IP Library Granted Patent US 11,484,381
Granted Patent B2
US 11,484,381 · App. 16/140,487 · Granted Nov 1, 2022

Instrument alignment feedback system and method

Inventors: Shane S. Pak (Arcadia, CA); Karlton E. Spindle (Cedar Glen, CA)
Assignee: Ruthless, LLC
A61B90/06A61B90/08A61B2090/067A61B2090/0811
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Quick Facts
Patent No.
US 11,484,381
App. No.
16/140,487
Filed
Sep 24, 2018
Granted
Nov 1, 2022
Kind
B2
Art Unit
3773
USPC
606/246
Abstract

A system to measure and display the orientation of a handheld instrument is disclosed.

Claims (49)

1. A system for providing feedback regarding the angular orientation of a handheld instrument, comprising:

a measurement sensor assembly that includes an integrated circuit, that is configured to attach to the handheld instrument, that measures the angular orientation of the handheld instrument when attached thereto, and that provides information based on the measured angular orientation; and

an application that is configured to run on a controller in communication with the measurement sensor assembly to enable the controller to process the information and provide a visual display of the measured angular orientation.

2. The system of claim 1 wherein the measurement sensor assembly includes a unique electronic identifier for monitoring by the controller.

3. The system of claim 1 wherein the measurement sensor assembly includes a chip and an accelerometer, wherein the integrated circuit is configured on the chip, and the accelerometer is mounted on the chip.

4. The system of claim 1 wherein the measurement sensor assembly includes at least one gyroscope.

5. The system of claim 1 wherein the measured angular orientation is an orientation in three-dimensional space.

6. The system of claim 1 wherein the visual display of the measured angular orientation includes axial and sagittal angles of the handheld instrument.

7. An angular measurement sensor adapted to measure the angular orientation of a surgical instrument, the angular measurement sensor comprising:

a package that is configured to be attached to the surgical instrument when attached thereto, wherein the package contains:

an accelerometer that measures the angular orientation of the surgical instrument, and that outputs a signal based on the measured angular orientation;

a transmitter that transmits information regarding the angular orientation of the surgical instrument based on the signal or processing of the signal; and

a power supply comprising a battery, wherein the angular measurement sensor is operable only for a life of the battery;

wherein the angular measurement sensor includes a unique electronic identifier.

8. The angular measurement sensor of claim 7 , wherein the unique electronic identifier associates the angular measurement sensor with only the surgical instrument to which the package is attached.

9. The angular measurement sensor of claim 7 wherein the angular measurement sensor is operable for only one use and/or is disposable.

10. The angular measurement sensor of claim 7 wherein the transmitter transmits information regarding the axial angle and sagittal angle of the surgical instrument.

11. The angular measurement sensor of claim 7 wherein the package is small enough so that it partially fits within a profile of the surgical instrument when attached thereto.

12. The angular measurement sensor of claim 7 wherein the signal output by the accelerometer is also based on trajectory information.

13. The angular measurement sensor of claim 7 wherein the transmitter is a Bluetooth enabled transmitter.

14. A system to perform surgery including a handheld surgical instrument adapted to provide information regarding its angular orientation, the handheld surgical instrument comprising:

a handle;

an instrument attached to the handle; and

a measurement sensor that is attached to the handle, that measures the angular orientation of the handheld surgical instrument based on the amount of static acceleration of the handheld surgical instrument due to gravity, that includes a unique electronic identifier and that outputs a signal based on the measured angular orientation.

15. The system to perform surgery of claim 14 further including a controller in communication with the measurement sensor, wherein the controller monitors the measurement sensor by the unique electronic identifier, and wherein the controller receives the signal and provides a visual display of the angular orientation of the surgical instrument.

16. The surgical instrument of claim 15 wherein the visual display includes axial and sagittal angles of the handheld surgical instrument.

17. The system of claim 14 wherein the handle includes a flat section, a slot or an internal cavity, and the measurement sensor is securely attached thereto.

18. The system of claim 14 wherein the instrument comprises an awl, a probe or a screwdriver.

19. The system of claim 14 wherein the measurement sensor includes at least one gyroscope.

20. The system of claim 14 wherein the measurement sensor includes a battery and the measurement sensor is operable only for a life of the battery.

21. The surgical instrument of claim 14 wherein the measurement sensor comprises piezoelectric, piezoresistive or capacitive components that convert mechanical or physical motion into an electrical signal.

22. A method for displaying the angular orientation of aligning a handheld surgical instrument comprising:

a measurement sensor assembly that is attached to the handheld instrument, that includes an accelerometer which measures the angular orientation of the handheld instrument in three dimensions in relation to gravity, and that provides information regarding the axial and sagittal angles of the handheld instrument in relation to the patient's spine based on the measured angular orientation; and

a controller that receives the information from the measurement sensor assembly, and that correlates the information to provide a visual display of the axial and sagittal angles of the handheld instrument in relation to the patient's spine;

the method comprising:

using the measurement sensor assembly to measure the angular orientation of the handheld instrument;

providing the information to the controller;

using the controller to correlate the information; and

providing a visual display of the axial and sagittal angles of the handheld instrument in relation to the patient's spine.

23. The method of claim 22 further comprising correlating the information with previously taken spinal imaging data.

24. A system for displaying the angular orientation of a handheld instrument during spinal surgery, comprising:

a measurement sensor assembly that is attached to the handheld instrument, that includes an integrated circuit, that measures the angular orientation of the handheld instrument, and that provides information based on the measured angular orientation; and

a controller that receives the information from the measurement sensor assembly, that correlates the information with previously taken spinal imaging data, and that provides a visual display of the axial and sagittal angles of the handheld instrument relative to the spine based on the correlated information.

25. The system of claim 24 wherein the controller correlates the information with previously taken fluoroscopic spinal imaging data, and the displayed axial and sagittal angles of the handheld instrument are based on the correlated information.

26. A system for displaying the angular orientation of a handheld instrument, in relation to a patient's spine, comprising:

a measurement sensor assembly that is attached to the handheld instrument, that includes an accelerometer which measures the angular orientation of the handheld instrument in three dimensions in relation to gravity, and that provides information regarding the axial and sagittal angles of the handheld instrument in relation to the patient's spine based on the measured angular orientation; and

a controller that receives the information from the measurement sensor assembly, and that correlates the information to provide a visual display of the axial and sagittal angles of the handheld instrument in relation to the patient's spine.

27. The system of claim 26 , wherein a processor correlates the information with previously taken spinal imaging data.

28. The system of claim 27 , wherein the previously taken spinal imaging data is previously taken fluoroscopic spinal imaging data.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 2, 2019
From: PAK, SHANE S.; SPINDLE, KARLTON E.
To: RUTHLESS, LLC DBA RUTHLESS SPINE
Reel/Frame 049067/0155 →
Continuity (2)
Provisional Application 62763564 · Jun 21, 2018
Related Publication 20190388173A1 · Dec 26, 2019
Cited By (6)
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