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System for detecting and evaluating human-brain activity

An active, human brain technology, applied in the field of brain science information acquisition, can solve the problems of inability to intuitively and accurately obtain the level of brain activity and neuron damage, and the inability to reflect the location of brain function.

Inactive Publication Date: 2016-06-15
崔天利
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Traditional brain imaging technologies such as CT and MRI can clearly reflect the location of brain tissue damage, but cannot reflect the location of brain function; while brain function imaging technologies such as PET, fMRI, NIRS, and ERP can only locate brain function and the location of the human brain. The distribution of thinking activities in the brain area, but it is impossible to intuitively and accurately obtain the brain activity level of each functional area and the damaged neurons

Method used

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  • System for detecting and evaluating human-brain activity
  • System for detecting and evaluating human-brain activity
  • System for detecting and evaluating human-brain activity

Examples

Experimental program
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Effect test

Embodiment 1

[0078] When in use, the task module issues a listening command to the testee, that is, the earphone in the trigger module sends the listening content to the testee. At the same time, the signal acquisition module uses optical fiber probes and electrodes to locate the internal test frontal lobe and temporal lobe of the subject's brain, and collects blood flow signals and EEG signals in the brain when the subject performs corresponding listening actions. The test method is as follows: two groups of stimulus commands total 20, presented sequentially, each stimulus is presented in the earphone for 0.3 seconds, and the stimulation interval is 0.5 seconds, repeated three rounds, a total of 60 times, and the test is completed in 5 minutes. The blood flow signals and EEG signals obtained by repeating the two types of stimuli 30 times were superimposed and processed, and the obtained average evoked responses were analyzed in the time domain first, and traced at the peak time points corr...

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PUM

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Abstract

The invention provides a system for detecting and evaluating the human-brain activity, and relates to the field of brain-science information obtaining. The system comprises a signal collecting module, a signal analysis module, a task module and a report printing module. The task module is used for giving acting control orders to a tested person; the signal collecting module is respectively used for collecting blood flow signals and electroencephalogram signals of the brain during acting and transmitting the blood flow signals and the electroencephalogram signals to the signal analysis module; the signal analysis module is used for carrying out event tracing processing on the blood flow signals and the electroencephalogram signals, generating the analysis result of the brain activity according to the processed data and outputting printing signals corresponding to the analysis result to the report printing module; the report printing module is used for displaying the corresponding analysis result of the brain activity according to the received printing signals, and therefore the brain activity level and neuron damaged parts are directly and accurately obtained.

Description

technical field [0001] The invention relates to the field of brain science information acquisition, specifically a system for evaluating the development level of brain cognitive function and thinking function of children and children, and mainly evaluating the brain activity level of each functional area and the damaged neuron in the medical field. Background technique [0002] Traditional neurophysiology studies on the advanced functions of the brain take neurons, nerve centers, or the excitation and inhibition processes of brain functional areas as the basic concepts, forming the concept of function positioning in anatomy, the concept of dynamic function positioning of the cerebral cortex in physiology, and the concept of brain duality. Lateralization theory of hemispheric function. Electrophysiology provides the acquisition and analysis technology of "nerve impulses", "brain waves" (EEG) and "evoked potentials", which has become an important methodological pillar of tradi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61B5/026A61B5/0476A61B5/00
CPCA61B5/0059A61B5/0093A61B5/026A61B5/369
Inventor 崔天利沈政
Owner 崔天利
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