUS 3690323AUS 94069 AUS94069 AUS 94069AUS 3690323D AUS3690323D AUS 3690323DAUS 3690323 AUS3690323 AUS 3690323A
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porous
ribs
set forth
tube
sleeve member
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US94069A
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Donald E Wortman
Lawrence J Mervis
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United States Department of the Army
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United States Department of the Army
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Abstract

A modified ventricular end for a ventriculo-cardiac shunt used in the treatment of hydrocephalus and similar conditions is provided for removing fluids which accumulate in the cavity of the brain and must be drained to the heart. An umbrella-shaped cover protects an apertured end of the shunt for preventing the same from becoming attachad to the ventricular walls by growth of brain tissue thereon. The device, which is inserted into the brain in a closed position and is subsequently opened, has supporting rib structures which may carry various sensing elements for observing conditions in the brain.

Description

United States Patent Wortman et al.
1 51 Sept. 12, 1972 [54] DEVICE FOR DRAINING VENTRICULAR FLUID IN CASES OF HYDROCEPHALUS [72] Inventors: Donald E. Wortman, Rockville,
Md.; Lawrence J. Mervis, Milwaukee, Wis.
[73] Assignee: The United States of America as represented by the Secretary of the Army 22 Filed: Dec. 1,1970 21 Appl.No.: 94,069
[52] US. Cl. ..128/350 R [51] Int. Cl. ..A61m 27/00 [58] FieldofSeai-ch ..128/1 R,2l-l,2R,35 OR, 35 CV [56] References Cited UNITED STATES PATENTS 1,863,057 6/1932 Innes ..128/350 R 3,540,431 1 H1970 Mobin-Uddin ..128/1 R 3,565,056 2/1971 Statham ..128/2 R FOREIGN PATENTS OR APPLICATIONS 1,166,977 4/1964 Germany ..128/351 158,613 4/1957 Sweden ..128/2 R OTHER PUBLICATIONS Ellenwood, E. R. et al., Central-Body Temperature Apparatus," IBM Tech. Disclosure Bulletin, Vol. 11, N0. 11, Apr. 1969 Primary Examiner-Channing L. Pace Attorney-Harry M. Saragovitz, Edward J. Kelly, l-Ierbert Berl and Saul Elbaum [57] ABSTRACT A modified ventricular end for a ventriculo-cardiac shunt used in the treatment of hydrocephalus and similar conditions is provided for removing fluids which accumulate in the cavity of the brain and must be drained to the heart. An umbrella-shaped cover protects an apertured end of the shunt for preventing the same from becoming attachad to the ventricular walls by growth of brain tissue thereon. The device, which is inserted into the brain in a closed position and is subsequently opened, has supporting rib structures which may carry various sensing elements for observing conditions in the brain.
10 Claims, 4 Drawing Figures P'A'IENTEDSEP 12 m2 3.690.323
FIG 4 DONALD E. w R Aw'ENTOR LJ- MERVIS BY W' i ATTORNEYS DEVICE FOR DRAINING VENTRICULAR FLUID IN CASES OF HYDROCEPHALUS RIGHTS OF GOVERNMENT The invention described herein may be manufactured, used, and licensed by or for The United States Government for governmental purposes without the payment to us of any royalty thereon.
BACKGROUND OF THE INVENTION The invention relates generally to surgical devices for controlling the drainage of fluids between different portions of the body of a patient, and more particularly, to improvements in ventriculo-cardiac shunts for draining cerebrospinal fluid from the cerebral ventricles to other areas of the body in the treatment of hydrocephalus and similar conditions in which there is difficulty in the free circulation and absorption of cerebrospinal fluid.
The practice of treating communicating or obstructive hydrocephalus by establishing communication between the cerebrospinal fluid pathways and the vascular system is well known and several mechanical devices are presently available for draining away the cerebrospinal fluid which accumulates within the skull and exerts pressure therein. Once inserted, it is desirable that these devices permanently remain in the patient, to be replaced if some maloperation occurs. These devices normally include a closed-end drainage tube of quite small diameter which is inserted through an opening in the skull into the cranial cavity of the head, or more specifically, into a lateral cerebral ventricle of the patient, and which is provided with a plurality of small apertures in the wall thereof near the distal end of the tube in the brain of the patient for permitting passage therethrough of fluids collected from the'cerebral ventricles to the bloodstream. It has been found, however, that cerebral tissue ordinarily collects, or grows, about the end of these devices, or shunts, after they have been in use only a reasonably short period of time, causing the same to become attached to the ventricular or other membrane walls and thereby obstructing the normal flow of fluids thereinto. As a result, the patient often exhibits symptoms of intracranial hypertension (shunt malfunction). When this occurs, or, if the shunt fails for any other reason, it is necessary to replace the shunt, and this requires additional surgical procedures which could be of some danger to a patient.
SUMMARY OF THE INVENTION Accordingly, it is an object of this invention to provide an improved ventricular end portion for a ventriculo-cardiac shunt which is simple in construction and highly reliable and can be utilized with the maxim um degree of safety to the patient.
Another object of this invention is to provide a device for draining cerebral-spinal fluid from the cerebral ventricles into other areas of the body for cases of hydrocephalus and similar conditions which does not tend to become obstructed with cerebral debris or tissue growths.
Still another object of this invention is to provide a ventriculo-cardiac shunt for draining cerebrospinal fluid having an improved ventricular end portion which is not susceptible to becoming blocked or obstructed by brain tissue growth thereon and which is capable of supporting sensing devices for detecting various environmental conditions in the brain to assist in the treatment of such illnesses as hydrocephalus, brain cancer, and stroke.
The foregoing and other objects are attained by a ventriculo-cardiac shunt having a tubular end portion which is provided with a plurality of apertures for receiving fluid which may have accumulated in the regions of the brain cavity and which is enclosed within a novel umbrella-type cover slidably disposed thereover that is normally closed during insertion of the same into the brain cavity and may be readily opened once in place for supporting the tubular end portion in a standup relation from the ventricular walls. The umbrella includes a gauze-like or cheesecloth type material porous to the cerebrospinal fluid and suitably attached to or covering a plurality of elongate rib constructions of a firm elastic material which are preconditioned as a whole to form an open or conical configuration when supported or retained at one end thereof and released at the other end for permitting the same to expand, or open. A tubular sleeve which is slidably disposed over the tubular end portion and the umbrella portion of the device is provided for the purpose of normally maintaining the umbrella in a closed position and, whenever desired, upon withdrawal of the same a predetermined amount, for permitting the umbrella portion to be opened. The rib constructions of the umbrella are designed to carry sensing devices and to support the necessary connections thereto for observing conditions such as pressure, temperature and the like within the brain for conducting long-term study and treatment of hydrocephalus, brain cancer, stroke, and similar illnesses.
BRIEF DESCRIPTION OF THE DRAWINGS Other objects and many of the attendant features and advantages of the present invention will be more readily appreciated as the same becomes better understood from the following detailed description when considered in connection with the accompanying drawings in which like reference numerals indicate like or corresponding parts throughout the several views thereof and wherein:
FIG. 1 is a longitudinal view in cross-section of a modified ventricular end portion of a ventriculo-cardiac shunt constructed in accordance with the teachings of the present invention and showing the same in a closed position ready for insertion into the brain cavity.
FIG. 2 is a similar cross-sectional view showing the umbrella portion of the device in an expanded condition, such as occurs following insertion of the device into the brain cavity, after the outer sleeve has been withdrawn a predetermined amount;
FIG. 3 is an enlarged view of the embodiment shown in FIGS. 1 and 2 which illustrates a preferred arrangement of a condition-sensing device in one of the rib constructions of the umbrella portion of this embodiment; and,
FIG. 4 is a diagrammatic representation of the application of the device in the establishment of a ventriculo-cardiac shunt.
DESCRIPTION OF AN ILLUSTRATED EMBODIMENT Referring now to the drawings, and more particularly, to FIGS. 1 and 2 thereof, the end portion of a ventriculo-cardiac shunt is generally indicated by thereference numeral 10. This ventricular end portion comprises a conventionalelongated catheter member 12 of substantially tubular configuration which is provided with a plurality of radial, or lateral,passageways 14 near one end thereof which are adapted to form communication between the cerebral ventricles and the interior of the catheter, ormain tube 12, for draining cerebrospinal fluid therefrom.
A protective cover for the end of themain tube 12 having thepassageways 14 therein is provided by a plurality ofrib constructions 16 which are arranged about the periphery of themain tube 12 substantially aligned with respect to one another and in parallel relation to the longitudinal axis of themain tube 12. Each of therib constructions 16 is secured at one end to themain tube 12 by any suitable means, and the other ends of the rib constructions extend beyond the end of the main tube 12 a predetermined distance. A cheesecloth, or gauze-like,material 18 porous to the cerebrospinal fluids is suitably attached to the rod-likerib constructions 16 in the same manner as the cloth material of an umbrella is attached to the flexible, supporting ribs thereof.
Anelongated sleeve 20 formed from a cylinder having abore 22 and acounter-bore 24 is slidably disposed over themain tube 12 and-therib constructions 16, with themain tube 12 being slidably received within thebore 22 and the end of thesleeve member 20 having thecounter-bore 24 therein being slidably disposed over therib constructions 16. As shown in FIG. 1, with the device in the normal, inoperative condition, ready for insertion into the brain cavity, one end of thesleeve member 20 extends beyond the end of themain catheter tube 12 substantially the same amount as do therib constructions 16, and when thesleeve 20 is so fully extended, the ends of therib constructions 16 abut theshoulder 26 formed between thebore 22 and thecounter-bore 24 within the sleeve.
Both thesleeve 20 and themain tube 12 are made of material compatible with body tissues such as rubber and" nylon, which preferably have the property of necessary yielding when being inserted into a body cavity. Therib constructions 16 are preconditioned to assume an angular, or conical, configuration relative to themain catheter tube 12, as illustrated in FIG. 2, whenever thesleeve member 20 is withdrawn or retracted, a predetermined distance over such rib constructions. Therib constructions 16 are made from firm, flexible material'preferably selected from such suitable plastic or metallic materials having the desired resilient characteristics. It is contemplated also that some of the new materials having plastic memory characteristics so as to retain form and dimensions under normal temperature conditions but which, upon heating to a critical temperature, change their form and return to their pretreatment form and dimension, may be readily adapted for constructing theribs 16 herein.
Another important feature of the present invention, which is illustrated in FIG. 3, the is provision of means for sensing various conditions in the brain cavity such as, for example, pressure, temperature and the like, for
the purpose of observing the same and thereby-detecting the presence of infection, brain damage, or the like. This is permitted by the provision of a plurality ofsensing devices 28 which are disposed in cavities formed in therib constructions 16. Connections to thesensing devices 28 are strung through slots, or channels, 32 and 34, respectively formed in thesleeve member 20 and therib constructions 16.
FIG. 4 is a simplified diagrammatic representation of the apparatus of the present invention in use. It should be appreciated that nothing shown therein is actually visible, the entireventricular end portion 10 containing themain catheter tube 12 is connected through atrephined opening 36 in the skull to a source of cerebrospinal fluid such as, for example, a lateral ventricle. The other end of thedevice 10 is connected to a suitabletubular valving arrangement 38, of conventional design, permitting flow in one direction only, and this, in turn, is connected to anoutlet tube 40 which is directed to the circulatory system, such as, for example by having its distal end inserted into and secured to the the internal jugular vein or heart.
In the use of the device, therefore, theventricular end portion 10 is inserted through theopening 36 in the skull to a cerebral ventricle whereby it is connected to a source of cerebrospinal fluid, and thereafter thesleeve member 20 is withdrawn, or retracted, a predetermined distance, whereupon therib construction 16 opens, or assumes the predetermined position illustrated in FIG. 2. Thedevice 10 is now ready to receive cerebrospinal fluid through the cheesecloth covering 18 and through thepassageways 14 for draining the same from the cerebral ventricles. This novel arrangement reduces shunt failure by preventing blockage or obstruction of thepassageways 14 in thecatheter tube 12 due to growth of brain tissue thereon, and hence cuts down on the number of surgical procedures which, understandably, ought to be avoided. Through thesensing devices 28, the present invention also permits long term study and observation to readily be made when treating illnesses such as hydrocephalus, brain cancer, and stroke.
It will be seen from the foregoing description that there has been provided a number of new and useful improvements in ventriculo-cardiac shuts for draining cerebrospinal fluids from he cerebral ventricles to the jugular vein or to the heat in the treatment of hydrocephalus and similar conditions.
We wish it to be understood that we do not desire to be limited to the exact details of construction shown and described, for obvious modifications will occur to a person skilled in the art.
What is claimed is:
l. A device suitable for placement in a body cavity for draining fluids therefrom, comprising:
a drainage tube having a closed distal end provided with lateral passageways adjacent thereto, the tube being of sufficient length so that its proximal end is adapted to extend beyond a body cavity into the atmosphere;
porous means covering said distal end of said tube and said lateral passageways therein, said porous means including expansible means for providing an umbrella-like liner thereabout for permitting passage therethrough of fluid but preventing obstruction of said lateral passageways; and,
means for normally retaining said porous means in an unexpanded state during insertion of said drainage tube into a body cavity.
2. The device set forth in claim 1, further comprising means supported on said porous means for sensing predetermined conditions when inserted into a body cavity.
3. The device set forth inclaim 2, wherein said porous means comprises a plurality of elongate, resilient rib constructions normally disposed on said tube parallel to the longitudinal axis thereof and to each other when in said unexpanded state, with one end of each of said ribs being secured to the outer wall of said tube, said ribs being preconditioned to assume a funnel-shaped configuration when the unsecured ends thereof are released by said retaining means; and,
a porous material covering the same and attached thereto at spaced intervals for permitting said ribs to expand into said substantially funnel-shaped configuration.
4. The device set forth in claim 3, wherein said retaining means comprises a sleeve member slidably disposed over said drainage tube and said porous covering means,
said sleeve member having a stop therein for engaging said ribs upon being fully extended thereover, and,
said sleeve member, upon withdrawal thereof at a predetermined distance substantially equal to the length of said unsecured portion of said ribs, permitting said porous covering means to assume said I funnel-shaped configuration.
5. The device set forth in claim 4, wherein said sensing means comprises sensing devices disposed in cavities formed in said ribs, and further including channels formed in said ribs and said sleeve member communicating with said cavities for receiving connecting leads to said sensing devices.
6. The device set forth in claim 5, wherein said sensing devices are responsive to pressure.
7. The device set forth in claim 5 wherein said sensing devices are responsive to temperature.
8. In an apparatus for draining cerebrospinal fluid into the circulatory system, the combination of a resilient conduit adapted to be connected to said circulatory system;
catheter means for connecting the proximate end of said conduit to a source of cerebrospinal fluid;
porous means covering the end of said catheter means and including expansible means for providing an umbrella-like liner thereabout for permitting passage therethrough of said cerebrospinal fluid but preventing the obstruction of said catheter means;
means for normally retaining said porous means in an unexpanded state during insertion into said source of cerebrospinal fluid; and,
means supported on said expandible porous means for sensing predetermined conditions within said source of cerebrospinal fluid.
9. The combination set forth in claim 8, wherein said catheter means is substantially tubular having a closed distal end provided with a plurality of lateral passageways adjacent to said distal end; and,
said porous means comprises a plurality of elongate rib constructions normally disposed on said catheter tube parallel to the longitudinal axis thereof and to each other when in said unexpanded state, with one end of each of said ribs being secured to the outer wall of said catheter tube on the side of said passageways opposite said distal end, said ribs being preconditioned to assume a conical configuration when the unsecured ends thereof are released by said retaining means; and,
a porous material covering said rib constructions and attached thereto at spaced intervals for permitting the same to expand to said conical configuration while providing a tight porous cover thereabout.
10. The combination set forth in claim 9, wherein said means for normally retaining said porous means in an unexpanded state comprises a substantially tubularshaped sleeve member having a stop therein for engaging said ribs upon being fully extended thereover,
said sleeve member, upon withdrawal thereof a predetermined distance substantially equal to the length of said unsecured portion of said ribs, permitting the expansion of said porous covering means, and,
said sensing means comprises sensing devices disposed in cavities formed in said ribs, and channels formed in said ribs and said sleeve member communicating with said cavities for receiving connecting leads for said sensing devices.

Claims (10)

9. The combination set forth in claim 8, wherein said catheter means is substantially tubular having a closed distal end provided with a plurality of lateral passageways adjacent to said distal end; and, said porous means comprises a plurality of elongate rib constructions normally disposed on said catheter tube parallel to the longitudinal axis thereof and to each other when in said unexpanded state, with one end of each of said ribs being secured to the outer wall of said catheter tube on the side of said passageways opposite said distal end, said ribs being preconditioned to assume a conical configuration when the unsecured ends thereof are released by said retaining means; and, a porous material covering said rib constructions and attached thereto at spaced intervals for permitting the same to expand to said conical configuration while providing a tight porous cover thereabout.
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Cited By (62)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3831587A (en)*1973-02-081974-08-27Mc Anally RMultipurpose vaginal and cervical device
FR2512341A1 (en)*1981-09-041983-03-11Murray William SURGICAL CEMENT INJECTION TUBE FOR BONE
US4378797A (en)*1980-04-141983-04-05Thomas Jefferson UniversityExtravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4445888A (en)*1982-03-031984-05-01Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4446154A (en)*1982-03-031984-05-01Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4445500A (en)*1982-03-031984-05-01Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4446155A (en)*1982-03-031984-05-01Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4445886A (en)*1980-04-141984-05-01Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4445887A (en)*1982-03-031984-05-01Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4445514A (en)*1980-04-141984-05-01Thomas Jefferson UniversityExtravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4450841A (en)*1982-03-031984-05-29Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4451251A (en)*1982-03-031984-05-29Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4601724A (en)*1984-05-291986-07-22Cordis CorporationManufacture of tubing assembly for drainage catheter
US4610661A (en)*1984-06-131986-09-09Possis Medical, IncorporatedPerfusion device
US4625722A (en)*1985-05-031986-12-02Murray William MBone cement system and method
US4655745A (en)*1985-07-291987-04-07Corbett Joseph EVentricular catheter
US4657532A (en)*1985-07-191987-04-14Thomas Jefferson UniversityIntra-peritoneal perfusion of oxygenated fluorocarbon
US4686085A (en)*1980-04-141987-08-11Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4692140A (en)*1985-07-011987-09-08Snyder Laboratories, Inc.Lavage/suction tip with dual splash shield
US4741730A (en)*1982-10-041988-05-03American Hospital SupplyHydrocephalus shunt with in-line filter
US4758431A (en)*1980-04-141988-07-19Thomas Jefferson UniversityExtravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4795423A (en)*1980-04-141989-01-03Thomas Jefferson UniversityOxygenated perfluorinated perfusion of the ocular globe to treat ischemic retinopathy
US4830849A (en)*1980-04-141989-05-16Thomas Jefferson UniversityExtravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4840617A (en)*1980-04-141989-06-20Thomas Jefferson UniversityCerebral and lumbar perfusion catheterization apparatus for use in treating hypoxic/ischemic neurologic tissue
US4861331A (en)*1988-03-241989-08-29Pudenz-Schulte Medical Research Corp.Implantable shunt system and method of assembly
US4867740A (en)*1988-03-241989-09-19Pudenz-Schulte Medical Research Corp.Multiple-membrane flow control valve and implantable shunt system
WO1989009634A1 (en)*1988-04-131989-10-19Theodor GreiveCatheter with distally moulded-on catheter point and securing fibre
WO1990000911A1 (en)*1988-07-261990-02-08Automedix Sciences, Inc.Lymph access catheters and methods of administration
US5176626A (en)*1992-01-151993-01-05Wilson-Cook Medical, Inc.Indwelling stent
US5728061A (en)*1988-10-071998-03-17Ahmed; Abdul MateenDevice and method for treating hydrocephalus
US6193682B1 (en)1998-03-162001-02-27Abdul Mateen AhmedLow profile neonatal hydrocephalus device and methods
US20040236309A1 (en)*2003-05-192004-11-25Benson YangMesh ventricular catheter with antithrombogenic coating
US20050113802A1 (en)*2001-03-012005-05-26Watson David A.Process for creating an ingrowth preventing indwelling catheter assembly
US20060074388A1 (en)*2004-09-302006-04-06Alan DextradeurFluid management flow implants of improved occlusion resistance
WO2006050047A3 (en)*2004-10-282006-08-24Jeffrey A WilsonApparatus and methods for performing brain surgery
US20070129663A1 (en)*2005-12-012007-06-07Medtronic, Inc.Implantable cerebrospinal fluid flow device and method of controlling flow of cerebrospinal fluid
US20070197962A1 (en)*2006-02-222007-08-23Masuo MorikawaCatheter for removing foreign substance in blood vessel
US20080109026A1 (en)*2004-10-282008-05-08Strategic Technology Assessment GroupApparatus and Methods for Performing Brain Surgery
EA010844B1 (en)*2007-02-212008-12-30Болот Усенович АСАНОВDevice for aspiration method of detection and catheterization a mouth of large lymphatic basins
US20090048622A1 (en)*2004-10-282009-02-19Wilson Jeffrey AApparatus and methods for performing brain surgery
US9161820B2 (en)2004-10-282015-10-20Nico CorporationSurgical access assembly and method of using same
US9186175B2 (en)2004-10-282015-11-17Nico CorporationSurgical access assembly and method of using same
US9265523B2 (en)2011-10-242016-02-23Nico CorporationSurgical access system with navigation element and method of using same
US9307969B2 (en)2005-06-172016-04-12Vycor Medical, Inc.Tissue retractor apparatus and methods
US9364647B1 (en)2014-07-302016-06-14University Of South FloridaShunt catheter system
US9387010B2 (en)2004-10-282016-07-12Nico CorporationSurgical access assembly and method of using same
US9694166B2 (en)2002-03-262017-07-04Medtronics Ps Medical, Inc.Method of draining cerebrospinal fluid
US9737287B2 (en)2014-05-132017-08-22Vycor Medical, Inc.Guidance system mounts for surgical introducers
US9757147B2 (en)2012-04-112017-09-12Nico CorporationSurgical access system with navigation element and method of using same
US9770261B2 (en)2004-10-282017-09-26Nico CorporationSurgical access assembly and method of using same
US10022520B2 (en)2012-12-172018-07-17Nico CorporationSurgical access system
US10357280B2 (en)2015-04-302019-07-23Nico CorporationNavigating introducer for tissue access system
US10376258B2 (en)2016-11-072019-08-13Vycor Medical, Inc.Surgical introducer with guidance system receptacle
US10456061B2 (en)2014-11-122019-10-29Nico CorporationHolding arrangement for a surgical access system
US10543016B2 (en)2016-11-072020-01-28Vycor Medical, Inc.Surgical introducer with guidance system receptacle
US10543057B2 (en)2016-03-152020-01-28Nico CorporationSelectively lockable holding arrangement for a surgical access system
US10765450B2 (en)2016-03-152020-09-08Nico CorporationSelectively lockable holding arrangement for a surgical access system
USD916280S1 (en)2015-10-162021-04-13Angiodynamics, Inc.Reinforcement arms and collar for a cannula tip
USD916281S1 (en)2016-10-172021-04-13Angiodynamics, Inc.Reinforcement arms and collar for a cannula tip
US11413066B2 (en)2016-03-152022-08-16Nico CorporationSelectively lockable holding arrangement for a surgical access system
USD972723S1 (en)2021-03-172022-12-13Angiodynamics, Inc.Reinforcement arms and collar for an expandable cannula tip
US12178469B2 (en)2016-11-072024-12-31Vycor Medical Inc.Surgical introducer with guidance system receptacle

Citations (4)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US1863057A (en)*1930-03-031932-06-14George A InnesSurgical drain
DE1166977B (en)*1959-11-071964-04-02Auergesellschaft Gmbh Device for connecting ventilation, anesthesia and similar devices to the patient's airways
US3540431A (en)*1968-04-041970-11-17Kazi Mobin UddinCollapsible filter for fluid flowing in closed passageway
US3565056A (en)*1968-02-291971-02-23Statham Instrument IncBody fluid pressure measuring apparatus

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US1863057A (en)*1930-03-031932-06-14George A InnesSurgical drain
DE1166977B (en)*1959-11-071964-04-02Auergesellschaft Gmbh Device for connecting ventilation, anesthesia and similar devices to the patient's airways
US3565056A (en)*1968-02-291971-02-23Statham Instrument IncBody fluid pressure measuring apparatus
US3540431A (en)*1968-04-041970-11-17Kazi Mobin UddinCollapsible filter for fluid flowing in closed passageway

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
Ellenwood, E. R. et al., Central Body Temperature Apparatus, IBM Tech. Disclosure Bulletin, Vol. 11, No. 11, Apr. 1969*

Cited By (102)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3831587A (en)*1973-02-081974-08-27Mc Anally RMultipurpose vaginal and cervical device
US4378797A (en)*1980-04-141983-04-05Thomas Jefferson UniversityExtravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4445886A (en)*1980-04-141984-05-01Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4445514A (en)*1980-04-141984-05-01Thomas Jefferson UniversityExtravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4758431A (en)*1980-04-141988-07-19Thomas Jefferson UniversityExtravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4795423A (en)*1980-04-141989-01-03Thomas Jefferson UniversityOxygenated perfluorinated perfusion of the ocular globe to treat ischemic retinopathy
US4686085A (en)*1980-04-141987-08-11Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4830849A (en)*1980-04-141989-05-16Thomas Jefferson UniversityExtravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4840617A (en)*1980-04-141989-06-20Thomas Jefferson UniversityCerebral and lumbar perfusion catheterization apparatus for use in treating hypoxic/ischemic neurologic tissue
FR2512341A1 (en)*1981-09-041983-03-11Murray William SURGICAL CEMENT INJECTION TUBE FOR BONE
US4466435A (en)*1981-09-041984-08-21Murray William MBone cement nozzle and method
US4445500A (en)*1982-03-031984-05-01Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4451251A (en)*1982-03-031984-05-29Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4450841A (en)*1982-03-031984-05-29Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4445887A (en)*1982-03-031984-05-01Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4446155A (en)*1982-03-031984-05-01Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4446154A (en)*1982-03-031984-05-01Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4445888A (en)*1982-03-031984-05-01Thomas Jefferson UniversityStroke treatment utilizing extravascular circulation of oxygenated synthetic nutrients to treat tissue hypoxic and ischemic disorders
US4741730A (en)*1982-10-041988-05-03American Hospital SupplyHydrocephalus shunt with in-line filter
US4601724A (en)*1984-05-291986-07-22Cordis CorporationManufacture of tubing assembly for drainage catheter
US4610661A (en)*1984-06-131986-09-09Possis Medical, IncorporatedPerfusion device
US4627434A (en)*1985-05-031986-12-09Murray William MBone cement system and method
US4625722A (en)*1985-05-031986-12-02Murray William MBone cement system and method
US4692140A (en)*1985-07-011987-09-08Snyder Laboratories, Inc.Lavage/suction tip with dual splash shield
US4657532A (en)*1985-07-191987-04-14Thomas Jefferson UniversityIntra-peritoneal perfusion of oxygenated fluorocarbon
US4655745A (en)*1985-07-291987-04-07Corbett Joseph EVentricular catheter
US4861331A (en)*1988-03-241989-08-29Pudenz-Schulte Medical Research Corp.Implantable shunt system and method of assembly
US4867740A (en)*1988-03-241989-09-19Pudenz-Schulte Medical Research Corp.Multiple-membrane flow control valve and implantable shunt system
WO1989009634A1 (en)*1988-04-131989-10-19Theodor GreiveCatheter with distally moulded-on catheter point and securing fibre
WO1990000911A1 (en)*1988-07-261990-02-08Automedix Sciences, Inc.Lymph access catheters and methods of administration
US4957484A (en)*1988-07-261990-09-18Automedix Sciences, Inc.Lymph access catheters and methods of administration
US5728061A (en)*1988-10-071998-03-17Ahmed; Abdul MateenDevice and method for treating hydrocephalus
US5176626A (en)*1992-01-151993-01-05Wilson-Cook Medical, Inc.Indwelling stent
USRE35849E (en)*1992-01-151998-07-14Wilson-Cook Medical, Inc.Indwelling stent
US6193682B1 (en)1998-03-162001-02-27Abdul Mateen AhmedLow profile neonatal hydrocephalus device and methods
US20050113802A1 (en)*2001-03-012005-05-26Watson David A.Process for creating an ingrowth preventing indwelling catheter assembly
US8376980B2 (en)2001-03-012013-02-19David A. WatsonIngrowth preventing indwelling catheter assembly
US20100179471A1 (en)*2001-03-012010-07-15Watson David AIngrowth preventing indwelling catheter assembly
US20100282394A1 (en)*2001-03-012010-11-11Watson David AProcess for creating an ingrowth preventing indwelling catheter assembly
US7763142B2 (en)2001-03-012010-07-27Watson David AProcess for creating an ingrowth preventing indwelling catheter assembly
US9694166B2 (en)2002-03-262017-07-04Medtronics Ps Medical, Inc.Method of draining cerebrospinal fluid
US20040236309A1 (en)*2003-05-192004-11-25Benson YangMesh ventricular catheter with antithrombogenic coating
US8221392B2 (en)2004-09-302012-07-17Codman & Shurtleff, Inc.Fluid management flow implants of improved occlusion resistance
US7976517B2 (en)2004-09-302011-07-12Codman & Shurtleff, Inc.Fluid management flow implants of improved occlusion resistance
US20060074388A1 (en)*2004-09-302006-04-06Alan DextradeurFluid management flow implants of improved occlusion resistance
US20080214982A1 (en)*2004-09-302008-09-04Alan DextradeurFluid management flow implants of improved occlusion resistance
US9186175B2 (en)2004-10-282015-11-17Nico CorporationSurgical access assembly and method of using same
US10449340B2 (en)2004-10-282019-10-22Nico CorporationSurgical access assembly and method of using same
US11864793B2 (en)2004-10-282024-01-09Nico CorporationSurgical access assembly and method of using same
US20080109026A1 (en)*2004-10-282008-05-08Strategic Technology Assessment GroupApparatus and Methods for Performing Brain Surgery
WO2006050225A3 (en)*2004-10-282006-09-08Strategic Technology AssessmenApparatus and methods for performing brain surgery
US11464539B2 (en)2004-10-282022-10-11Nico CorporationSurgical access assembly and method of using same
US11412923B2 (en)2004-10-282022-08-16Nico CorporationSurgical access assembly and method of using same
WO2006050047A3 (en)*2004-10-282006-08-24Jeffrey A WilsonApparatus and methods for performing brain surgery
US9161820B2 (en)2004-10-282015-10-20Nico CorporationSurgical access assembly and method of using same
US9770261B2 (en)2004-10-282017-09-26Nico CorporationSurgical access assembly and method of using same
US9216015B2 (en)2004-10-282015-12-22Vycor Medical, Inc.Apparatus and methods for performing brain surgery
US11969187B2 (en)2004-10-282024-04-30Nico CorporationSurgical access assembly and method of using same
US20090048622A1 (en)*2004-10-282009-02-19Wilson Jeffrey AApparatus and methods for performing brain surgery
US10143366B2 (en)2004-10-282018-12-04Nico CorporationSurgical access assembly and method of using same
US9387010B2 (en)2004-10-282016-07-12Nico CorporationSurgical access assembly and method of using same
US9386974B2 (en)2004-10-282016-07-12Vycor 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
US9579121B2 (en)2004-10-282017-02-28Nico CorporationHolding arrangement for a surgical access system
US9622777B2 (en)2004-10-282017-04-18Nico CorporationSurgical access assembly and method of using same
US9968415B2 (en)2004-10-282018-05-15Vycor Medical, Inc.Apparatus and methods for performing brain surgery
US12376741B2 (en)2004-10-282025-08-05Stryker CorporationSurgical access assembly and method of using same
US9307969B2 (en)2005-06-172016-04-12Vycor 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
US9782157B2 (en)2005-06-172017-10-10Vycor Medical, Inc.Tissue retractor apparatus and methods
US20070129663A1 (en)*2005-12-012007-06-07Medtronic, Inc.Implantable cerebrospinal fluid flow device and method of controlling flow of cerebrospinal fluid
US8333728B2 (en)*2005-12-012012-12-18Medtronic, Inc.Implantable cerebrospinal fluid flow device and method of controlling flow of cerebrospinal fluid
US20070197962A1 (en)*2006-02-222007-08-23Masuo MorikawaCatheter for removing foreign substance in blood vessel
EA010844B1 (en)*2007-02-212008-12-30Болот Усенович АСАНОВDevice for aspiration method of detection and catheterization a mouth of large lymphatic basins
CN101297987B (en)*2007-02-212012-09-05博劳特·乌塞诺夫斯基·阿萨诺夫Device for body fluid suction and catheter port positioning of large lymph collector
US10307183B2 (en)2011-10-242019-06-04Nico CorporationSurgical access system with navigation element and method of using same
US9265523B2 (en)2011-10-242016-02-23Nico CorporationSurgical access system with navigation element and method of using same
US11284917B2 (en)2011-10-242022-03-29Nico CorporationSurgical access assembly and method of using same
US9757147B2 (en)2012-04-112017-09-12Nico CorporationSurgical access system with navigation element and method of using same
US10022520B2 (en)2012-12-172018-07-17Nico CorporationSurgical access system
US10842970B2 (en)2012-12-172020-11-24Nico CorporationSurgical access system
US10327748B2 (en)2014-05-132019-06-25Vycor Medical, Inc.Guidance system mounts for surgical introducers
US9737287B2 (en)2014-05-132017-08-22Vycor Medical, Inc.Guidance system mounts for surgical introducers
US12059144B2 (en)2014-05-132024-08-13Vycor Medical, Inc.Guidance system mounts for surgical introducers
US11116487B2 (en)2014-05-132021-09-14Vycor Medical, Inc.Guidance system mounts for surgical introducers
US9364647B1 (en)2014-07-302016-06-14University Of South FloridaShunt catheter system
US10391287B1 (en)2014-07-302019-08-27University Of South FloridaShunt catheter system
US10456061B2 (en)2014-11-122019-10-29Nico CorporationHolding arrangement for a surgical access system
US10357280B2 (en)2015-04-302019-07-23Nico CorporationNavigating introducer for tissue access system
USD916280S1 (en)2015-10-162021-04-13Angiodynamics, Inc.Reinforcement arms and collar for a cannula tip
US10765450B2 (en)2016-03-152020-09-08Nico CorporationSelectively lockable holding arrangement for a surgical access system
US10543057B2 (en)2016-03-152020-01-28Nico CorporationSelectively lockable holding arrangement for a surgical access system
US11413066B2 (en)2016-03-152022-08-16Nico CorporationSelectively lockable holding arrangement for a surgical access system
USD916281S1 (en)2016-10-172021-04-13Angiodynamics, Inc.Reinforcement arms and collar for a cannula tip
USD931447S1 (en)2016-10-172021-09-21Angiodynamics, Inc.Reinforcement arms and collar for a cannula tip
US11517347B2 (en)2016-11-072022-12-06Vycor Medical, Inc.Surgical introducer with guidance system receptacle
US10376258B2 (en)2016-11-072019-08-13Vycor Medical, Inc.Surgical introducer with guidance system receptacle
US11045182B2 (en)2016-11-072021-06-29Vycor Medical, Inc.Surgical introducer with guidance system receptacle
US12178469B2 (en)2016-11-072024-12-31Vycor Medical Inc.Surgical introducer with guidance system receptacle
US10543016B2 (en)2016-11-072020-01-28Vycor Medical, Inc.Surgical introducer with guidance system receptacle
USD972723S1 (en)2021-03-172022-12-13Angiodynamics, Inc.Reinforcement arms and collar for an expandable cannula tip

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