IP Library Granted Patent US 12690885
Granted Patent B2
US 12690885 · App. 18/877,005 · Granted Jul 28, 2026

Method for guiding flexible electrode and system for implanting flexible electrode

Inventors: Zhengtuo Zhao (Shanghai, CN); Xue Li (Shanghai, CN); Yu Bao (Shanghai, CN)
Assignee: SHANGHAI STAIRMED TECHNOLOGY CO., LTD.
A61B17/3403
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Quick Facts
Patent No.
US 12690885
App. No.
18/877,005
Granted
Jul 28, 2026
Kind
B2
Abstract

The present disclosure relates to a method for guiding a flexible electrode, comprising: engaging a guide device with a first engagement part of the flexible electrode, and enabling a first section of the flexible electrode adjacent to the first engagement part to be located near the guide device; spraying a liquid to the flexible electrode, such that at least the first section of the flexible electrode is attached to a first surface of the guide device; and using the guide device to guide the flexible electrode. The present disclosure further relates to a system for implanting a flexible electrode.

Claims (56)

1 . A method for guiding a flexible electrode, comprising:

engaging a guide device with a first engagement part of the flexible electrode, and enabling a first section of the flexible electrode adjacent to the first engagement part to be located near the guide device;

spraying a liquid to the flexible electrode, such that at least the first section of the flexible electrode is attached to a first surface of the guide device; and

guiding the flexible electrode with the guide device.

2 . The method according to claim 1 , wherein the liquid is sprayed in an atomized state, or

wherein the liquid comprises pure water.

3 . The method according to claim 1 , wherein the first section of the flexible electrode comes near to the guide device under the action of the spraying force and is attached to the guide device under the action of the surface tension of the liquid, or

wherein spraying a liquid to the flexible electrode comprises: spraying a liquid toward the first section of the flexible electrode and the first surface of the guide device, such that the spraying force has a direction generally from the first section of the flexible electrode to the first surface of the guide device, or

wherein the first section of the flexible electrode has a proximal end adjacent to the first engagement part and a distal end away from the first engagement part, and the first surface of the guide device has a proximal section adjacent to the first engagement part and a distal section away from the first engagement part, wherein spraying a liquid to the flexible electrode comprises: spraying a liquid toward the first section of the flexible electrode and the first surface of the guide device, such that the spraying force has a direction generally from the proximal end of the first section of the flexible electrode to the distal section of the first surface of the guide device.

4 . The method according to claim 1 , wherein the first surface of the guide device is configured as a smooth surface, or

wherein the guide device is configured to have a needle-shaped portion.

5 . The method according to claim 1 , wherein the first engagement part is located at a first end of the flexible electrode, or

wherein at least the first section of the flexible electrode is configured to be ribbon-shaped or filament-shaped, or

wherein the first engagement part is configured to have a ring-shaped portion to enable the guide device to pass through the ring and engage with the first engagement part.

6 . A method for guiding a flexible electrode, comprising:

applying a pulling force to a first end of the flexible electrode with a guide device to at least partially separate the flexible electrode from a flexible electrode fixing device;

spraying a liquid to the flexible electrode, such that at least a first section of the flexible electrode comes near to the guide device and is attached to the guide device; and

guiding the flexible electrode with the guide device.

7 . The method according to claim 6 , wherein the first section of the flexible electrode is a portion of the flexible electrode adjacent to the first end, or

wherein the guide device is configured to at least partially have a smooth surface to be attached by the flexible electrode, or

wherein at least the first section of the flexible electrode is configured to be ribbon-shaped or filament-shaped, or

wherein the guide device is configured to have a needle-shaped portion, or

wherein the first end is configured to have a ring-shaped portion to enable the guide device to pass through the ring and apply a pulling force to the first end of the flexible electrode.

8 . The method according to claim 6 , wherein the liquid is sprayed in an atomized state or

wherein the liquid comprises pure water.

9 . The method according to claim 6 , wherein the first section of the flexible electrode comes near to the guide device under the action of the spraying force and is attached to the guide device under the action of the surface tension of the liquid, or

wherein spraying a liquid to the flexible electrode comprises: spraying a liquid toward the first section of the flexible electrode and the guide device, such that the spraying force has a direction generally from the first section of the flexible electrode to the guide device, or

wherein the first section of the flexible electrode has a proximal end adjacent to the first end of the flexible electrode and a distal end away from the first end of the flexible electrode, and the guide device has a proximal section adjacent to the first end of the flexible electrode and a distal section away from the first end of the flexible electrode, wherein spraying a liquid to the flexible electrode comprises: spraying a liquid toward the first section of the flexible electrode and the guide device, such that the spraying force has a direction generally from the proximal end of the first section of the flexible electrode to the distal section of the guide device.

10 . A method for guiding a flexible electrode, which comprises a first end configured to be adapted for engagement with a guide device and a first section connected to the first end, wherein the first section has a proximal end adjacent to the first end and a distal end away from the first end,

wherein the method comprises:

engaging the guide device with the first end and causing the first section to be suspended from a fixing device via the distal end of the first section;

spraying a liquid to the flexible electrode in a direction generally from the first section to the guide device, such that at least the first section of the flexible electrode is attached to the guide device; and

guiding the flexible electrode with the guide device.

11 . The method according to claim 10 , wherein the liquid is sprayed in an atomized state, or

wherein the liquid comprises pure water.

12 . The method according to claim 10 , wherein the first section comes near to the guide device under the action of the spraying force and is attached to the guide device under the action of the surface tension of the liquid, or

wherein the guide device has a proximal section adjacent to a first end of the flexible electrode and a distal section away from the first end of the flexible electrode, wherein spraying a liquid to the flexible electrode in a direction generally from the first section to the guide device comprises: spraying a liquid to the flexible electrode in a direction generally from the proximal end of the first section to the distal section of the guide device.

13 . The method according to claim 10 , wherein the guide device is configured to at least partially have a smooth surface to be attached by the flexible electrode, or

wherein the flexible electrode is configured to be ribbon-shaped or filament-shaped, or

wherein the guide device is configured to have a needle-shaped portion, or

wherein the first end is configured to have a ring-shaped portion to enable the guide device to pass through the ring and engage with the first end.

14 . A system for implanting a flexible electrode, comprising:

a flexible electrode fixing device located on one side of an implantation target, wherein the fixing device is configured to fix the flexible electrode to be implanted;

a driving device, which is so configured, that it can be positioned generally on an extension line from the implantation target to the fixing device and to drive a guide device for guiding the flexible electrode to move generally toward the target, wherein the driving device is further configured to drive the guide device to move to pull the flexible electrode after the guide device engages with a first engagement part of the flexible electrode fixed on the fixing device, thereby at least partially separating the flexible electrode from the fixing device; and

a liquid spraying device positioned facing a first section in a portion of the flexible electrode, which is separated from the fixing device, and facing the guide device, wherein the liquid spraying device is configured to spray a liquid having a spraying force generally directed from the first section of the flexible electrode to the guide device, so that at least the first section of the flexible electrode is attached to the guide device under the action of a sprayed liquid,

wherein the driving device is further configured to continue driving the guide device to move after at least the first section of the flexible electrode is attached to the guide device, thereby implanting the first engagement part of the flexible electrode and at least a portion of the first section adjacent to the first engagement part into the target.

15 . The system according to claim 14 , wherein the first section of the flexible electrode has a proximal end adjacent to the first engagement part and a distal end away from the first engagement part, and the guide device has a proximal section adjacent to the first engagement part and a distal section away from the first engagement part, wherein the liquid spraying device is further configured to:

spray a liquid having a spraying force generally directed from the proximal end of the first section of the flexible electrode to the distal section of the guide device, so that at least the first section of the flexible electrode is attached to the guide device under the action of a sprayed liquid.

16 . The system according to claim 14 , wherein the liquid spraying device is an atomized spray device, or

wherein the liquid spraying device is further configured to spray a liquid comprising pure water or a solution suitable for the target, or

wherein the guide device is configured to at least partially have a smooth surface to be attached by the flexible electrode, or

wherein the guide device is so configured, that it can pass through the first engagement part, which is configured to be substantially ring-shaped, so as to engage with the first engagement part.

17 . The system according to claim 14 , wherein the guide device is so configured, that it can pass through the first engagement part, which is configured to be substantially ring-shaped, so as to engage with the first engagement part, wherein the guide device is configured to have a needle-shaped portion, which comprises a first portion having an outer diameter smaller than the inner diameter of the ring and a second portion having an outer diameter larger than the inner diameter of the ring, so that the first portion passes through the ring and the second portion cannot pass through the ring, thereby causing the guide device to engage with the first engagement part.

18 . The system according to claim 17 , wherein the driving device is further configured to continue driving the guide device to move after at least the first section of the flexible electrode is attached to the guide device, until the first portion and the second portion of the guide device at least partially enter the target, thereby implanting the first engagement part of the flexible electrode and at least a portion of the first section adjacent to the first engagement part into the target.

19 . The system according to claim 14 , wherein the fixing device comprises a support plate configured to detachably fix an electrode substrate on a surface thereof adjacent to the target, wherein the flexible electrode is adhered to the electrode substrate and thereby fixed on the support plate.

20 . The system according to claim 19 , wherein the electrode substrate has a hardness higher than the hardness of the flexible electrode, or wherein a plurality of flexible electrodes to be implanted are adhered side by side to the electrode substrate.