IP Library › Granted Patent US 12,114,979
Granted Patent B2
US 12,114,979 · App. 17/663,720 · Granted Oct 15, 2024

Biomagnetic field measurement processing apparatus, biomagnetic field measurement system, and control method of biomagnetic field measurement processing apparatus

Inventors: Koki Ishida (Kanagawa, JP); Taishi Watanabe (Tokyo, JP); Shigenori Kawabata (Tokyo, JP); Jun Hashimoto (Tokyo, JP)
Assignees: Ricoh Company, Ltd.; National University Corporation Tokyo Medical and Dental University
A61B5/242A61B5/743A61N1/0456G09G5/37G09G2380/08
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Quick Facts
Patent No.
US 12,114,979
App. No.
17/663,720
Granted
Oct 15, 2024
Kind
B2
Abstract

A biomagnetic field measurement processing apparatus includes circuitry; and a memory storing computer-executable instructions that cause the circuitry to execute reconfiguring a current signal from a biomagnetic field signal; extracting a current component from the current signal; and based on the extracted current component, adding to each other at least two current waveforms among current waveforms of a plurality of inward currents that are current components directed toward a nerve axon from around the nerve axon, or adding to each other at least two current waveforms among current waveforms of a plurality of inward currents that are current components directed toward a muscle fiber from around the muscle fiber, and generating a current waveform to be displayed on a display device, according to the at least two current waveforms added to each other.

Claims (32)

1. A biomagnetic field measurement processing apparatus comprising:

circuitry;

and a memory storing computer-executable instructions that cause the circuitry to execute:

reconfiguring a current signal from a biomagnetic field signal measured from a subject;

calculating a path of a nerve axon or a muscle fiber in a morphological image of the subject, wherein the morphological image is displayed on a display device

generating plurality of first virtual electrodes positioned along the path and a plurality of second virtual electrodes on respective sides of the path with respect to each of the plurality of first virtual electrodes;

extracting current waveforms of a plurality of inward currents that are current components directed toward the nerve axon or the muscle fiber from around the nerve axon or around the muscle fiber from the current signal, wherein the current waveforms are extracted at the plurality of second virtual electrodes and comprises at least a first current waveform and a second current waveform;

generating a summed current waveform to be displayed on the display device by adding to each other the first current waveform extracted at one second virtual electrode of the plurality of second virtual electrodes on one side of the path and the second current waveform extracted at a corresponding second virtual electrode on an opposite side of the path than the one second virtual electrode at which the first current waveform was extracted;

and displaying the summed current waveform together with to the first current waveform and the second current waveform in a user interface on the display device in order to evaluate neural function or muscle function.

2. The biomagnetic field measurement processing apparatus according to claim 1 , wherein the plurality of inward currents are current components directed toward the nerve axon from around the nerve or around the muscle fiber are directed along a cross-sectional direction of the nerve axon or the muscle fiber.

3. The biomagnetic field measurement processing apparatus according to claim 1 , wherein the circuitry is further caused to execute:

receiving a selection of the first current waveform and the second current waveform from among the current waveforms of the plurality of inward currents, said selection being made by external input.

4. A biomagnetic field measurement system comprising:

a magnetometer configured to measure a biomagnetic field from a subject;

a display device;

and a biomagnetic field measurement processing apparatus, wherein the biomagnetic field measurement processing apparatus includes:

circuitry;

and a memory storing computer-executable instructions that cause the circuitry to execute:

reconfiguring a current signal from the biomagnetic field signal;

calculating a path of a nerve axon or a muscle fiber in a morphological image of the subject, wherein the morphological image is displayed on the display device

generating plurality of first virtual electrodes positioned along the path and a plurality of second virtual electrodes on respective sides of the path with respect to each of the plurality of first virtual electrodes;

extracting current waveforms of a plurality of inward currents that are current components directed toward the nerve axon or the muscle fiber from around the nerve axon or around the muscle fiber from the current signal, wherein the current waveforms are extracted at the plurality of second virtual electrodes and comprises at least a first current waveform and a second current waveform;

generating a summed current waveform to be displayed on the display device by adding to each other the first current waveform extracted at one second virtual electrode of the plurality of second virtual electrodes on one side of the path and the second current waveform extracted at a corresponding second virtual electrode on an opposite side of the path than the one second virtual electrode at which the first current waveform was extracted;

and displaying the summed current waveform together with the first current waveform and the second current waveform in a user interface on the display device in order to evaluate neural function or muscle function.

5. A control method of a biomagnetic field measurement processing apparatus, the control method comprising:

reconfiguring a current signal from a biomagnetic field signal measured from a subject;

calculating a path of a nerve axon or a muscle fiber in a morphological image of the subject, wherein the morphological image is displayed on a display device

generating plurality of first virtual electrodes positioned along the path and a plurality of second virtual electrodes on respective sides of the path with respect to each of the plurality of first virtual electrodes;

extracting current waveforms of a plurality of inward currents that are current components directed toward the nerve axon or the muscle fiber from around the nerve axon or around the muscle fiber from the current signal, wherein the current waveforms are extracted at the plurality of second virtual electrodes and comprises at least a first current waveform and a second current waveform;

generating a summed current waveform to be displayed on the display device by adding to each other the first current waveform extracted at one second virtual electrode of the plurality of second virtual electrodes on one side of the path and the second current waveform extracted at a corresponding second virtual electrode on an opposite side of the path than the one second virtual electrode at which the first current waveform was extracted;

and displaying the summed current waveform together with the first current waveform and the second current waveform in a user interface on the display device in order to evaluate neural function or muscle function.

6. A non-transitory computer-readable recording medium storing a program that causes a computer to execute a process included in the control method according to claim 5 .

Assignments (3)
MERGER Recorded Dec 19, 2024
From: NATIONAL UNIVERSITY CORPORATION TOKYO MEDICAL AND DENTAL UNIVERSITY
To: INSTITUTE OF SCIENCE TOKYO
Reel/Frame 069747/0188 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 16, 2024
From: RICOH COMPANY, LTD.
To: INSTITUTE OF SCIENCE TOKYO
Reel/Frame 069595/0934 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 17, 2022
From: ISHIDA, KOKI; WATANABE, TAISHI; KAWABATA, SHIGENORI; HASHIMOTO, JUN
To: RICOH COMPANY, LTD.; NATIONAL UNIVERSITY CORPORATION TOKYO MEDICAL AND DENTAL UNIVERSITY
Reel/Frame 059932/0012 →
Priority Claims (1)
JP 2021-084530 · May 19, 2021 · national
Continuity (1)
Related Publication 20220369982A1 · Nov 24, 2022