Modular forceps
View Patent ↗A forceps system including a handle. The handle includes an immovable proximal handgrip and a lever resiliently pivotably coupled to the immovable proximal handgrip, such that exertion of a manual gripping force on the lever pivots the lever in a proximal direction toward the handgrip. A shaft and jaw assembly is releasably couplable to the handle, the shaft and jaw assembly including a pair of pivotable jaw members normally biased to an open configuration, the open configuration of the jaws corresponding to a released configuration of the handle, the jaws being moved to a closed configuration upon the exertion of the manual gripping force on the lever, pivoting the lever toward the handgrip.
1 . A forceps system, comprising:
a handle, with proximal and distal handgrip sections pivotably coupled to one another at a pivot axis,
a coupler structure disposed at an end of the proximal handgrip section,
a biasing element mechanically disposed between the proximal and distal handgrip sections, such that proximal and distal handgrip sections are biased pivotably away from one another,
the proximal handgrip section having a first end comprising a gripping portion and a second end opposite the first end comprising a coupling structure,
the distal handgrip section having a first end comprising a gripping portion and a second end opposite the first end comprising a coupling structure, the pivot axis connecting the proximal and distal handgrip sections between their respective gripping portions and coupling structures, such that pivoting movement of the gripping portions of the proximal and distal handgrip sections toward one another against the biasing element corresponds to pivoting movement of the coupling structures of the proximal and distal handgrip sections away from one another;
an extension, having a longitudinal axis, a first end releasably couplable to the coupling structures of the proximal and distal handgrip portions, and a second end having a connector disposed thereon; and
an end effector releasably couplable to the second end of the extension;
the end effector including a first jaw and a second jaw, wherein at least one of the first and second jaws is pivotable about a pivot axis extending substantially perpendicular to the extension longitudinal axis,
the extension comprising a core surrounded by a sheath, the core and sheath being axially relatively movable, the core releasably couplable to the proximal handgrip portion and the sheath releasably couplable to the distal handgrip portion;
the sheath being coupled to the distal handgrip section, so that the sheath is pushed in a distal direction, when the distal handgrip section is moved in a proximal direction toward the proximal handgrip section, the sheath directly contacting the first and second jaws to move them into a closed configuration,
the core, in its operable configuration when coupled to the proximal handgrip section, being axially fixed and immovable relative to the proximal handgrip section.
2 . The forceps system of claim 1 , further comprising
the handle, extension, and end effector in an operably coupled state, the biasing element prompting the first and second jaws toward an open configuration, the open configuration of the jaws corresponding to a released configuration of the handle, a closed configuration of the jaws corresponding to a gripped configuration of the proximal and distal handgrip portions, wherein the proximal and distal handgrip portions pivoted toward one another against the biasing element.
3 . The forceps system according to claim 1 , further comprising the extension and end effector fabricated from materials which enable the extension and end effector to be fabricated in a sterile state, but which enable the extension and end effector to be at least one of discarded or recycled after use.
4 . The forceps system according to claim 1 , further comprising at least one of the extension and end effector being fabricated from materials which are relatively stiff yet bendable with a manually-applied force, and shape-retaining once bent or formed into a desired configuration.
5 . The forceps system according to claim 1 , wherein the coupling structure of the proximal handgrip portion comprises a hollow tubular region having an externally-threaded surface; and
the core releasably couplable to the proximal handgrip portion via an internally-threaded collar that is rotatably coupled to, but axially-fixed in relation to, the first end of the extension.
6 . The forceps system according to claim 5 , wherein the coupling structure of the distal handgrip portion comprises a fork structure thereat, receivable within the hollow tubular region of the proximal handgrip portion, through a slot in a sidewall thereto, for arcuate reciprocating movement therein, in response to gripping and release of the handle by an operator thereof;
a pin is coupled to the sheath of the extension, for axial movement therewith;
a slider is axially movable within the hollow tubular region and pivotably coupled to the fork structure;
the pin having a key structure at a proximal end thereof, receivable within a corresponding key-shaped recess in a distal end of the slider, through a similar key-shaped slot in a sidewall of the hollow tubular region.
7 . The forceps system according to claim 6 , wherein the key-shaped slot is located in the externally-threaded surface of the hollow tubular region.
8 . The forceps system according to claim 5 , wherein the core, in turn, comprises a central tension member slidably coupled relative to a surrounding tube.
9 . The forceps system according to claim 8 , wherein the central tension member comprises one of a semi-rigid shaft, a wire, a braided cable.
10 . The forceps system according to claim 9 , wherein a proximal end of the tension member is coupled to the internally-threaded collar, precluding relative axial movement therebetween.
11 . The forceps system according to claim 1 , wherein the end effector is releasably coupled to the extension.
12 . The forceps system according to claim 1 , wherein the extension is configured to be bent from an original straight configuration into a desired shape and then restored to its original configuration, through at least two cycles of bending and restoration, to facilitate multiple uses of the forceps system in multiple medical procedures.
13 . A forceps system, comprising:
a handle, with proximal and distal handgrip sections pivotably coupled to one another at a pivot axis,
a coupler structure disposed at an end of the proximal handgrip section,
a biasing element mechanically disposed between the proximal and distal handgrip sections, such that proximal and distal handgrip sections are biased pivotably away from one another,
the proximal handgrip section having a first end comprising a gripping portion and a second end opposite the first end comprising a coupling structure,
the distal handgrip section having a first end comprising a gripping portion and a second end opposite the first end comprising a coupling structure, the pivot axis connecting the proximal and distal handgrip sections between their respective gripping portions and coupling structures, such that pivoting movement of the gripping portions of the proximal and distal handgrip sections toward one another against the biasing element corresponds to pivoting movement of the coupling structures of the proximal and distal handgrip sections away from one another;
an extension, having a longitudinal axis, a first end releasably couplable to the coupling structures of the proximal and distal handgrip portions, and a second end having a connector disposed thereon; and
an end effector,
permanently affixed to the extension;
the end effector including a first jaw and a second jaw, wherein at least one of the first and second jaws is pivotable about a pivot axis extending substantially perpendicular to the extension longitudinal axis,
the extension comprising a core surrounded by a sheath, the core and sheath being axially relatively movable, the core releasably couplable to the proximal handgrip portion and the sheath releasably couplable to the distal handgrip portion;
the sheath being coupled to the distal handgrip section, so that the sheath is pushed in a distal direction, when the distal handgrip section is moved in a proximal direction toward the proximal handgrip section, the sheath directly contacting the first and second jaws to move them into a closed configuration,
the core, in its operable configuration when coupled to the proximal handgrip section, being axially fixed and immovable relative to the proximal handgrip section.