USRE36666E - Micro-instrument - Google Patents

Micro-instrument Download PDF

Info

Publication number
USRE36666E
USRE36666E US08/319,434 US31943494A USRE36666E US RE36666 E USRE36666 E US RE36666E US 31943494 A US31943494 A US 31943494A US RE36666 E USRE36666 E US RE36666E
Authority
US
United States
Prior art keywords
tip
pivot
means defining
piece
extension
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US08/319,434
Inventor
George P. Honkanen, deceased
legal representative by Roger M. Burke
Roger M. Burke
Paul C. Weaver
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Wachovia Bank NA
Specialty Surgical Instrumentation Inc
Original Assignee
TNCO Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by TNCO Inc filed Critical TNCO Inc
Priority to US08/319,434 priority Critical patent/USRE36666E/en
Application granted granted Critical
Publication of USRE36666E publication Critical patent/USRE36666E/en
Assigned to WACHOVIA BANK, NATIONAL ASSOCIATION reassignment WACHOVIA BANK, NATIONAL ASSOCIATION ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: TNCO, INC.
Anticipated expiration legal-status Critical
Assigned to TNCO, INC. reassignment TNCO, INC. RELEASE OF SECURITY INTEREST RECORDED AT REEL/FRAME 20442/596 Assignors: WELLS FARGO BANK, NATIONAL ASSOCIATION (AS SUCCESSOR BY MERGER TO WACHOVIA BANK, NATIONAL ASSOCIATION)
Assigned to SYMMETRY MEDICAL USA, INC. reassignment SYMMETRY MEDICAL USA, INC. ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: SYMMETRY MEDICAL NEW BEDFORD, INC.
Assigned to SPECIALTY SURGICAL INSTRUMENTATION INC. reassignment SPECIALTY SURGICAL INSTRUMENTATION INC. ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: SYMMETRY MEDICAL USA, INC.
Assigned to GENERAL ELECTRIC CAPITAL CORPORATION, AS ADMINISTRATIVE AGENT reassignment GENERAL ELECTRIC CAPITAL CORPORATION, AS ADMINISTRATIVE AGENT SECURITY INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: OLSEN MEDICAL, LLC, SPECIALTY SURGICAL INSTRUMENTATION, INC., SYMMETRY MEDICAL SSI REAL ESTATE, LLC, SYMMETRY SURGICAL INC., SYMMETRY SURGICAL INTERNATIONAL, INC.
Assigned to HEALTHCARE FINANCIAL SOLUTIONS, LLC, AS SUCCESSOR AGENT reassignment HEALTHCARE FINANCIAL SOLUTIONS, LLC, AS SUCCESSOR AGENT SECURITY INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: GENERAL ELECTRIC CAPITAL CORPORATION, AS RETIRING AGENT
Assigned to SYMMETRY MEDICAL SSI REAL ESTATE, LLC, SYMMETRY SURGICAL INTERNATIONAL, INC., SYMMETRY SURGICAL INC., SPECIALTY SURGICAL INSTRUMENTATION, INC. reassignment SYMMETRY MEDICAL SSI REAL ESTATE, LLC RELEASE BY SECURED PARTY (SEE DOCUMENT FOR DETAILS). Assignors: CAPITAL ONE, NATIONAL ASSOCIATION
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/28Surgical forceps
    • A61B17/29Forceps for use in minimally invasive surgery
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/16Bone cutting, breaking or removal means other than saws, e.g. Osteoclasts; Drills or chisels for bones; Trepans
    • A61B17/1604Chisels; Rongeurs; Punches; Stamps
    • A61B17/1606Chisels; Rongeurs; Punches; Stamps of forceps type, i.e. having two jaw elements moving relative to each other
    • A61B17/1608Chisels; Rongeurs; Punches; Stamps of forceps type, i.e. having two jaw elements moving relative to each other the two jaw elements being linked to two elongated shaft elements moving longitudinally relative to each other
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/28Surgical forceps
    • A61B17/29Forceps for use in minimally invasive surgery
    • A61B2017/2926Details of heads or jaws
    • A61B2017/2932Transmission of forces to jaw members
    • A61B2017/2939Details of linkages or pivot points
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/28Surgical forceps
    • A61B17/29Forceps for use in minimally invasive surgery
    • A61B2017/2926Details of heads or jaws
    • A61B2017/2932Transmission of forces to jaw members
    • A61B2017/2939Details of linkages or pivot points
    • A61B2017/294Connection of actuating rod to jaw, e.g. releasable

Definitions

  • the present invention relates to micro-instrumentation, i.e. articulating hand held instruments used in micro-surgery, electronic micro-assembly and like applications, for grasping, cutting, punching out, probing, etc.
  • the instruments can comprise scissor-handle-actuators, so-called cigar handle linear or rotary activators, or other actuators, with push or pull force application design modes.
  • the objects of the invention are realized through the invention's provision of the said instruments in a miniaturized form with articulating handle means (of rod or scissors grip forms or other forms) and elongated probe means extending therefrom, with an elongated actuating linkage portion and a tip portion at the probe end distal from the handle.
  • the handle portion is, per se, of conventional form.
  • the actuating linkage preferrably comprises a shaft fixedly mounted from the handle, with a longitudinal groove or hole receiving an actuating rod and mounting the tip portion at the distal end of the shaft.
  • the tip portion comprises an assembly of relatively moveable components usually defined as an inner tip and outer tip.
  • the inner tip literally moves within an envelope largely defined by an outer tip.
  • the nomenclature is more arbitrary.
  • the "inner” tip moves while the “outer” tip is stationary although in some applications the reverse or both can move.
  • the tip assembly is operated to excise tissue in bits, to separate one piece of tissue from another, to grasp and/or manipulate and/or remove particulate matter.
  • the tip assembly has a pivotal mounting with a fixed shaft extension of the outer tip integrally formed therewith.
  • the articulating inner tip has a groove seating on the shaft extension to define the pivotal mount.
  • An actuating linkage extends from an actuating system in the handle through an elongated channel of the probe and terminating in a connection at the inner tip offset from the pivotal mount to provide a levering articulation motion to the inner tip forward and back between ⁇ upper ⁇ and ⁇ lower ⁇ positions.
  • each of the inner and outer tip retains its basic shape and neither generates small break-off pieces. Further, the inner and outer tip retain their assembly to each other and assembled to the probe relationships and a significant degree of their operability.
  • the invention accommodates the direct articulating drive to the inner tip as well as related actions of proper use, e.g. twisting and pulling or pushing of the instrument as a whole, and improper uses.
  • Positive stops are provided to prevent the inner tip from escaping from its nested relation with the outer tip.
  • the integral pivot extension of the outer tip which forms the pivot mount preferrably has an hour-glass shape which does not weaken the adjacent outer tip wall(s), but rather enhances strength and rigidity of the same.
  • the integral pivot enables thinner wall sections of the outer tip and shaving the design of ⁇ upper ⁇ and ⁇ lower ⁇ edges (hereinafter shown) of the outer tip to be closer to the pivot center and maximize engagement of tissue or other material or objects to be grasped.
  • FIGS. 1 and 2 are side and top views of a probe end of a preferred embodiment of the invention applied to a punch utilization with a supplementary diagram (FIG. 1A showing the relative position of fixed and moveable pivots).
  • a cross-section partial top view FIG. 1B showing fixed pivot detail is based on a section taken as indicated by arrows D--D in FIG. 1A.
  • a sectioned assembly portion FIG. 2A showing moveable pivot detail is based on a section per arrows E--E in FIG. 1A.
  • An additional sectioned assembly, FIG. 2B displays the inner tip positioned within the outer tip and shows the moveable actuator link nested in the inner tip recess. This view is based on section F--F of FIG. 1A.
  • FIG. 2C shows the moveable actuator link nested in the outer tip slot and is indicated by arrows B--B in FIG. 2.
  • the inner tip is shown in the partially open position with an adjacent arrow indicating the relative range of motion.
  • FIGS. 3 and 3B are side views of the instrument's handle portion in open and closed positions.
  • FIG. 3 shows the handle and front end assembled in open position.
  • FIG. 3A displays perpendicular slots which retain the actuator and drive pin assembly in the handle and is based on arrows G--G in FIG. 3B.
  • FIG. 4 and 5 show top views of outer tip variants for the scissor and grabber useage embodiment respectively.
  • FIGS. 1-2 show an endoscopic punch of a type used in TMJ surgical procedures.
  • the punch has an elongated probe 8 (FIG. 2) with an outer tip 12 of U-shape form with an end 14 and sidewalls 16 and 18 with upper and lower cutting edges 16E and 18E (FIG.
  • An inner tip 22 is mounted on the pivot for rotation as indicated by the double arrow shown in FIG. 1 between an open position (FIG. 1) and a closed position nested within the outer tip.
  • a channel or slot 24 of the inner tip seats on the integral pivot of the outer tip.
  • the channel is shaped with a negative hourglass at its base to conform to the positive hourglass form of the integral pivot 20.
  • the internal centerlines of the positive and negative hourglass forms are coincident.
  • the inner tip's range of arcuate movement brings its upper face to bear on surface 25 of the outer tip. Ramp surface 25 is dimensioned to allow necessary opening rotary motion, but restrict disengagement linear motion of the pivot elements.
  • the upper portion of the inner tip, above the channel, has a cross-hole 29.
  • This cross hole accommodates a pivot 30 that is an integral pivot extension of a linearly moveable actuating link 26, moveable as indicated by arrow M, riding in a channel 28 and coupled to the inner tip by said pivot 30 that passes through hole 29 in the tip, to drive the inner tip between end positions.
  • the inner tip has a cut out recess 32 to accommodate the rounded end of link 26. As shown in FIGS. 2B, 2A, 1A and 1 the linear movement of link 26 is transmitted via pivot 30 to the inner tip to move the inner tip through an arc of up to 90 degrees.
  • the inner tip recess includes a front wall 34 that absorbs part of the actuating force applied through link 26 as inner tip 22 is moved counter clockwise against resistant tissue.
  • stop block 44 (FIG. 2) on link 26, moveable for distance M between stop faces 46 and 48 of a wide cutout or slot in the bottom of channel 28.
  • a bushing 50 carries probe 8.
  • the bushing is, in turn, encased in a handle assembly 52 (FIG. 3) comprising a thumb loop 54 and a finger loop 56 pivoted at fulcrum 60.
  • the top of the finger loop above the fulcrum has an axial slot 56-1 (FIG. 3A) and cross slots 56-2, 56-3 forming a fork to receive a cross pin 27 (FIG. 2) through the actuating linkage, thus allowing movement of the finger loop to impart driving force M to the actuator linkage.
  • FIG. 4 is a partial top view of the outer tip end 4-12 of an alternative scissors embodiment with side walls 4-16 and 4-18 bridged by an integral pivot 4-20, exemplifying the strengthening ability of this basic pivot.
  • An “inner” tip mounts on the pivot in the same manner as shown in FIGS. 1 and 2.
  • FIG. 5 is a partial top view of the outer tip end 5-12 of an alternative grabber embodiment with side walls 5-16 and 5-18 bridged by an integral pivot 5-20.
  • An “inner” tip mounts on the pivot in the same manner as shown in FIGS. 1 and 2.
  • the integral pivot 20 can be made by profiling with a ball end mill cutter into the metal stock of a solid outer tip blank, the cutter being advanced in the directions indicated by arrows M1 and M2 in FIG. 1A.
  • the cut-out area up to surface 25 allows entry of a cutter advanced as indicated by arrow M2 and also allows for inner tip 22 assembly/disassembly with respect to outer tip 12 and pivot 20.
  • the machine integral pivot shares the metallurgical and strength/toughness characteristics of side walls 16 and 18 of the outer tip 12, whereas welding and other attachment methods would alter and undermine such characteristics within a pivot-tip assembly.
  • the machined integral pivot has, as a natural part of its design, a strength enhancing fillet form at its joinders with the side walls which would not be feasible in a micro-welded construction.

Landscapes

  • Health & Medical Sciences (AREA)
  • Surgery (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Biomedical Technology (AREA)
  • Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
  • Engineering & Computer Science (AREA)
  • Ophthalmology & Optometry (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Medical Informatics (AREA)
  • Molecular Biology (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Surgical Instruments (AREA)

Abstract

A microsurgical instrument with opposing jaws rotatable relative to one another using a pivot integral to a frame comprising one jaw for rotating the other jaw and a linkage to push one jaw rotatably towards the other jaw wherein a distal-most surface of that jaw pushes against a surface of jaw to be moved.

Description

BACKGROUND OF THE INVENTION
The present invention relates to micro-instrumentation, i.e. articulating hand held instruments used in micro-surgery, electronic micro-assembly and like applications, for grasping, cutting, punching out, probing, etc. The instruments can comprise scissor-handle-actuators, so-called cigar handle linear or rotary activators, or other actuators, with push or pull force application design modes.
The following discussion of the invention focusses on instruments required for endoscopic usage (minimally invasive procedures) and more particularly punches, scissors and graspers used in temporal-mandibular joint (TMJ) surgery. However, the invention is also applicable to other surgical instruments and non-surgical instruments.
Recent generations of enhanced miniaturization of endoscopic instruments have encountered the structural limits of thin cross-sections. As the tip area of such instruments is reduced, the likelihood of breakage and/or the need to reduce applied force becomes evident. The high strength and toughness of advanced metal alloys have not overcome this problem.
It is a principal object of the invention to provide micro-instruments of the classes described above of superior strength. It is a further object of the present invention to provide micro-instruments of the classes described above with reduced tip cross-section dimensions with a rigidity, stability and low vulnerability to breakage heretofore found only in larger instruments.
It is a further object of the present invention to provide micro-instruments of the classes described above with a characteristic that upon a breakage while in use, there is minimal probability of pieces separating from the main body of the instrument.
It is a further and related object of the invention to enable a new level of miniaturization of such instruments and to enable the existence of interlocking type graspers at such new level (as well as punches, scissors and other cutters).
It is a further object of the invention to achieve the previous objects with ease of manufacturability.
SUMMARY OF THE INVENTION
The objects of the invention are realized through the invention's provision of the said instruments in a miniaturized form with articulating handle means (of rod or scissors grip forms or other forms) and elongated probe means extending therefrom, with an elongated actuating linkage portion and a tip portion at the probe end distal from the handle.
The handle portion is, per se, of conventional form.
The actuating linkage preferrably comprises a shaft fixedly mounted from the handle, with a longitudinal groove or hole receiving an actuating rod and mounting the tip portion at the distal end of the shaft.
The tip portion comprises an assembly of relatively moveable components usually defined as an inner tip and outer tip. As applied to a surgical punch, the inner tip literally moves within an envelope largely defined by an outer tip. As to scissors and the like the nomenclature is more arbitrary. Generally, the "inner" tip moves while the "outer" tip is stationary although in some applications the reverse or both can move. The tip assembly is operated to excise tissue in bits, to separate one piece of tissue from another, to grasp and/or manipulate and/or remove particulate matter. The tip assembly has a pivotal mounting with a fixed shaft extension of the outer tip integrally formed therewith. The articulating inner tip has a groove seating on the shaft extension to define the pivotal mount. An actuating linkage extends from an actuating system in the handle through an elongated channel of the probe and terminating in a connection at the inner tip offset from the pivotal mount to provide a levering articulation motion to the inner tip forward and back between `upper` and `lower` positions. In case of breakage in use, each of the inner and outer tip retains its basic shape and neither generates small break-off pieces. Further, the inner and outer tip retain their assembly to each other and assembled to the probe relationships and a significant degree of their operability.
The invention accommodates the direct articulating drive to the inner tip as well as related actions of proper use, e.g. twisting and pulling or pushing of the instrument as a whole, and improper uses.
Positive stops are provided to prevent the inner tip from escaping from its nested relation with the outer tip.
The integral pivot extension of the outer tip which forms the pivot mount preferrably has an hour-glass shape which does not weaken the adjacent outer tip wall(s), but rather enhances strength and rigidity of the same. The integral pivot enables thinner wall sections of the outer tip and shaving the design of `upper` and `lower` edges (hereinafter shown) of the outer tip to be closer to the pivot center and maximize engagement of tissue or other material or objects to be grasped.
Other objects, features, and advantages will be apparent from the following detailed description of preferred embodiments taken in conjunction with the accompanying drawing in which:
BRIEF DESCRIPTION OF THE DRAWINGS
FIGS. 1 and 2 are side and top views of a probe end of a preferred embodiment of the invention applied to a punch utilization with a supplementary diagram (FIG. 1A showing the relative position of fixed and moveable pivots). A cross-section partial top view FIG. 1B showing fixed pivot detail is based on a section taken as indicated by arrows D--D in FIG. 1A. A sectioned assembly portion FIG. 2A showing moveable pivot detail is based on a section per arrows E--E in FIG. 1A. An additional sectioned assembly, FIG. 2B, displays the inner tip positioned within the outer tip and shows the moveable actuator link nested in the inner tip recess. This view is based on section F--F of FIG. 1A. FIG. 2C shows the moveable actuator link nested in the outer tip slot and is indicated by arrows B--B in FIG. 2. In FIG. 1 the inner tip is shown in the partially open position with an adjacent arrow indicating the relative range of motion.
FIGS. 3 and 3B are side views of the instrument's handle portion in open and closed positions. FIG. 3 shows the handle and front end assembled in open position. FIG. 3A displays perpendicular slots which retain the actuator and drive pin assembly in the handle and is based on arrows G--G in FIG. 3B. FIG. 4 and 5 show top views of outer tip variants for the scissor and grabber useage embodiment respectively.
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
The side view/top view assembly drawings of FIGS. 1-2 (and ancillary views FIGS. 1A, 1B, 2A, 2B and 2C including sections and views taken as indicated at A--A in FIG. 2 for FIG. 1, B--B for FIG. 2C, View C in FIG. 1 for FIG. 1a, D--D and E--E of FIG. A for FIGS. 1B and 2A and F--F of FIG. 1A for FIG. 2B) show an endoscopic punch of a type used in TMJ surgical procedures. The punch has an elongated probe 8 (FIG. 2) with an outer tip 12 of U-shape form with an end 14 and sidewalls 16 and 18 with upper and lower cutting edges 16E and 18E (FIG. 1) and an integral pivot 20 of essentially hourglass form integrally formed with and bridging the walls 16 and 18. An inner tip 22 is mounted on the pivot for rotation as indicated by the double arrow shown in FIG. 1 between an open position (FIG. 1) and a closed position nested within the outer tip. A channel or slot 24 of the inner tip seats on the integral pivot of the outer tip. The channel is shaped with a negative hourglass at its base to conform to the positive hourglass form of the integral pivot 20. The internal centerlines of the positive and negative hourglass forms are coincident. The inner tip's range of arcuate movement brings its upper face to bear on surface 25 of the outer tip. Ramp surface 25 is dimensioned to allow necessary opening rotary motion, but restrict disengagement linear motion of the pivot elements.
The upper portion of the inner tip, above the channel, has a cross-hole 29. This cross hole accommodates a pivot 30 that is an integral pivot extension of a linearly moveable actuating link 26, moveable as indicated by arrow M, riding in a channel 28 and coupled to the inner tip by said pivot 30 that passes through hole 29 in the tip, to drive the inner tip between end positions.
The inner tip has a cut out recess 32 to accommodate the rounded end of link 26. As shown in FIGS. 2B, 2A, 1A and 1 the linear movement of link 26 is transmitted via pivot 30 to the inner tip to move the inner tip through an arc of up to 90 degrees. The inner tip recess includes a front wall 34 that absorbs part of the actuating force applied through link 26 as inner tip 22 is moved counter clockwise against resistant tissue.
At the handle end, stopping is also controlled by a stop block 44 (FIG. 2) on link 26, moveable for distance M between stop faces 46 and 48 of a wide cutout or slot in the bottom of channel 28. A bushing 50 carries probe 8. The bushing is, in turn, encased in a handle assembly 52 (FIG. 3) comprising a thumb loop 54 and a finger loop 56 pivoted at fulcrum 60. The top of the finger loop above the fulcrum has an axial slot 56-1 (FIG. 3A) and cross slots 56-2, 56-3 forming a fork to receive a cross pin 27 (FIG. 2) through the actuating linkage, thus allowing movement of the finger loop to impart driving force M to the actuator linkage.
FIG. 4 is a partial top view of the outer tip end 4-12 of an alternative scissors embodiment with side walls 4-16 and 4-18 bridged by an integral pivot 4-20, exemplifying the strengthening ability of this basic pivot. An "inner" tip mounts on the pivot in the same manner as shown in FIGS. 1 and 2. FIG. 5 is a partial top view of the outer tip end 5-12 of an alternative grabber embodiment with side walls 5-16 and 5-18 bridged by an integral pivot 5-20. An "inner" tip mounts on the pivot in the same manner as shown in FIGS. 1 and 2.
In manufacture, the integral pivot 20 can be made by profiling with a ball end mill cutter into the metal stock of a solid outer tip blank, the cutter being advanced in the directions indicated by arrows M1 and M2 in FIG. 1A. The cut-out area up to surface 25 allows entry of a cutter advanced as indicated by arrow M2 and also allows for inner tip 22 assembly/disassembly with respect to outer tip 12 and pivot 20.
The machine integral pivot shares the metallurgical and strength/toughness characteristics of side walls 16 and 18 of the outer tip 12, whereas welding and other attachment methods would alter and undermine such characteristics within a pivot-tip assembly. The machined integral pivot has, as a natural part of its design, a strength enhancing fillet form at its joinders with the side walls which would not be feasible in a micro-welded construction.
It will now be apparent to those skilled in the art that other embodiments, improvements, details, and uses can be made consistent with the letter and spirit of the foregoing disclosure and within the scope of this patent, which is limited only by the following claims, construed in accordance with the patent law, including the doctrine of equivalents.

Claims (8)

What is claimed is:
1. A miniature articulated tip tool for micro-surgical, medical and like uses, comprising:
(a) means defining an articulated tip with at least one pivotable element and a sole pivot element therefor with a range of movement of said tip between extended and retracted positions for effecting selective user controlled pivotal working movements, the said tip defining means comprising at least one fixed wall with an extension thereof formed together in one piece and serving as said pivot element;
(b) means defining a user control handle-actuating system; and
(c) means defining an elongated linkage between the handle-actuating system and the articulable tip pivotable member and a channel including such elongated linkage.
2. The tool of claim 1 wherein the tip has a construction of two side walls with said pivot constituting a one piece extension of both.
3. The tool of claim 2 wherein said sidewalls are essentially parallel and the one-piece pivot has essentially an hour glass form.
4. The tool of claim 1 wherein said pivotable element has a hook opening conforming to the pivot.
5. An endoscopic surgical instrument, comprising:
(a) means defining an articulated tip with at least one pivotable element and a sole pivot element therefor with a range of movement of said tip between extended and retracted positions for effecting selective user controlled pivotal working movements, the said tip defining means comprising at least one fixed wall with an extension thereof formed together in one piece serving as said pivot element, and the one-piece pivot having essentially an hour glass form;
(b) means defining a user control handle-actuating system; and
(c) means defining an elongated linkage between the handle-actuating system and the articulable tip pivotable member and a channel including such elongated linkage.
6. A grasper for micro-surgical, medical and like uses, comprising:
(a) means defining an articulated tip with at least one pivotable element and a sole pivot element therefor with a range of movement of said tip between extended and retracted positions for effecting selective user controlled pivotal working movements, the said tip defining means comprising at least one fixed wall with an extension thereof formed together in one piece serving as said pivot element;
(b) means defining a user control handle-actuating system;
(c) means defining an elongated linkage between the handle-actuating system and the articulable tip pivotable member and a channel including such elongated linkage. .Iadd.
7. A miniature articulated tip tool assembly comprising:
(a) means defining an articulated tip with at least one pivotable element and a sole pivot element therefor with a range of movement of said tip between extended and retracted positions for effecting selective user controlled pivotal working movements;
(b) means defining a user controlled handle-actuating system; and
(c) means defining an elongated linkage between the handle-actuating system proximally and the articulable tip pivotable element distally and a channel medially including such elongated linkage such that a distal-most surface of said linkage transmits force directly to a surface of said articulable tip pivotable element to pivot said pivotable element to move said tip into said extended position..Iaddend..Iadd.8. The tool of claim 7 wherein said tip defining means comprises at least one fixed wall with an extension thereof formed together in one piece and serving as said pivot element..Iaddend..Iadd.9. The tool of claim 8 wherein the tip has a construction of two side walls with said pivot constituting a one piece extension of both..Iaddend..Iadd.10. The tool of claim 9 wherein said sidewalls are essentially parallel and the one-piece pivot has essentially
an hour glass form..Iaddend..Iadd.11. A medical instrument comprising:
a tubular extension having a longitudinal axis, a distal end and a proximal end;
a movable end effector pivotally attached by a pivot to said distal end of said tubular extension; and
a drive member located within the tubular extension and capable of moving between a first proximal position and a second distal position within said tubular extension,
said drive member having an arm pivotally attached by a pin and hole attachment to said movable end effector, said arm having a distal-most end surface for transferring force directly to said movable end effector causing said movable end effector to rotate about said pivot toward said longitudinal axis..Iaddend.
US08/319,434 1990-05-31 1994-10-06 Micro-instrument Expired - Lifetime USRE36666E (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US08/319,434 USRE36666E (en) 1990-05-31 1994-10-06 Micro-instrument

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US07/531,785 US5152780A (en) 1990-05-31 1990-05-31 Micro-instrument
US08/319,434 USRE36666E (en) 1990-05-31 1994-10-06 Micro-instrument

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
US07/531,785 Reissue US5152780A (en) 1990-05-31 1990-05-31 Micro-instrument

Publications (1)

Publication Number Publication Date
USRE36666E true USRE36666E (en) 2000-04-18

Family

ID=24119038

Family Applications (2)

Application Number Title Priority Date Filing Date
US07/531,785 Ceased US5152780A (en) 1990-05-31 1990-05-31 Micro-instrument
US08/319,434 Expired - Lifetime USRE36666E (en) 1990-05-31 1994-10-06 Micro-instrument

Family Applications Before (1)

Application Number Title Priority Date Filing Date
US07/531,785 Ceased US5152780A (en) 1990-05-31 1990-05-31 Micro-instrument

Country Status (1)

Country Link
US (2) US5152780A (en)

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6666876B2 (en) * 2000-02-24 2003-12-23 Hitachi, Ltd. Forceps and manipulator with using thereof
US20040260337A1 (en) * 2003-06-18 2004-12-23 Scimed Life Systems, Inc. Endoscopic instruments and methods of manufacture
US20050113867A1 (en) * 2003-11-25 2005-05-26 Scimed Life Systems, Inc. Forceps and collection assembly and related methods of use and manufacture
US20060129185A1 (en) * 1999-10-25 2006-06-15 Boston Scientific Scimed, Inc. Forceps for medical use
US7762960B2 (en) 2005-05-13 2010-07-27 Boston Scientific Scimed, Inc. Biopsy forceps assemblies
US20100292716A1 (en) * 2009-05-18 2010-11-18 Dino Kasvikis Attachable clamp for use with surgical instruments
US7871423B2 (en) 2005-04-29 2011-01-18 Bovie Medical Corporation Forceps for performing endoscopic or arthroscopic surgery
US8083686B2 (en) 2003-09-10 2011-12-27 Boston Scientific Scimed, Inc. Forceps and collection assembly with accompanying mechanisms and related methods of use
US8469993B2 (en) 2003-06-18 2013-06-25 Boston Scientific Scimed, Inc. Endoscopic instruments

Families Citing this family (49)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5797939A (en) * 1989-12-05 1998-08-25 Yoon; Inbae Endoscopic scissors with longitudinal operating channel
US5665100A (en) * 1989-12-05 1997-09-09 Yoon; Inbae Multifunctional instrument with interchangeable operating units for performing endoscopic procedures
US5984939A (en) * 1989-12-05 1999-11-16 Yoon; Inbae Multifunctional grasping instrument with cutting member and operating channel for use in endoscopic and non-endoscopic procedures
US5797958A (en) * 1989-12-05 1998-08-25 Yoon; Inbae Endoscopic grasping instrument with scissors
US5241968A (en) * 1990-05-10 1993-09-07 Symbiosis Corporation Single acting endoscopic instruments
CA2050868C (en) * 1990-10-05 2002-01-01 Ernie Aranyi Endoscopic surgical instrument
US5489292A (en) 1990-10-05 1996-02-06 United States Surgical Corporation Endoscopic surgical instrument with grip enhancing means
US5478347A (en) * 1990-10-05 1995-12-26 United States Surgical Corporation Endoscopic surgical instrument having curved blades
US5486189A (en) * 1990-10-05 1996-01-23 United States Surgical Corporation Endoscopic surgical instrument
WO1992008415A1 (en) * 1990-11-09 1992-05-29 Arthrotek, Inc. Surgical cutting instrument
US5735290A (en) 1993-02-22 1998-04-07 Heartport, Inc. Methods and systems for performing thoracoscopic coronary bypass and other procedures
DE4204051C2 (en) * 1992-02-12 1994-12-08 Karl Von Rauch Anvil scissors for surgical purposes
WO1994000059A1 (en) * 1992-06-24 1994-01-06 Microsurge, Inc. Reusable endoscopic surgical instrument
US5478351A (en) * 1992-06-24 1995-12-26 Microsurge, Inc. Endoscopic surgical tool with handle and detachable tool assembly
US5282817A (en) * 1992-09-08 1994-02-01 Hoogeboom Thomas J Actuating handle for multipurpose surgical instrument
US5683359A (en) * 1992-11-18 1997-11-04 Symbiosis Corporation Arthroscopic surgical instruments having suction capability
US5389104A (en) 1992-11-18 1995-02-14 Symbiosis Corporation Arthroscopic surgical instruments
FR2699394B1 (en) * 1992-12-21 1995-04-07 Bluet Jean Luc Surgical needle holder.
US5327908A (en) * 1993-01-08 1994-07-12 United States Surgical Corporation Surgical apparatus for measuring body tissue
JPH08502438A (en) * 1993-02-22 1996-03-19 ヴァリーラブ・インコーポレーテッド Laparoscopic distraction tension retractor device and method
US6494211B1 (en) 1993-02-22 2002-12-17 Hearport, Inc. Device and methods for port-access multivessel coronary artery bypass surgery
US5431674A (en) * 1993-09-07 1995-07-11 Pa Consulting Group Compound motion cutting device
US5501698A (en) * 1994-02-14 1996-03-26 Heartport, Inc. Endoscopic microsurgical instruments and methods
DE4444403A1 (en) * 1994-12-14 1996-06-20 Waizenegger Klaus Surgical instrument
DE19632298B4 (en) * 1996-08-10 2004-09-23 Deutsches Zentrum für Luft- und Raumfahrt e.V. Gripping device for use in minimally invasive surgery
NL1004056C2 (en) * 1996-09-18 1998-03-19 Tu Delft Afdeling Werktuigbouw Gripping pliers.
US5897507A (en) * 1996-11-25 1999-04-27 Symbiosis Corporation Biopsy forceps instrument having irrigation and aspiration capabilities
US6331165B1 (en) 1996-11-25 2001-12-18 Scimed Life Systems, Inc. Biopsy instrument having irrigation and aspiration capabilities
US7347828B2 (en) * 1996-11-25 2008-03-25 Boston Scientific Miami Corporation Suction adapter for medical instrument
US6142956A (en) 1996-11-25 2000-11-07 Symbiosis Corporation Proximal actuation handle for a biopsy forceps instrument having irrigation and aspiration capabilities
US5868786A (en) * 1997-04-18 1999-02-09 Tnco, Inc. Integral log linkage for micro-instrument
US6322578B1 (en) 1997-07-14 2001-11-27 Heartport, Inc. Endoscopic microsurgical instruments
US6007495A (en) * 1998-01-22 1999-12-28 United States Surgical Corporation Biopsy apparatus and method
US5989277A (en) * 1998-01-30 1999-11-23 Lemaire, Iii; Norman J. Surgical instrument with offset jaw actuator
US5922007A (en) * 1998-02-02 1999-07-13 Aslan Medical Technologies Endoscopic surgical instrument with ratchet locking device
US5928263A (en) * 1998-02-02 1999-07-27 Aslan Medical Technologies Surgical instrument with flexible actuator and rigid actuator cover
US6599309B1 (en) * 1999-09-09 2003-07-29 Tnco, Inc. Pin-less surgical instrument
JP3745234B2 (en) * 2000-06-13 2006-02-15 オリンパス株式会社 Endoscopic treatment tool
DE10161542A1 (en) * 2001-12-11 2003-07-10 Aesculap Ag & Co Kg Surgical instrument of shaft and movable tool system employs actuator as pull- and-push element with control curves of mutually sliding surfaces to transmit tool movement and re-set force.
AU2004289336B2 (en) * 2003-11-12 2010-07-29 Applied Medical Resources Corporation Surgical instrument having jaw spines
US20050222600A1 (en) * 2004-03-03 2005-10-06 Ken Yamaguchi Inverted capsular punch and arthroscopic method
US7736374B2 (en) 2004-05-07 2010-06-15 Usgi Medical, Inc. Tissue manipulation and securement system
US7666323B2 (en) * 2004-06-09 2010-02-23 Veeco Instruments Inc. System and method for increasing the emissivity of a material
EP1716810B1 (en) * 2005-04-26 2008-10-15 Niti-on Co., Ltd. Endoscopic surgical instrument
US8425520B2 (en) 2009-10-30 2013-04-23 Depuy Spine, Inc. Bone plate holder
US8425515B2 (en) * 2009-10-30 2013-04-23 Depuy Spine, Inc. Bone graft loading instruments and methods of connecting a bone graft to a bone plate
US8470003B2 (en) 2009-10-30 2013-06-25 DePuy Synthes Products, LLC Laminoplasty plates and methods of expanding the spinal canal
US20110106087A1 (en) * 2009-10-30 2011-05-05 Gamache Thomas J Bone Plate Holder
DE102021123881A1 (en) 2021-09-15 2023-03-16 Karl Storz Se & Co. Kg Micro-invasive tool for a micro-invasive medical instrument

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4662371A (en) * 1983-01-26 1987-05-05 Whipple Terry L Surgical instrument

Family Cites Families (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE50053C (en) * A. BAV in Nakskov, Dänemark. — Draft regulator for furnaces
FR361907A (en) * 1905-11-13 1906-12-20 Dieudonne Simal Adjustable position surgical cutters
DE356185C (en) * 1920-12-09 1922-07-18 Ernst Bacher Surgical instrument
US1754806A (en) * 1929-09-05 1930-04-15 Holland N Stevenson Surgical instrument
US2790437A (en) * 1955-10-12 1957-04-30 Welch Allyn Inc Surgical instrument
US3404677A (en) * 1965-07-08 1968-10-08 Henry A. Springer Biopsy and tissue removing device
US3895636A (en) * 1973-09-24 1975-07-22 William Schmidt Flexible forceps
US3964468A (en) * 1975-05-30 1976-06-22 The Board Of Trustees Of Leland Stanford Junior University Bioptome
US4122856A (en) * 1976-10-08 1978-10-31 American Hospital Supply Corporation Surgical instrument and method of assembly thereof
US4084594A (en) * 1976-10-08 1978-04-18 American Hospital Supply Corporation Surgical instrument and handle assembly therefor
US4522206A (en) * 1983-01-26 1985-06-11 Dyonics, Inc. Surgical instrument
DE8316034U1 (en) * 1983-06-01 1983-09-29 Richard Wolf Gmbh, 7134 Knittlingen Scissor handle for exchangeable pliers bits
US4712545A (en) * 1984-04-05 1987-12-15 Acufex Microsurgical, Inc. Surgical instrument
FR2582503A1 (en) * 1985-06-04 1986-12-05 Schintgen Jean Marie BIOPSY CLIP WITH RETRACTABLE NEEDLE
US4760848A (en) * 1986-11-03 1988-08-02 Hasson Harrith M Rotational surgical instrument
DE3736150A1 (en) * 1987-10-26 1989-05-03 Wolf Gmbh Richard PLIERS, ESPECIALLY HOOK PUNCH
IT1211530B (en) * 1987-11-16 1989-11-03 Consiglio Nazionale Ricerche AREA OF THE POINT OF ORIGIN OF ARITCATERERE FOR ENDOCARDIC BIOPSY AND MY VENTRICULARS THAT CAN BE USED ALSO FOR THE INDIVIDUAL
US4887612A (en) * 1988-04-27 1989-12-19 Esco Precision, Inc. Endoscopic biopsy forceps

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4662371A (en) * 1983-01-26 1987-05-05 Whipple Terry L Surgical instrument

Cited By (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7909850B2 (en) 1999-10-25 2011-03-22 Boston Scientific Scimed, Inc. Forceps for medical use
US20060129185A1 (en) * 1999-10-25 2006-06-15 Boston Scientific Scimed, Inc. Forceps for medical use
US7118586B1 (en) 1999-10-25 2006-10-10 Boston Scientific Scimed, Inc. Forceps for medical use
US6666876B2 (en) * 2000-02-24 2003-12-23 Hitachi, Ltd. Forceps and manipulator with using thereof
US20040260337A1 (en) * 2003-06-18 2004-12-23 Scimed Life Systems, Inc. Endoscopic instruments and methods of manufacture
US9681857B2 (en) 2003-06-18 2017-06-20 Boston Scientific Scimed, Inc. Endoscopic instruments and methods of manufacture
US8469993B2 (en) 2003-06-18 2013-06-25 Boston Scientific Scimed, Inc. Endoscopic instruments
US8460205B2 (en) 2003-09-10 2013-06-11 Boston Scientific Scimed, Inc. Forceps and collection assembly with accompanying mechanisms and related methods of use
US8083686B2 (en) 2003-09-10 2011-12-27 Boston Scientific Scimed, Inc. Forceps and collection assembly with accompanying mechanisms and related methods of use
US20050113867A1 (en) * 2003-11-25 2005-05-26 Scimed Life Systems, Inc. Forceps and collection assembly and related methods of use and manufacture
US7942896B2 (en) 2003-11-25 2011-05-17 Scimed Life Systems, Inc. Forceps and collection assembly and related methods of use and manufacture
US20110087268A1 (en) * 2005-04-29 2011-04-14 Bovie Medical Corporation Forceps for performing endoscopic or arthroscopic surgery
US7871423B2 (en) 2005-04-29 2011-01-18 Bovie Medical Corporation Forceps for performing endoscopic or arthroscopic surgery
US7762960B2 (en) 2005-05-13 2010-07-27 Boston Scientific Scimed, Inc. Biopsy forceps assemblies
US8317726B2 (en) 2005-05-13 2012-11-27 Boston Scientific Scimed, Inc. Biopsy forceps assemblies
US8672859B2 (en) 2005-05-13 2014-03-18 Boston Scientific Scimed, Inc. Biopsy forceps assemblies
US9023069B2 (en) 2009-05-18 2015-05-05 Covidien Lp Attachable clamp for use with surgical instruments
US10548594B2 (en) 2009-05-18 2020-02-04 Covidien Lp Attachable clamp for use with surgical instruments
US20100292716A1 (en) * 2009-05-18 2010-11-18 Dino Kasvikis Attachable clamp for use with surgical instruments

Also Published As

Publication number Publication date
US5152780A (en) 1992-10-06

Similar Documents

Publication Publication Date Title
USRE36666E (en) Micro-instrument
US5219357A (en) Micro-instrument
US7105005B2 (en) Arteriotomy scissors for minimally invasive surgical procedures
US5383471A (en) Surgical biopsy instrument
US5569298A (en) Resposable scissors
US6280459B1 (en) Back biting surgical instrument
US5281220A (en) Endoscopic instrument
US5509922A (en) Endoscopic surgical instrument
JP3676385B2 (en) Surgical instrument for endoscopy
US5478347A (en) Endoscopic surgical instrument having curved blades
US5486189A (en) Endoscopic surgical instrument
US5626609A (en) Endoscopic surgical instrument
US5282826A (en) Dissector for endoscopic and laparoscopic use
US7229456B2 (en) Medical instrument for dissecting tissue
CA2103507C (en) Locking mechanism for endoscopic or laparoscopic surgical instruments
EP2889011B1 (en) Overmolded grasper jaw
EP0589454A2 (en) Endoscopic surgical instrument
US6599309B1 (en) Pin-less surgical instrument
EP0584787A1 (en) Endoscopic surgical instrument
JPH06285078A (en) Forceps
EP1006899A1 (en) Dual pin and groove pivot for micro-instrument
US9101367B2 (en) Medical instrument for dissecting tissue
US20060047304A1 (en) Medical forceps
JP4707932B2 (en) Surgical cutting instrument
US5755723A (en) Retrograde surgical instrument

Legal Events

Date Code Title Description
FPAY Fee payment

Year of fee payment: 12

AS Assignment

Owner name: WACHOVIA BANK, NATIONAL ASSOCIATION, NORTH CAROLIN

Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:TNCO, INC.;REEL/FRAME:020442/0596

Effective date: 20080125

AS Assignment

Owner name: TNCO, INC., MASSACHUSETTS

Free format text: RELEASE OF SECURITY INTEREST RECORDED AT REEL/FRAME 20442/596;ASSIGNOR:WELLS FARGO BANK, NATIONAL ASSOCIATION (AS SUCCESSOR BY MERGER TO WACHOVIA BANK, NATIONAL ASSOCIATION);REEL/FRAME:025627/0633

Effective date: 20101227

AS Assignment

Owner name: SYMMETRY MEDICAL USA, INC., INDIANA

Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:SYMMETRY MEDICAL NEW BEDFORD, INC.;REEL/FRAME:026259/0635

Effective date: 20110510

AS Assignment

Owner name: SPECIALTY SURGICAL INSTRUMENTATION INC., TENNESSEE

Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:SYMMETRY MEDICAL USA, INC.;REEL/FRAME:034440/0973

Effective date: 20141208

AS Assignment

Owner name: GENERAL ELECTRIC CAPITAL CORPORATION, AS ADMINISTR

Free format text: SECURITY INTEREST;ASSIGNORS:SYMMETRY SURGICAL INC.;SPECIALTY SURGICAL INSTRUMENTATION, INC.;OLSEN MEDICAL, LLC;AND OTHERS;REEL/FRAME:034485/0011

Effective date: 20141205

AS Assignment

Owner name: HEALTHCARE FINANCIAL SOLUTIONS, LLC, AS SUCCESSOR

Free format text: SECURITY INTEREST;ASSIGNOR:GENERAL ELECTRIC CAPITAL CORPORATION, AS RETIRING AGENT;REEL/FRAME:037150/0492

Effective date: 20151117

AS Assignment

Owner name: SYMMETRY SURGICAL INTERNATIONAL, INC., TENNESSEE

Free format text: RELEASE BY SECURED PARTY;ASSIGNOR:CAPITAL ONE, NATIONAL ASSOCIATION;REEL/FRAME:061770/0764

Effective date: 20221025

Owner name: SYMMETRY MEDICAL SSI REAL ESTATE, LLC, TENNESSEE

Free format text: RELEASE BY SECURED PARTY;ASSIGNOR:CAPITAL ONE, NATIONAL ASSOCIATION;REEL/FRAME:061770/0764

Effective date: 20221025

Owner name: SPECIALTY SURGICAL INSTRUMENTATION, INC., TENNESSEE

Free format text: RELEASE BY SECURED PARTY;ASSIGNOR:CAPITAL ONE, NATIONAL ASSOCIATION;REEL/FRAME:061770/0764

Effective date: 20221025

Owner name: SYMMETRY SURGICAL INC., TENNESSEE

Free format text: RELEASE BY SECURED PARTY;ASSIGNOR:CAPITAL ONE, NATIONAL ASSOCIATION;REEL/FRAME:061770/0764

Effective date: 20221025