IP Library › Granted Patent US 12,549,633
Granted Patent B2
US 12,549,633 · App. 16/703,189 · Granted Feb 10, 2026

Physiological information processing apparatus, physiological information sensor and physiological information system

Inventors: Hironori Sugawara (Tokorozawa, JP); Yukio Koyama (Tokorozawa, JP); Hiroshi Kubo (Tokorozawa, JP)
Assignee: NIHON KOHDEN CORPORATION
H04L67/12A61B5/0024G16H40/67
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Quick Facts
Patent No.
US 12,549,633
App. No.
16/703,189
Granted
Feb 10, 2026
Kind
B2
Abstract

A physiological information processing apparatus is to be communicatively connected to a plurality of physiological information sensors each of which is configured to acquire physiological information data of a subject being tested. The physiological information processing apparatus is configured to: receive first physiological information data from a first physiological information sensor of the plurality of physiological information sensors, in an x th first subframe (x: natural number) of a plurality of first subframes divided from an nth main frame (n: natural number); and receive the first physiological information data from the first physiological information sensor, in an x th second subframe of a plurality of second subframes divided from an m th main frame (m: natural number).

Claims (36)

1 . A physiological information processing apparatus to be communicatively connected to a plurality of physiological information sensors each of which being configured to acquire physiological information data of a subject being tested, the physiological information processing apparatus being configured to:

receive first physiological information data from a first physiological information sensor of the plurality of physiological information sensors, in an x th first subframe (x: natural number) of a plurality of first subframes divided from an n th main frame (n: natural number); and

receive the first physiological information data from the first physiological information sensor, in an x th second subframe of a plurality of second subframes divided from an m th main frame (m: natural number),

wherein at least one first subframe of the plurality of first subframes does not include the first physiological information data,

wherein at least one second subframe of the plurality of second subframes does not include the first physiological information data, and

wherein each of the plurality of first subframes and each of the plurality of second subframes include the physiological information data from one or more physiological information sensors of the plurality of physiological information sensors.

2 . The physiological information processing apparatus according to claim 1 , wherein the physiological information processing apparatus is configured to:

receive second physiological information data from a second physiological information sensor of the plurality of physiological information sensors, in a y th first subframe (y: natural number); and

receive the second physiological information data from the second physiological information sensor, in a y th second subframe.

3 . The physiological information processing apparatus according to claim 2 , wherein the physiological information processing apparatus is configured to transmit data which designates the second physiological information sensor, toward each of the plurality of physiological information sensors, in the y th first subframe and the y th second subframe.

4 . The physiological information processing apparatus according to claim 1 , wherein the physiological information processing apparatus is configured to transmit data which designates the first physiological information sensor, toward each of the plurality of physiological information sensors, in the x th first subframe and the x th second subframe.

5 . The physiological information processing apparatus according to claim 1 , wherein the physiological information processing apparatus is configured to receive second physiological information data from a second physiological information sensor, in the x th first subframe.

6 . The physiological information processing apparatus according to claim 1 , wherein the physiological information processing apparatus is configured to transmit control data for controlling the first physiological information sensor to the first physiological information sensor, in a z th first subframe (z: natural number).

7 . The physiological information processing apparatus according to claim 1 , wherein the physiological information processing apparatus is configured to receive the first physiological information data from the first physiological information sensor, in an r th first subframe (r: natural number).

8 . The physiological information processing apparatus according to claim 1 , wherein the physiological information processing apparatus is configured not to request the first physiological information sensor to retransmit the first physiological information data even if there is an error in the first physiological information data.

9 . The physiological information processing apparatus according to claim 1 , wherein when communication between the first physiological information sensor and the physiological information processing apparatus is disconnected, a sequence of subframes allocated to the physiological information data of each of the plurality of physiological information sensors except the first physiological information sensor is maintained.

10 . The physiological information processing apparatus according to claim 1 , wherein the main frame has a frame length of 1 ms, and each of the plurality of first subframes and the plurality of second subframes has a frame length of 125 μs.

11 . The physiological information processing apparatus according to claim 1 , wherein the physiological information processing apparatus is configured to periodically receive physiological information data from each of the plurality of physiological information sensors.

12 . The physiological information processing apparatus according to claim 1 , wherein the physiological information processing apparatus is configured to receive split bulk data, in each of the plurality of first subframes.

13 . The physiological information processing apparatus according to claim 1 , wherein the physiological information processing apparatus is configured such that, when a second physiological information sensor is newly connected in communication with the physiological information processing apparatus, the physiological information processing apparatus periodically receives second physiological information data from the second physiological information sensor in a state in which a sequence of subframes allocated to the physiological information data of each of the plurality of physiological information sensors except the second physiological information sensor is maintained.

14 . A patient system comprising:

the physiological information processing apparatus according to claim 1 ; and

a plurality of physiological information sensors each of which is configured to acquire physiological information data of a subject being tested and is communicatively connected to the physiological information processing apparatus.

15 . A first physiological information sensor of a plurality of physiological information sensors, each of the plurality of physiological information sensors being configured to acquire physiological information data of a subject being tested and to be communicatively connected to a physiological information processing apparatus, the first physiological information sensor being configured to:

transmit first physiological information data to the physiological information processing apparatus, in an x th first subframe (x: natural number) of a plurality of first subframes divided from an n th main frame (n: natural number); and

transmit the first physiological information data to the physiological information processing apparatus, in an x th second subframe of a plurality of second subframes divided from an m th main frame (m: natural number),

wherein at least one first subframe of the plurality of first subframes does not include the first physiological information data,

wherein at least one second subframe of the plurality of second subframes does not include the first physiological information data, and

wherein each of the plurality of first subframes and each of the plurality of second subframes include the physiological information data from one or more physiological information sensors of the plurality of physiological information sensors.

16 . A physiological information processing apparatus to be communicatively connected to a plurality of physiological information sensors each of which being configured to acquire physiological information data of a subject being tested, the physiological information processing apparatus being configured to:

receive first physiological information data from a first physiological information sensor of the plurality of physiological information sensors, in an x th first subframe (x: natural number) of a plurality of first subframes divided from an n th main frame (n: natural number), and

receive the first physiological information data from the first physiological information sensor, in a y th second subframe of a plurality of second subframes divided from an m th main frame (m: natural number),

wherein y is determined based on x,

wherein at least one first subframe of the plurality of first subframes does not include the first physiological information data,

wherein at least one second subframe of the plurality of second subframes does not include the first physiological information data, and

wherein each of the plurality of first subframes and each of the plurality of second subframes include the physiological information data from one or more physiological information sensors of the plurality of physiological information sensors.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 4, 2019
From: SUGAWARA, HIRONORI; KOYAMA, YUKIO; KUBO, HIROSHI
To: NIHON KOHDEN CORPORATION
Reel/Frame 051179/0185 →
Priority Claims (1)
JP 2018-234428 · Dec 14, 2018 · national
Continuity (1)
Related Publication 20200195724A1 · Jun 18, 2020
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