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公开(公告)号:US11972050B2
公开(公告)日:2024-04-30
申请号:US17978271
申请日:2022-11-01
申请人: BROWN UNIVERSITY , THE GENERAL HOSPITAL CORPORATION , The United States Government as represented by the Department of Veterans Affairs
发明人: Leigh Hochberg , John D. Simeral , Tyler Singer-Clark , Ronnie Gross , Thomas Hosman , Anastasia Kapitonava , Rekha Crawford
IPC分类号: G06F3/01
CPC分类号: G06F3/015
摘要: Instances of a single brain computer interface (BCI) system can be implemented on multiple devices. An active instance can control the associated device. The instances can each communicate with a neural decoding system that can receive neural signals from a user, process the neural signals, and output a command based on the processed neural signals. A device running the active instance of can be in communication with the neural decoding system to receive a command. The device can include a display, a non-transitory memory storing instructions, and a processor to execute the instructions to: run an instance of a control program; and execute the task based on the command.
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公开(公告)号:US20240256043A1
公开(公告)日:2024-08-01
申请号:US18610476
申请日:2024-03-20
申请人: BROWN UNIVERSITY , THE GENERAL HOSPITAL CORPORATION , The United States Government as represented by the Department of Veterans Affairs
发明人: Leigh Hochberg , John D. Simeral , Tyler Singer-Clark , Ronnie Gross , Thomas Hosman , Anastasia Kapitonava , Rekha Crawford
IPC分类号: G06F3/01
CPC分类号: G06F3/015
摘要: Instances of a single brain computer interface (BCI) system can be implemented on multiple devices. An active instance can control the associated device. The instances can each communicate with a neural decoding system that can receive neural signals from a user, process the neural signals, and output a command based on the processed neural signals. A device running the active instance of can be in communication with the neural decoding system to receive a command. The device can include a display, a non-transitory memory storing instructions, and a processor to execute the instructions to: run an instance of a control program; and execute the task based on the command.
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3.
公开(公告)号:US20230172522A1
公开(公告)日:2023-06-08
申请号:US18075811
申请日:2022-12-06
申请人: BROWN UNIVERSITY , THE GENERAL HOSPITAL CORPORATION , The United States Government as Represented by the Department of Veterans Affairs
发明人: John D. Simeral , Thomas Hosman , Carlos Vargas-Irwin , Daniel Thengone , Leigh Hochberg , Tyler Singer-Clark
CPC分类号: A61B5/375 , G06F3/015 , A61B5/384 , A61B5/7267 , A61B5/1116
摘要: Neural signals of a subject intending certain postures can be decoded and a controllable device can be commanded to perform certain actions based on the decoded intended postures with a system, and method of use thereof, including a brain machine interface (BMI) device. The system also includes electrodes in communication with the subject's nervous system to record the neural signals and the controllable device, both in communication with the BMI device. The BMI device can store instructions and previously calibrated neural activity patterns for the certain postures and a processor for receiving the neural signals, pre-processing the neural signals, decoding the neural signals into neural activity patterns, and matching the neural activity patterns to the previously calibrated neural activity patterns. If a match is determined, then the BMI device can send a command, previously linked to the intended posture, to the controllable device to perform the action.
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公开(公告)号:US20230133022A1
公开(公告)日:2023-05-04
申请号:US17978271
申请日:2022-11-01
申请人: BROWN UNIVERSITY , THE GENERAL HOSPITAL CORPORATION , THE UNITED STATES GOVERNMENT AS REPRESENTED BY THE DEPARTMENT OF VETERANS AFFAIRS
发明人: Leigh Hochberg , John D. Simeral , Tyler Singer-Clark , Ronnie Gross , Thomas Hosman , Anastasia Kapitonava
IPC分类号: G06F3/01
摘要: Instances of a single brain computer interface (BCI) system can be implemented on multiple devices. An active instance can control the associated device. The instances can each communicate with a neural decoding system that can receive neural signals from a user, process the neural signals, and output a command based on the processed neural signals. A device running the active instance of can be in communication with the neural decoding system to receive a command. The device can include a display, a non-transitory memory storing instructions, and a processor to execute the instructions to: run an instance of a control program; and execute the task based on the command.
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5.
公开(公告)号:US12042303B2
公开(公告)日:2024-07-23
申请号:US16978669
申请日:2019-03-01
申请人: University of Massachusetts , Brown University , The United States Government as Represented by The Department of Veterans Affairs
IPC分类号: A61B5/00 , G06F3/01 , G06F3/0346 , G06F3/0482
CPC分类号: A61B5/6898 , A61B5/0022 , A61B5/6897 , A61B5/7435 , G06F3/014 , G06F3/017 , G06F3/0346 , G06F3/0482
摘要: A patient communication system comprises a hand-held data input subsystem and a display subsystem. The data input subsystem may be configured to sense, and wirelessly convey, information associated with 3-D movement of the data input subsystem, and actuation of a signaling element within the data input subsystem. The display subsystem may receive the information and to present a visual representation of the information in a graphical user interface (GUI). The display subsystem may adaptively interpret the information with respect to range of motion sensitivity and orientation of the data input subsystem, and movement of the data input subsystem with respect to its prior state. The system may map the conveyed information to the GUI, generate and display images on the GUI with which a patient may interact by manipulating the data input subsystem, and capture one or more selections executed by the patient through actuation of the signaling element.
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6.
公开(公告)号:US20210045692A1
公开(公告)日:2021-02-18
申请号:US16978669
申请日:2019-03-01
申请人: University of Massachusetts Medical School , Brown University , THE UNITED STATES GOVERNMENT AS REPRESENTED BY THE DEPARTMENT OF VETERANS AFFAIRS
IPC分类号: A61B5/00
摘要: A patient communication system comprises a hand-held data input subsystem and a display subsystem. The data input subsystem may be configured to sense, and wirelessly convey, information associated with 3-D movement of the data input subsystem, and actuation of a signaling element within the data input subsystem. The display subsystem may receive the information and to present a visual representation of the information in a graphical user interface (GUI). The display subsystem may adaptively interpret the information with respect to range of motion sensitivity and orientation of the data input subsystem, and movement of the data input subsystem with respect to its prior state. The system may map the conveyed information to the GUI, generate and display images on the GUI with which a patient may interact by manipulating the data input subsystem, and capture one or more selections executed by the patient through actuation of the signaling element.
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