IP Library Patent Application 16262465
Patent Application
App. No. 16/262,465

SOFT TISSUE BALANCING IN ROBOTIC KNEE SURGERY

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Quick Facts
Patent No.
US None
App. No.
16/262,465
Abstract

A system and method may be used to evaluate soft tissue. A knee arthroplasty soft tissue evaluation may use an adjustable spacer, such as varying sized physical spacers or an inflatable bladder, along with a sensor to measure force, pressure, gap distance, or the like during a range of motion test. A method may include maintaining an equal pressure or gap distance for a medial component and a lateral component of an adjustable spacer during a range of motion test. Information, including, for example a maximum or minimum gap distance or pressure may be determined during the range of motion test. The determined information may be output for display or used to update a surgical plan.

Claims (38)

1 . A surgical device for evaluating soft tissue during a surgical procedure comprising:

a pump to:

inflate a first adjustable component of an adjustable spacer to separate a femur and a tibia of a knee on a medial side of a patient;

inflate a second adjustable component of the adjustable spacer to separate the femur and the tibia of the knee on a lateral side of the patient, the second adjustable component independently adjustable to the first adjustable component; and

during a range of motion test, maintain an equal pressure in the first adjustable component and the second adjustable component by allowing a medial gap distance between the femur and the tibia caused by the first adjustable component or a lateral gap distance between the femur and the tibia the second adjustable component to change; and

a processor to:

determine a maximum gap distance during the range of motion test; and

output the maximum gap distance for display on a user interface.

2 . The surgical device of claim 1 , wherein the pump is further to decrease the equal pressure during a repeated range of motion test.

3 . The surgical device of claim 1 , wherein the processor is to use a preoperative plan to determine the equal pressure.

4 . The surgical device of claim 3 , wherein the processor is further to adjust the preoperative plan based on the maximum gap distance.

5 . The surgical device of claim 1 , wherein the range of motion test occurs after a tibial cut during a knee arthroplasty.

6 . The surgical device of claim 1 , wherein the processor is further to determine an implant based on a maximum medial gap distance and a maximum lateral gap distance, the implant having a first height for the medial side and a second height different from the first height for the lateral side.

7 . The surgical device of claim 1 , wherein to determine the maximum gap distance, the processor is to use optical tracking of the femur and the tibia.

8 . The surgical device of claim 1 , wherein the surgical device is a robotic surgical device, wherein the processor operates a robotic controller, wherein the pump is controlled by the processor, and wherein the robotic surgical device includes a display, the display configured to present the user interface including the maximum gap distance.

9 . A surgical device for evaluating soft tissue during a surgical procedure comprising:

a pump to:

inflate a first adjustable component of an adjustable spacer to separate a femur and a tibia of a knee on a medial side of a patient;

inflate a second adjustable component of the adjustable spacer to separate the femur and the tibia of the knee on a lateral side of the patient, the second adjustable component independently adjustable to the first adjustable component;

during a range of motion test, maintain an equal gap distance between a medial gap of the knee caused by the first adjustable component and a lateral gap of the knee caused by the second adjustable component by increasing or decreasing pressure in the first adjustable component or the second adjustable component;

a processor to:

determine a maximum pressure during the range of motion test; and

output the maximum pressure for display on a user interface.

10 . The surgical device of claim 9 , wherein is further to decrease the equal gap distance and perform the range of motion test again.

11 . The surgical device of claim 9 , wherein the processor is to use a preoperative plan used to determine the equal gap distance and adjust the preoperative plan based on the maximum pressure.

12 . The surgical device of claim 9 , wherein the range of motion test occurs after a tibial cut during a knee arthroplasty.

13 . The surgical device of claim 9 , wherein the processor is further to determine an implant based on a maximum medial pressure and a maximum lateral pressure, the implant having a first height for the medial side and a second height different from the first height for the lateral side.

14 . The surgical device of claim 9 , wherein to determine the maximum pressure, the processor is to use optical tracking of the femur and the tibia.

15 . The surgical device of claim 9 , wherein the surgical device is a robotic surgical device, wherein the processor operates a robotic controller, wherein the pump is controlled by the processor, and wherein the robotic surgical device includes a display, the display configured to present the user interface including the maximum gap distance.

16 . A method comprising:

inserting a trial between a femur and a tibia of a knee, the trial including a medial spacer of a first height and a lateral spacer of a second height differing from the first height;

using a pressure sensor device, measuring pressure on a medial side of the knee and a lateral side of the knee throughout a range of motion test with the trial in place;

determining a maximum pressure during the range of motion test; and

outputting the maximum pressure for display on a user interface.

17 . The method of claim 16 , further comprising decreasing the first height or the second height by replacing the medial spacer or the lateral spacer and performing the range of motion test again.

18 . The method of claim 16 , further comprising using a preoperative plan to determine the first height and the second height, and adjusting the preoperative plan based on the maximum pressure.

19 . The method of claim 16 , further comprising performing the range of motion test after a tibial cut during a knee arthroplasty.

20 . The method of claim 16 , further comprising determining an implant based on a maximum medial pressure and a maximum lateral pressure, the implant having a first height for the medial side and a second height different from the first height for the lateral side.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2023
From: ORTHOSOFT ULC
To: EXACTECH, INC.
Reel/Frame 062423/0502 →
CHANGE OF NAME Recorded Nov 18, 2019
From: ORTHOSOFT, INC.
To: ORTHOSOFT ULC
Reel/Frame 051041/0949 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2019
From: COUTURE, PIERRE
To: ORTHOSOFT, INC.
Reel/Frame 048788/0922 →