GUIDEWIRE WITH TACTILE FEEL
In various examples, a guidewire with tactile feel is described. The guidewire includes an elongate core wire including a distal end, a proximal end, and a longitudinal axis extending along a length of the core wire from the distal end to the proximal end. A grip portion is disposed on the core wire. The grip portion is configured to provide tactile feel to a user of the guidewire. In some examples, a method for making the guidewire is also described.
1 . A guidewire comprising:
an elongate core wire including a distal end, a proximal end, and a longitudinal axis extending along a length of the core wire from the distal end to the proximal end; and
a grip portion disposed on the core wire, the grip portion includes a polymer tube applied to the core wire, the polymer tube including a sidewall extending between first and second ends of the polymer tube and at least one cutout at least partially through the sidewall of the polymer tube, the grip portion configured to provide tactile feel to a user of the guidewire.
2 . The guidewire of claim 1 , wherein the core wire includes a distal portion extending proximally from the distal end and a proximal portion extending distally from the proximal end, the distal portion including a distal profile and the proximal portion including a proximal profile, the distal profile being smaller than the proximal profile.
3 . The guidewire of claim 2 , wherein the grip portion extends at least partially along the proximal portion of the core wire.
4 . The guidewire of claim 1 , wherein the at least one cutout extends entirely through the sidewall of the polymer tube.
5 . The guidewire of claim 1 , wherein the at least one cutout includes a plurality of cutouts disposed within the sidewall of the polymer tube to form a cut pattern of the grip portion.
6 . The guidewire of claim 1 , wherein the at least one cutout includes at least one laser cut cutout through the sidewall of the polymer tube.
7 . The guidewire of claim 1 , wherein the polymer tube includes a heat shrinkable polymer tube.
8 . A method of making a guidewire with tactile feel, the method comprising:
forming an elongate core wire, the core wire including a distal end, a proximal end, and a longitudinal axis extending along a length of the core wire from the distal end to the proximal end; and
forming a grip portion on the core wire, the grip portion configured to provide tactile feel to a user of the guidewire, forming the grip portion including:
cutting at least one cutout at least partially through a sidewall of a polymer tube, the polymer tube including the sidewall extending between first and second ends of the polymer tube; and
applying the polymer tube to the core wire, wherein the at least one cutout forms a cut pattern of the grip portion.
9 . The method of claim 8 , wherein forming the grip portion includes forming the grip portion on the core wire proximate the proximal end of the core wire.
10 . (canceled)
11 . The method of claim 8 , wherein applying the polymer tube includes heat shrinking the polymer tube onto the core wire.
12 . The method of claim 8 , wherein cutting the at least one cutout at least partially through the sidewall of the polymer tube includes cutting a plurality of cutouts at least partially through the sidewall of the polymer tube.
13 . The method of claim 12 , wherein cutting the plurality of cutouts at least partially through the sidewall of the polymer tube includes forming at least one bridging section between the cutouts, the bridging section forming a continuous ring around the polymer tube to help the polymer tube maintain its shape.
14 . The method of claim 8 , wherein cutting the at least one cutout at least partially through the sidewall of the polymer tube includes cutting the at least one cutout completely through the sidewall of the polymer tube.
15 . The method of claim 8 , wherein cutting the at least one cutout at least partially through the sidewall of the polymer tube includes laser cutting the at least one cutout at least partially through the sidewall of the polymer tube.
16 . The method of claim 8 , wherein cutting the at least one cutout at least partially through the sidewall of the polymer tube is done prior to applying the polymer tube to the core wire.
17 . The method of claim 8 , wherein cutting the at least one cutout at least partially through the sidewall of the polymer tube is done after applying the polymer tube to the core wire.
18 . A guidewire comprising:
an elongate core wire including a distal end, a proximal end, and a longitudinal axis extending along a length of the core wire from the distal end to the proximal end, the core wire including a distal portion extending proximally from the distal end and a proximal portion extending distally from the proximal end, the distal portion including a distal profile and the proximal portion including a proximal profile, the distal profile being smaller than the proximal profile; and
a grip portion disposed on the core wire, the grip portion includes a polymer tube applied to the core wire, the polymer tube including a sidewall extending between first and second ends of the polymer tube and a plurality of cutouts at least partially through the sidewall of the polymer tube, the plurality of cutouts disposed within the sidewall of the polymer tube forming a cut pattern of the grip portion, the grip portion configured to provide tactile feel to a user of the guidewire.
19 . The guidewire of claim 18 , wherein the grip portion extends at least partially along the proximal portion of the core wire.
20 . The guidewire of claim 18 , wherein each of the plurality of cutouts extends entirely through the sidewall of the polymer tube.
21 . The guidewire of claim 18 , wherein the polymer tube includes a heat shrinkable polymer tube.