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ACOUSTIC-ELECTRIC STIMULATION NEUROMODULATION THERAPY AND APPARATUS COMBINING ELECTROENCEPHALOGRAM TESTING, ANALYSIS AND CONTROL

机译:声电刺激神经调节治疗和装置组合脑电图测试,分析和控制

摘要

Provided are a noninvasive acoustic-electric stimulation neuromodulation method and apparatus combining electroencephalogram objective testing, analysis, feedback and control. The apparatus comprises: an electroencephalogram testing and signal processing and analysis system (2), an intelligent diagnosis and therapy control system (1), an acoustic stimulation therapy system (4), a transcranial electrical pulse stimulation therapy system (3) and a cognitive behavior psychotherapy system (5). Electroencephalogram testing of a plurality of brain functional regions of a human body is performed before, during and after noninvasive acoustic stimulation and/or electrical pulse stimulation and/or cognitive psychotherapy; and a correlation model including a therapeutic effect evaluation is established by means of electroencephalogram signal collection, real-time electroencephalogram spatio-temporal modeling and objective analysis of characteristic parameters of a neural network, thereby realizing a closed loop of testing, analysis, feedback, therapy and modulation. According to the method and the apparatus, a tracking, objective evaluation and prediction method for the effects of neuromodulation therapy over multiple courses or multiple sessions can be formed, and according to the expected therapeutic effects, a subsequent method for therapeutic schedule implementation and scheme parameter selection is qualitatively and quantitatively modulated and optimized, and a neurological function state can be objectively evaluated and predicted.
机译:提供了非侵入式声学电动刺激神经调节方法和装置,组合脑电图目标测试,分析,反馈和控制。该装置包括:脑电图测试和信号处理和分析系统(2),智能诊断和治疗控制系统(1),一种声刺激治疗系统(4),一种经颅电脉冲刺激治疗系统(3)和认知行为心理治疗系统(5)。在非侵入式声学刺激和/或电脉冲刺激和/或认知心理治疗之前,期间和之后,在非侵入式声学刺激和/或认知心理治疗之前,期间和之后进行人体的多个脑功能区域的脑电图测试;和包括治疗效果评估的相关模型是通过脑电图信号收集的,实时脑电图时空建模和神经网络特征参数的客观分析来建立,从而实现闭环的测试,分析,反馈,治疗和调制。根据该方法和装置,可以形成用于多种课程或多次会话的神经调节治疗的效果的跟踪,客观评价和预测方法,并根据预期的治疗效果,治疗时间表实施和方案参数的后续方法选择性地和定量地调制和优化选择,并且可以客观地评估和预测神经功能状态。

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