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Chaotic Dynamics in Tracing BAEP and its Application on Investigating Brainstem Malfunction

机译:跟踪BAEP中的混沌动态及其在调查脑干故障的应用

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The purpose of this study is to investigate the chaotic dynamics of tracing (dynamic) brainstem auditory evoked potential (BAEP), then to investigate the brainstem malfunction via dynamic characteristics of tracing BAEP. The radial basis function neural network (RBFNN) technique in combination with the moving window average (MWA) method was employed in order to extract the tracing BAEP from strong noise background. Data of noisy BAEP were collected from the Infantile spasm (IS) group with brainstem malfunction and the tester group respectively. The chaotic dynamics of tracing BAEP were analyzed using phase projection and correlation dimension techniques. The results of this study have demonstrated: (1) there is a much stronger determination in BAEP than in noisy BAEP shown by more deterministic phase projections and lower D{sub}2 in BAEP; (2) trajectories of BAEP never repeat and the value of correlation dimension is fractal; (3) the phase projection of BAEP for brainstem malfunction group shows more chaotic and has higher D{sub}2 than those for the tester group. The conclusions of this investigation suggest that BAEP is chaotic not deterministic and there is rich dynamics in BAEP; tracing BAEP is much more useful than noisy BAEP in describing brainstem malfunction because BAEP shows determination corresponding to brainstem function; BAEP in brainstem malfunction has more non-order dynamics than that in the tester.
机译:本研究的目的是研究追踪(动态)脑干听觉诱发电位(BAEP)的混沌动力学,然后通过追踪BAEP的动态特性来研究脑干故障。采用径向基函数神经网络(RBFNN)技术与移动窗口平均值(MWA)方法组合,以从强噪声背景中提取追踪BAEP。从脑干故障和测试仪组的婴儿痉挛(IS)组收集嘈杂的BAEP数据。使用相位投影和相关尺寸技术分析跟踪BAEP的混沌动力学。本研究的结果表明:(1)BAEP比在BAEP中更多的确定性相位投影和下部D {} 2所示的嘈杂的BAEP中有更强烈的测定; (2)BAEP的轨迹永远不会重复,相关维度的值是分形; (3)BAEP对脑干故障组的相位投影显示更多的混乱并具有比测试仪组的D {Sub} 2更高。这项调查的结论表明,BAEP是混乱而不是确定性,BAEP中有丰富的动态;在描述脑干故障时,追踪BAEP比嘈杂的BAEP更有用,因为BAEP显示了对应于脑干功能的确定; Braep in Brainstem故障具有比测试人员更加非秩序的动态。

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