IP Library Granted Patent US 11,786,126
Granted Patent B2
US 11,786,126 · App. 17/993,773 · Granted Oct 17, 2023

Devices, systems and methods for using and monitoring medical devices

Inventors: William L Hunter (Vancouver, CA); Douglas R. Holberg (Wimberley, TX); Jeffrey M. Gross (Carlsbad, CA)
Assignee: Canary Medical Inc.
A61B5/0031A61B5/00A61B5/0024A61B5/01A61B5/026A61B5/029A61B5/02108A61B5/036A61B5/4851A61B5/686A61B5/6812A61B5/6853A61B5/6862A61B5/7275A61B17/74A61C8/00A61F2/0059A61F2/07A61F2/16A61F2/2412A61F2/32A61F2/389A61F2/3859A61F2/3877A61F5/0123A61F5/055A61N1/3702A61N1/3956G16H40/60G16H40/63A61B5/021A61B5/02014A61B2560/0219A61B2562/0219A61B2562/0247A61B2562/043A61B2562/063
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Quick Facts
Patent No.
US 11,786,126
App. No.
17/993,773
Granted
Oct 17, 2023
Kind
B2
Abstract

Medical devices are provided, comprising a medical device and a sensor.

Claims (32)

1. A sensor data system comprising:

an implantable medical device comprising:

a spinal cage defining a hollow interior space configured to receive bone graft material and to be implanted into, around, or in place of a part of a spine; and

at least one sensor module configured to be placed within the hollow interior space within the bone graft material, the at least one sensor module comprising a power supply, at least one sensor channel having a sensor configured to generate a sensor signal that represents a sensed quantity, a memory, and a communication interface; and

a remote data-receiving device configured to:

establish communication with the implantable medical device; and

receive data representing the sensed quantity.

2. The sensor data system of claim 1 , wherein the sensor comprises a sensor selected from an accelerometer and a gyroscope.

3. The sensor data system of claim 1 , wherein the sensor comprises sensors including both of a gyroscope and an accelerometer.

4. The sensor data system of claim 1 , further comprising an implantable housing, wherein the at least one sensor module is disposed within the implantable housing.

5. The sensor data system of claim 1 , wherein the sensor channel comprises a power management circuit to manage transport of voltage from the power supply to the sensor of the at least one sensor channel.

6. The sensor data system of claim 1 , wherein remote data-receiving device is configured to:

process the received data; and

display the processed received data.

7. The sensor data system of claim 1 , wherein:

the sensor is a position sensor;

the sensed quantity represents a relative or absolute position of the spinal cage; and

the remote data-receiving device is configured to receive a plurality of data representing the sensed quantity over a time, process the received data and display the processed received data as a function of the time to represent at least one of: fixation of the spinal cage, movement of the spinal cage, integrity of the spinal cage, and contact and interaction between the spinal cage and adjacent anatomy.

8. The sensor data system of claim 1 , wherein:

the sensor is a contact sensor;

the sensed quantity represents a contact between the spinal cage and surrounding tissue; and

the remote data-receiving device is configured to receive a plurality of data representing the sensed quantity over a time, process the received data and display the processed received data as a function of the time to represent at least one of: movement of the spinal cage, detect space between the spinal cage and surrounding anatomy, and integrity of a bond between the spinal cage and surrounding anatomy.

9. The sensor data system of claim 1 , wherein:

the sensor is a pressure sensor;

the sensed quantity represents a force on the spinal cage; and

the remote data-receiving device is configured to receive a plurality of data representing the sensed quantity over a time, process the received data and display the processed received data as a function of the time to represent pressure on the spinal cage.

10. The sensor data system of claim 1 , wherein the sensor is an accelerometer and the sensed quantity represents a movement of the spinal cage.

11. The sensor data system of claim 10 , wherein the remote data-receiving device is configured to receive a plurality of data representing the sensed quantity over a time, process the received data and display the processed received data as a function of the time to represent at least one of: magnitude of acceleration of the spinal cage, direction of acceleration of the spinal cage, orientation of the spinal cage, and vibration of the spinal cage.

12. The sensor data system of claim 1 , wherein:

the sensor is a strain gauge;

the sensed quantity represents a stain between the spinal cage and tissue surrounding the spinal cage; and

the remote data-receiving device is configured to receive a plurality of data representing the sensed quantity over a time, process the received data and display the processed received data as a function of the time to represent strain between the spinal cage and tissue surrounding the spinal cage.

Assignments (2)
SECURITY INTEREST Recorded Mar 13, 2024
From: CANARY MEDICAL INC.
To: ZIMMER BIOMET HOLDINGS, INC.
Reel/Frame 066752/0223 →
SECURITY INTEREST Recorded Mar 13, 2024
From: CANARY MEDICAL INC.; CANARY MEDICAL SWITZERLAND AG
To: FIRST-CITIZENS BANK & TRUST COMPANY
Reel/Frame 066796/0443 →
Continuity (7)
Continuation 17351825 · Jun 18, 2021
Continuation 16655962 · Oct 17, 2019
Continuation 15078604 · Mar 23, 2016
Continuation In Part PCTUS2015050789 · Sep 17, 2015
Provisional Application 62184820 · Jun 25, 2015
Provisional Application 62051855 · Sep 17, 2014
Related Publication 20230200650A1 · Jun 29, 2023
Cited By (3)
US 12,419,567 US 12,419,574 US 12,440,153