IP Library Granted Patent US 9,168,195
Granted Patent B2
US 9,168,195 · App. 14/183,099 · Granted Oct 27, 2015

Motion-assist system of wearable motion-assist device, wearable motion-assist device, and motion-assist method of wearable motion-assist device

Inventor: Yoshiyuki Sankai (Tsukuba, JP)
Assignee: UNIVERSITY OF TSUKUBA
A61H1/00A61H1/0255A61H3/00A61H3/008A61H2201/1215A61H2201/163A61H2201/165A61H2201/1642A61H2201/1676A61H2201/5012A61H2201/5015A61H2201/5061A61H2201/5069A61H2230/08A61H2230/10A61H2230/50A61H2230/605
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Quick Facts
Patent No.
US 9,168,195
App. No.
14/183,099
Granted
Oct 27, 2015
Kind
B2
Abstract

A motion state of a wearable motion-assist device of a doctor is sent to the wearable motion-assist device of a patient via a network. Then, this motion state is applied to the wearable motion-assist device of the patient, so that rehabilitation is conducted for the patient. Furthermore, the motion state of the wearable motion-assist device of the patient is sent from the wearable motion-assist device to the wearable motion-assist device. Then, the motion state of the wearable motion-assist device is applied to the wearable motion-assist device. Accordingly, the doctor can objectively sense the state of the patient.

Claims (27)

1. A motion-assist system comprising:

a plurality of wearable motion-assist devices, wherein a wearable motion-assist device comprises:

a biological signal detecting unit configured to detect a biological signal generated in accordance with a motion of a wearer of a motion-assist tool included in the wearable motion-assist device;

a physical phenomenon detecting unit configured to detect a detection signal corresponding to a physical phenomenon in accordance with the motion of the wearer;

a driving unit configured to apply assistance power to the motion-assist tool worn by the wearer, wherein:

the physical phenomenon detecting unit is an angle sensor configured to detect a rotational angle at a joint of the wearer of the motion-assist tool driven by the driving unit; and

a control unit configured to control the driving unit to generate the assistance power, by performing a calculation process based on the detection signal detected by the physical phenomenon detecting unit,

a communications unit configured to connect together a plurality of the control units of the plurality of the wearable motion-assist devices such that communications can be performed therebetween; and

a data transfer unit configured to transfer data corresponding to at least one of the signals acquired in one of the wearable motion-assist devices, to another one of the wearable motion-assist devices via the communications unit, wherein:

the control unit of the other one of the wearable motion-assist devices controls the driving unit based on the data transferred by the data transfer unit, such that a motion of the other one of the wearable motion-assist devices corresponds to a motion of the one of the wearable motion-assist devices, wherein:

the control unit of the other one of the wearable motion-assist devices controls the driving unit based on the rotational angle at the joint of the wearer wearing the one of the wearable motion-assist devices, whereby the rotational angle is detected by the angle sensor,

the control unit of the other one of the wearable motion-assist devices controls the driving unit based on the biological signal detected by the biological signal detecting unit, in the event that a difference between a rotational angle of the joint detected by the angle sensor of the one of the wearable motion-assist devices and a rotational angle of the joint detected by the angle sensor of the other one of the wearable motion-assist devices exceeds a threshold that is set in advance.

2. The motion-assist system according to claim 1 , wherein:

the control unit of the one of the wearable motion-assist devices is connected to the control unit of the other one of the wearable motion-assist devices via the communications unit, such that the data can be transmitted and received therebetween.

3. The motion-assist system according to claim 2 , wherein:

the control unit of the one of the wearable motion-assist devices controls the driving unit based on the data transferred by the data transfer unit, such that the motion of the one of the wearable motion-assist devices corresponds to the motion of the other one of the wearable motion-assist devices.

4. The motion-assist system according to claim 1 , wherein:

the physical phenomenon detecting unit is a torque sensor configured to detect a torque applied to a joint of the wearer by the driving unit.

5. The motion-assist system according to claim 4 , wherein:

the control unit of the other one of the wearable motion-assist devices controls the driving unit of the other one of the wearable motion-assist devices based on the torque of the driving device of the one of the wearable motion-assist devices detected by the torque sensor.

6. The motion-assist system according to claim 5 , wherein:

the control unit of the other one of the wearable motion-assist devices controls the driving unit based on the biological signal detected by the biological signal detecting unit, in the event that a difference between a torque detected by the torque sensor of the one of the wearable motion-assist devices and another torque detected by the torque sensor of the other one of the wearable motion-assist devices exceeds a threshold that is set in advance.

7. The motion-assist system according to claim 1 , wherein:

the control unit of the wearable motion-assist device comprises a specifying unit configured to specify the control unit of an arbitrary one of the plurality of the wearable motion-assist devices, as a master control unit.

8. The motion-assist system according to claim 1 , wherein:

the control unit of the one of the wearable motion-assist devices sends the detection signal detected by the physical phenomenon detecting unit to the other one of the wearable motion-assist devices via the communications unit; and

the other one of the wearable motion-assist devices comprises a sensing unit configured to cause the wearer to sense the physical phenomenon corresponding to the detection signal received via the communications unit.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 28, 2019
From: SANKAI, YOSHIYUKI
To: UNIVERSITY OF TSUKUBA
Reel/Frame 049292/0916 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 28, 2019
From: UNIVERSITY OF TSUKUBA
To: CYBERDYNE INC.
Reel/Frame 049293/0046 →
Priority Claims (2)
JP 2007-213359 · Aug 20, 2007 · national
JP 2008-208027 · Aug 12, 2008 · national
Continuity (2)
Division 12596788
Related Publication 20140163434A1 · Jun 12, 2014