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Functional localization of the cortical motor area in the brain based on wavelet analysis of slow cortical potential

机译:基于小波慢势电势的小波分析,大脑皮质运动区的功能定位

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The method for rapidly, precisely and non-invasively localizing functional regions of the brain is a problem in neuromedicine research. Cortical electrostimulation is the optimal localization method during brain surgery, with a degree of accuracy of approximately 5 mm. However, electrostimulation can damage the cerebral cortex, trigger epilepsy, cause missed detection, and extend the operation time. Studies are required to determine whether cortical motor regions can be localized by wavelet analysis from slow cortical potentials (SCP). In this study, based on wavelet analysis of SCP from electrocorticograms(ECoG), a selection of algorithms for classification of the SCP in the motor regions utilizing experimental data was verified. Results demonstrated a characteristic quantity of energy ratio in the reconstructed signal was filtered in the a8 (0∼1.95 Hz) band prior to and following motion events. A characteristic threshold was considered to be 1.6. The accuracy of localization detection was 84%. The degree of accuracy was less than 5 mm. The present study avoided the problems of cerebral cortex injury and epilepsy onset, with an operation time of 60 seconds. Therefore, wavelet analysis on SCP is feasible for localizing cortical motor regions. Furthermore, this localization technique is accurate, safe and rapid. Key Words: functional localization; electrocorticogram; slow cortical potential; event-related potential; wavelet analysis
机译:快速,精确和无创地定位大脑功能区域的方法是神经医学研究中的一个问题。皮质电刺激是脑外科手术中的最佳定位方法,准确度约为5毫米。但是,电刺激会损害大脑皮层,引发癫痫,导致漏诊,并延长手术时间。需要进行研究以确定是否可以通过从慢速皮质电位(SCP)进行小波分析来确定皮质运动区域是否可以定位。在这项研究中,基于对来自皮质电图(ECoG)的SCP的小波分析,验证了利用实验数据对运动区域SCP进行分类的算法选择。结果表明,在运动事件之前和之后,在a8(0〜1.95 Hz)频带中对重构信号中的能量比的特征量进行了滤波。特征阈值被认为是1.6。定位检测的准确性为84%。准确度小于5毫米。本研究避免了大脑皮层损伤和癫痫发作的问题,手术时间为60秒。因此,对SCP进行小波分析对于确定皮层运动区域是可行的。此外,这种定位技术是准确,安全和快速的。关键词:功能本地化脑电图皮质电位慢;事件相关的潜力;小波分析

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