IP Library › Granted Patent US 9,533,162
Granted Patent B2
US 9,533,162 · App. 14/789,564 · Granted Jan 3, 2017

Use of a dedicated remote control as an intermediary device to communicate with an implantable medical device

Inventors: Habet Ter-Petrosyan (Panorama City, CA); Gaurav Gupta (Valencia, CA); Sridhar Kothandaraman (Valencia, CA)
Assignee: Boston Scientific Neuromodulation Corporation
A61N1/37223A61N1/37211A61N1/37247
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Quick Facts
Patent No.
US 9,533,162
App. No.
14/789,564
Granted
Jan 3, 2017
Kind
B2
Abstract

Systems and methods are disclosed in which an external device such as a consumer mobile device (e.g., smart phone) is used as an external controller to bi-directionally communicate with an Implantable Medical Device (IMD) using a dedicated patient remote control (RC) as an intermediary device to translate communications between the two. The dedicated RC contains a graphical user interface allowing for control and monitoring of the IMD even if the mobile device is not present in the system, which is useful as a back-up should the mobile device experience problems. Use of the dedicated RC as an intermediary device broadens the utility of other computing devices to operate as an external controller for an IMD even if the computing device and IMD do not have compliant communication means.

Claims (26)

1. A remote control for communicating with an Implantable Medical Device (IMD), comprising:

a first user interface and a first antenna, wherein the first user interface is configured to enable a user to transmit a first control instruction for the IMD from the first antenna to the IMD via a first wireless link;

a second antenna configured to receive from an external device a second control instruction for the IMD via a second wireless link; and

a housing with a port on the housing, wherein the first antenna is within the housing, and wherein the second antenna is coupleable to the port,

wherein the remote control is configured to translate the second control instruction and to transmit the translated second control instruction from the first antenna to the IMD via the first wireless link,

wherein the first wireless link comprises a magnetic induction link, and the second wireless link comprises a short-range RF link.

2. The remote control of claim l, wherein the first wireless link carries data in a first format, and wherein the second wireless link carries data in a second format.

3. The remote control of claim 1 , wherein the first antenna comprises a magnetic induction coil antenna, and the second wireless link comprises a short-range RF antenna.

4. The remote control of claim 3 , wherein the short-range RF antenna is contained within a dongle coupleable to the port.

5. The remote control of claim 1 , wherein the port comprises a USB port.

6. The remote control of claim 1 , wherein the second antenna is removable from the port.

7. The remote control of claim 1 , wherein the remote control is further configured to:

receive first monitoring information from the IMD at the first antenna via the first wireless link, wherein the first user interface is further configured to display the first monitoring information to the user; and

receive second monitoring information from the IMD at the first antenna via the first wireless link; translate the second monitoring information; and transmit the translated second monitoring information from the second antenna to the external device via the second wireless link.

8. A remote control for communicating with an Implantable Medical Device (IMD), comprising:

a user interface and a first antenna, wherein the user interface is configured to enable a user to communicate data with the IMD via the first antenna in a first format via a first wireless link;

a second antenna configured to communicate data with an external device in a second format via a second wireless link;

a housing with a port on the housing, wherein the first antenna is within the housing, and wherein the second antenna is coupleable to the port; and

control circuitry coupled to the first and second antennas, wherein the control circuitry is configured to translate data received at one of the first or second antenna in the first or second format into the other of the first or second format, and to transmit the translated data from the other of the first or second antenna,

wherein the first wireless link comprises a magnetic induction link, and the second wireless link comprises a short-range RF link.

9. The remote control of claim 8 , wherein the first antenna comprises a magnetic induction coil antenna, and the second wireless link comprises a short-range RF antenna.

10. The remote control of claim 9 , wherein the short-range RF antenna is contained within a dongle coupleable to the port.

11. The remote control of claim 8 , wherein the port comprises a USB port.

12. The remote control of claim 8 , wherein the second antenna is removable from the port.

13. The remote control of claim 8 , wherein the user interface provides options to allow the user to provide control instructions to the IMD via the first wireless link and/or to provide monitoring information from the IMD via the first wireless link.

14. The remote control of claim 8 , wherein the translated data comprises control instructions for the IMD and/or monitoring information from the IMD.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 1, 2015
From: TER-PETROSYAN, HABET; GUPTA, GAURAV; KOTHANDARAMAN, SRIDHAR
To: BOSTON SCIENTIFIC NEUROMODULATION CORPORATION
Reel/Frame 035989/0184 →
Continuity (3)
Provisional Application 62108908 · Jan 28, 2015
Provisional Application 62040369 · Aug 21, 2014
Related Publication 20160051825A1 · Feb 25, 2016