IP Library Granted Patent US 8,709,036
Granted Patent B2
US 8,709,036 · App. 12/779,233 · Granted Apr 29, 2014

Tension transducing forceps

Inventors: Joseph Ezhil Rajan Picha Muthu (Pittsburgh, PA); Dinakar Golla (Pittsburgh, PA); David Alan Vorp (Pittsburgh, PA)
Assignee: University of Pittsburgh—Of the Commonwealth System of Higher Education
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Quick Facts
Patent No.
US 8,709,036
App. No.
12/779,233
Granted
Apr 29, 2014
Kind
B2
Abstract

A forceps device is provided for performing a surgical procedure. The device comprises a closeable jaw comprising jaw members having one or more force sensors deployed in a manner to measure force applied to the jaws of the device.

Claims (25)

1. A device, comprising;

a jaw comprising jaw members pivotally attached to each other at a pivot axis, the jaw members comprising a gripping surface distal to the pivot axis and one or both jaw members comprising an electronic force sensor configured to measure a force applied to the gripping surface;

levers mechanically linked to the jaws, each lever comprising a shaft integral with each jaw member and extending from the pivot axis, wherein the shafts extend from the pivot axis opposite the integral jaw member to which it is attached, and the proximal portions of each shaft comprising a handle; and

a conductor attached to the electronic force sensor.

2. The device of claim 1 in which the handle comprises finger loops.

3. The device of claim 1 , in which the electronic force sensor is a piezo-resistive force sensor.

4. The device of claim 1 attached by the conductors to one or more electronic or computer components for amplifying, monitoring, displaying, transmitting, converting, storing, and/or analyzing an electrical signal produced by the electronic force sensor.

5. The device of claim 4 in which the conductors are connected to an amplifier.

6. A device, comprising;

a jaw comprising jaw members pivotally attached to each other at a pivot axis, the jaw members comprising a gripping surface distal to the pivot axis and one or both jaw members comprising an electronic force sensor configured to measure a force applied to the gripping surface;

levers mechanically linked to the jaws, each lever comprising a shaft integral with each jaw member and extending from the pivot axis; and

a conductor attached to the electronic force sensor, wherein either:

a) one or both of the jaw members comprises a first portion attached to the other jaw member at the pivot axis, the first portion having an inward-facing and an outward-facing surface, a distal end, a force sensor on the outward facing surface of the first portion, and an arm having a proximal and distal portion and pivotally attached to the distal end of the first portion at a second pivot axis between the proximal and distal portions of the arm, the distal portion of the arm extending beyond the distal end of the first portion and comprising the gripping surface, the proximal portion of the arm extending over the force sensor and which engages the electronic force sensor when force is applied to an inward-facing side of the gripping surface causing the arm to pivot about the second pivot axis; or

b) one or both of the jaw members comprises a first portion attached to the other jaw member at the pivot axis, the first portion having an inward-facing and an outward-facing surface, a distal end, a force sensor on the inward facing surface of the first portion, and an arm having a proximal and distal portion and pivotally attached at a second pivot axis between the proximal and distal portions of the arm, the distal portion of the arm extending beyond the distal end of the first portion and comprising the gripping surface, the proximal portion of the arm extending over the force sensor and which engages the electronic force sensor when force is applied to an outward-facing side of the gripping surface causing the arm to pivot about the second pivot axis.

7. The device of claim 6 , in which the electronic force sensor is a piezo-resistive force sensor.

8. The device of claim 6 attached by the conductors to one or more electronic or computer components for amplifying, monitoring, displaying, transmitting, converting, storing, and/or analyzing an electrical signal produced by the electronic force sensor.

9. The device of claim 8 in which the conductors are connected to an amplifier.

10. The device of claim 6 , each lever comprising a shaft integral with each jaw members and extending from the pivot axis.

11. The device of claim 10 , in which the shafts extend from the pivot axis opposite the integral jaw member to which it is attached, and the proximal portions of each shaft comprising a handle.

12. The device of claim 11 , in which the handle comprises finger loops.

13. The device of claim 6 , wherein one or both of the jaw members comprises a first portion attached to the other jaw member at the pivot axis, the first portion having an inward-facing and an outward-facing surface, a distal end, a force sensor on the outward facing surface of the first portion, and an arm having a proximal and distal portion and pivotally attached to the distal end of the first portion at a second pivot axis between the proximal and distal portions of the arm, the distal portion of the arm extending beyond the distal end of the first portion and comprising the gripping surface, the proximal portion of the arm extending over the force sensor and which engages the electronic force sensor when force is applied to an inward-facing side of the gripping surface causing the arm to pivot about the second pivot axis.

14. The device of claim 6 , wherein one or both of the jaw members comprises a first portion attached to the other jaw member at the pivot axis, the first portion having an inward-facing and an outward-facing surface, a distal end, a force sensor on the inward facing surface of the first portion, and an arm having a proximal and distal portion and pivotally attached at a second pivot axis between the proximal and distal portions of the arm, the distal portion of the arm extending beyond the distal end of the first portion and comprising the gripping surface, the proximal portion of the arm extending over the force sensor and which engages the electronic force sensor when force is applied to an outward-facing side of the gripping surface causing the arm to pivot about the second pivot axis.

15. The device of claim 6 in which the arms pivot in substantially the same plane as the distal end of the jaw members.

16. The device of claim 6 , in which a surface of the proximal portion of the arm facing the electronic force sensor comprises a protuberance aligned to engage the force sensor.

17. The device of claim 6 , in which one of the arms or the shafts comprise one or more stops for limiting movement of the arm about the pivot axis.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 11, 2011
From: GOLLA, DINAKAR; PICHA MUTHU, JOSEPH EZHIL RAJAN; VORP, DAVID A.
To: UNIVERSITY OF PITTSBURGH-OF THE COMMONWEALTH SYSTEM OF HIGHER EDUCATION
Reel/Frame 025793/0294 →
Continuity (2)
Provisional Application 61177742 · May 13, 2009
Related Publication 20110009899A1 · Jan 13, 2011