IP Library Granted Patent US 12,239,811
Granted Patent B2
US 12,239,811 · App. 17/309,338 · Granted Mar 4, 2025

Wireless charging, localization, and data communication for implantable vascular access devices

Inventors: James D. Mitchell (Walnut Creek, CA); Andrew A. Thoreson (Orono, MN); Theodore C. Johnson (Lake Forest Park, WA); Jayme Ormiston Coates (New Hartford, CT)
Assignee: Veris Health Inc.
A61M39/0208A61B5/0031A61B5/6865A61M39/0247G06F21/6254G16H10/60G16H20/17A61M2039/0238A61M2039/0258A61M2205/3324A61M2205/3331A61M2205/3507A61M2205/3569A61M2230/04A61M2230/208A61M2230/50
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Quick Facts
Patent No.
US 12,239,811
App. No.
17/309,338
Granted
Mar 4, 2025
Kind
B2
Abstract

An implantable vascular access device includes a fluid, a self-sealing cover disposed over the reservoir, and an outlet port configured to mate with a catheter, the outlet port fluidically coupled to the fluid reservoir. One or more sensors coupled to the device are configured to capture physiological data while the device is implanted within a patient. The device also includes a data communications unit configured to receive physiological data from the one or more sensors, obfuscate the physiological data, and transmit the obfuscated physiological data to one or more remote computing devices. The device may also be inductively powered and/or can emit a localization signal in response to wireless interrogation.

Claims (44)

1. An implantable vascular access device comprising:

a fluid reservoir;

a self-sealing cover disposed over the reservoir;

an outlet port configured to mate with a catheter, the outlet port fluidically coupled to the fluid reservoir;

one or more sensors configured to capture physiological data while the device is implanted within a patient; and

a data communications processor configured to:

receive physiological data from the one or more sensors;

obfuscate the physiological data including:

encrypting the physiological data through at least one of symmetric and asymmetric-key encryption;

parsing the encrypted physiological data into component packets; and

arranging the component packets into a data stream interspersed with filler packets containing non-physiological data; and

transmit the data stream to one or more remote computing devices.

2. The device of claim 1 , wherein the component packets are individually unintelligible.

3. The device claim 1 , wherein the filler packets have a predetermined data size.

4. The device of claim 1 , wherein the filler packets are interspersed into the data stream according to a predetermined pattern.

5. The device of claim 1 , wherein obfuscating the physiological data further comprises:

after parsing the encrypted data into component packets, re-ordering the component packets; and

arranging the re-ordered component packets into a data stream,

wherein transmitting the obfuscated physiological data comprises transmitting the data stream to one or more remote computing devices.

6. The device of claim 1 , wherein transmitting the obfuscated physiological data to one or more remote computing devices comprises transmitting a first packet at a first time and, after a predetermined time delay, transmitting a second packet at a second time.

7. The device of claim 6 , wherein the predetermined time delay is at least one of at least 60 seconds, at least 10 minutes, or at least one hour.

8. The device of claim 6 , wherein the predetermined time delay corresponds to a predetermined pattern for transmission of subsequent packets.

9. The device of claim 1 , wherein the data communications processor is configured to transmit a first of the packets to a first remote computing device and to transmit a second of the packets to a second remote computing device, different from the first remote computing device.

10. The device of claim 1 , wherein the data communications processor is configured to:

obfuscate the physiological data according to a first technique, the first technique including at least:

encrypting the physiological data through at least one of symmetric and asymmetric-key encryption;

parsing the encrypted physiological data into component packets; and

arranging the component packets into a data stream interspersed with filler packets containing non-physiological data in a first pattern;

transmit the obfuscated physiological data to one or more remote computing devices;

receive a response from the one or more remote computing devices;

receive additional physiological data from the one or more sensors; and

based on the response from the one or more remote computing devices, obfuscate the physiological data according to a second technique, different from the first technique, wherein obfuscating the physiological data according the second technique comprises:

encrypting the physiological data through at least one of symmetric and asymmetric-key encryption;

parsing the encrypted physiological data into component packets; and

arranging the component packets into a data stream interspersed with filler packets containing non-physiological data in a second pattern, the second pattern different from the first pattern.

11. The device of claim 1 , wherein the one or more remote computing devices is associated with a blockchain network.

12. The device of claim 1 , wherein the data communications processor is configured to transmit the obfuscated physiological data to one or more remote computing devices via short-range wireless transmission.

13. The device of claim 12 , wherein the short-range wireless transmission comprises one or more of: near-field communication (NFC), infrared wireless, Bluetooth, ZigBee, Wi-Fi, inductive coupling, or capacitive coupling.

14. The device of claim 1 , further comprising a conductive coil, wherein transmitting the obfuscated physiological data to one or more remote computing devices comprises:

encoding the obfuscated physiological data via frequency modulation and/or amplitude modulation; and

driving the coil with electrical energy corresponding to the encoded data, thereby transmitting the encoded data to an inductively coupled remote computing device.

15. The device of claim 1 , wherein the sensors comprise one or more of: EKG sensors, a temperature sensor, an accelerometer, a gyroscope, a magnetometer, a pulse oximeter, a pressure sensor, a light sensor, a pH sensor, a blood-gas sensor, or a blood-chemistry sensor.

16. The device of claim 1 , wherein the physiological data comprises one or more of: an EKG reading, a pulse rate, a blood pressure, a temperature, detected-motion data, a blood oxygenation, pH data, or blood-constituent data.

17. The device of claim 1 , further comprising a catheter fluidically coupled to the output port.

Assignments (3)
SECURITY INTEREST Recorded Apr 6, 2022
From: PAVMED INC.; VERIS HEALTH INC.
To: ALTO OPPORTUNITY MASTER FUND, SPC - SEGREGATED MASTER PORTFOLIO B
Reel/Frame 059620/0086 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 30, 2021
From: MITCHELL, JAMES D.; JOHNSON, THEODORE C.; THORESON, ANDREW; COATES, JAYME ORMISTON
To: ONCODISC, INC.
Reel/Frame 057034/0588 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 1, 2021
From: ONCODISC, INC.
To: VERIS HEALTH INC.
Reel/Frame 056733/0582 →
Continuity (2)
Provisional Application 62769698 · Nov 20, 2018
Related Publication 20210402164A1 · Dec 30, 2021
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