IP Library › Granted Patent US 10,512,411
Granted Patent B2
US 10,512,411 · App. 15/040,420 · Granted Dec 24, 2019

Brain mapping system and method thereof

Inventor: Chiun-Fan Chen (Brookline, MA)
A61B5/04012A61B5/04008A61B5/0484A61B5/04009
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Quick Facts
Patent No.
US 10,512,411
App. No.
15/040,420
Granted
Dec 24, 2019
Kind
B2
Abstract

A brain mapping system includes a brain signal acquisition device for collecting brain signals corresponding to different locations of the brain, a stimulator for generating a stimulus based upon a pseudorandom sequence, and a processor for segmenting the brain signals into a plurality of epochs and correlating features extracted from the epochs with the pseudorandom sequence to generate correlation functions, wherein a brain map is constructed by the correlation functions.

Claims (20)

1. A brain mapping system, comprising:

a brain signal acquisition device, comprising sensors that collect a plurality of brain signals corresponding to different locations of the brain;

a stimulator, generating a stimulus based upon a pseudorandom sequence; and

a processor, segmenting the brain signals into a plurality of epochs and correlating at least one of a plurality of features extracted from the epochs with the pseudorandom sequence to generate a plurality of correlation functions that last more than two runs of the pseudorandom sequence;

wherein a brain map is constructed by correlation values between the pseudorandom sequence and the brain signals corresponding to different locations of the brain.

2. The brain mapping system of claim 1 , wherein the time interval between peak correlation values of the correlation functions is substantially equal to the period of one run of the pseudorandom sequence.

3. The brain mapping system of claim 1 , wherein the stimulus is visual, audio, mechanical, optical, or electrical.

4. The brain mapping system of claim 1 , wherein the stimulus cues a motor response.

5. The brain mapping system of claim 1 , wherein the processor is comprised of an application specific integrated circuit.

6. The brain mapping system of claim 1 , wherein the features comprise power, power spectral density, and maximal voltage.

7. The brain mapping system of claim 1 , further comprising a brain stimulation device that stimulates the brain according to a montage provided by the brain map.

8. A brain mapping method, comprising the steps of:

utilizing sensors to collect a plurality of brain signals corresponding to different locations of the brain;

generating a stimulus based upon a pseudorandom sequence;

segmenting the brain signals into a plurality of epochs; and

correlating at least one of a plurality of features extracted from the epochs with the pseudorandom sequence to generate a plurality of correlation functions that last more than two runs of the pseudorandom sequence;

wherein a brain map is constructed by correlation values between the pseudorandom sequence and the brain signals corresponding to different locations of the brain.

9. The brain mapping method of claim 8 , wherein the time interval between peak correlation values of the correlation functions is substantially equal to the period of one run of the pseudorandom sequence.

10. The brain mapping method of claim 8 , wherein the stimulus cues a motor response.

11. The brain mapping method of claim 8 , further comprising the step of stimulating the brain according to a montage provided by the brain map.

Continuity (1)
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