Thermally activated pessary
A system, method, and apparatus to insert and remove a thermally activated vaginal pessary, by employing a nitinol core material that is integrated into the construction of the thermally activated vaginal pessary and configured to increase in radial size upon contact with body temperature by undergoing a configurational phase change in the underlying nitinol core material.
1 . A thermally actuated vaginal pessary comprising:
an applicator device that comprises a cooling element and a clamp having a pair of arms;
an outer surface of the vaginal pessary comprised of a biocompatible material and configured in a hemi-cylindrical shape such that the pair of arms are configured to contact the vaginal pessary to cool and radially compress the vaginal pessary for placement within, or removal from, a vagina of a body wherein the outer surface of the vaginal pessary extends along a long axis to contact surfaces of the vaginal wall to treat prolapse of surrounding tissue; and
an inner core of the vaginal pessary having a plurality of aligned ribs comprised of a shape-memory alloy wherein the cooled vaginal pessary is configured to increase in radial size in response to a warmer body temperature.
2 . The vaginal pessary of claim 1 , wherein the hemi-cylindrical shape is configured to expand in response to the body temperature upon placement along the vaginal wall.
3 . The vaginal pessary of claim 1 , wherein the plurality of aligned ribs of the inner core of the vaginal pessary comprises a set of hemi-cylindrical nitinol ribs that radially expand at the body temperature to treat at least one of the prolapse and stress incontinence.
4 . The vaginal pessary of claim 1 , wherein the inner core of the vaginal pessary comprises a plurality of nitinol elements extending along the long axis.
5 . The vaginal pessary of claim 1 , wherein the cooling element of the applicator device comprises a thermoelectric cooler.
6 . The vaginal pessary of claim 1 , wherein the biocompatible material comprises silicone.
7 . The vaginal pessary of claim 1 , wherein the inner core of the vaginal pessary comprises a set of nitinol core elements.
8 . The vaginal pessary of claim 7 , wherein the set of nitinol core elements are treated at a temperature of 805° C. at a treatment duration of 5 minutes.
9 . The vaginal pessary of claim 7 , wherein the set of nitinol core elements are treated at a temperature of 550° C. at a treatment duration of 5 minutes.
10 . The vaginal pessary of claim 7 , wherein the set of nitinol core elements are treated at a temperature of 400° C. at a treatment duration of 5 minutes.
11 . The vaginal pessary of claim 7 , wherein the set of nitinol core elements are treated at a temperature of 805° C. at a treatment duration of 30 minutes.
12 . The vaginal pessary of claim 1 further comprising a notification element to communicate a threshold temperature to a user.
13 . The vaginal pessary of claim 1 further comprising a temperature sensor.
14 . The vaginal pessary of claim 1 wherein the pair of arms has a first arm and a second arm to contact the inner core within the outer surface.
15 . The vaginal pessary of claim 1 wherein the vaginal pessary has a first state and a second state and a transition temperature to change states.
16 . A thermally actuated vaginal pessary comprising:
a vaginal pessary having an outer surface of a biocompatible material with a hemi-cylindrical shape that is configured to radially compress for manual placement in, or removal from, a vagina of a body; and
wherein the vaginal pessary has an inner core supporting the biocompatible material, the inner core having the hemi-cylindrical shape with a plurality of aligned and spatially separated ribs that comprise a shape-memory alloy wherein the ribs are configured to contract in a radial direction at a cooling temperature and expand in a radial direction at a warmer body temperature to treat prolapse of surrounding tissue.
17 . The vaginal pessary of claim 16 , further comprising a cooling element that cools the shape-memory alloy to a temperature below a body temperature.
18 . The vaginal pessary of claim 17 , wherein the cooling element comprises a plurality of arms configured to grasp the outer surface and manually compress the vaginal pessary for placement in the body.
19 . The vaginal pessary of claim 16 , wherein the shape memory material further comprises a nitinol material having a threshold temperature for transition between a first state and a second state.
20 . The vaginal pessary of claim 16 , wherein the outer surface is configured to press upon opposing surfaces of the vaginal wall to treat at least one of the prolapse and stress incontinence.