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Transcranial pulsed magnetic field stimulation facilitates reorganization of abnormal neural circuits and corrects behavioral deficits without disrupting normal connectivity

机译:经颅脉冲磁场刺激有助于重组异常神经电路并校正行为缺陷而不会破坏正常连接

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Although the organization of neuronal circuitry is shaped by activity patterns, the capacity to modify and/or optimize the structure and function of whole projection pathways using external stimuli is poorly defined. We investigate whether neuronal activity induced by pulsed magnetic fields (PMFs) alters brain structure and function. We delivered low-intensity PMFs to the posterior cranium of awake, unrestrained mice (wild-type and ephrin-A2A5?/?) that have disorganized retinocollicular circuitry and associated visuomotor deficits. Control groups of each genotype received sham stimulation. Following daily stimulation for 14 d, we measured biochemical, structural (anterograde tracing), and functional (electrophysiology and behavior) changes in the retinocollicular projection. PMFs induced BDNF, GABA, and nNOS expression in the superior colliculus and retina of wild-type and ephrin-A2A5?/? mice. Furthermore, in ephrin-A2A5?/? mice, PMFs corrected abnormal neuronal responses and selectively removed inaccurate ectopic axon terminals to improve structural and functional organization of their retinocollicular projection and restore normal visual tracking behavior. In contrast, PMFs did not alter the structure or function of the normal projection in wild-type mice. Sham PMF stimulation had no effect on any mice. Thus, PMF-induced biochemical changes are congruent with its capacity to facilitate beneficial reorganization of abnormal neural circuits without disrupting normal connectivity and function.—Rodger, J., Mo, C., Wilks, T., Dunlop, S. A., Sherrard, R. M. Transcranial pulsed magnetic field stimulation facilitates reorganization of abnormal neural circuits and corrects behavioral deficits without disrupting normal connectivity.
机译:尽管通过活动模式的神经元电路的组织成形,但是使用外部刺激的改变和/或优化整个投影途径的结构和功能的能力。我们研究了脉冲磁场(PMF)诱导的神经元活动是否改变了脑结构和功能。我们将低强度PMF提供给唤醒后颅骨,无拘无束的小鼠(野生型和Ephrin-A2A5?//?),其具有杂乱的视网膜胶凝电路和相关的visuomotor缺陷。每种基因型的对照组接受假刺激。在每日刺激后14天刺激,我们测得的生物化学,结构(亚绕期追踪),功能(电生理学和行为)在视网膜视域投影中的变化。 PMFS在野生型和Ephrin-A2A5的优越小集和视网膜中诱导BDNF,GABA和NNOS表达?/?老鼠。此外,在Ephrin-A2A5中?/?小鼠,PMFS校正异常神经元响应,并选择性地除去异位轴突终端,以改善其视网膜透明投影的结构和功能组织,并恢复正常的视觉跟踪行为。相比之下,PMFS没有改变野生型小鼠中正常投影的结构或功能。假PMF刺激对任何小鼠没有影响。因此,PMF诱导的生化变化是一致的,其能够促进对异常神经电路的有益重组的能力,而不会破坏正常的连接和功能。-rodger,J.,Mo,C.,Wilks,T.,Dunlop,Sa,Sherrard,RM经颅脉冲磁场刺激有助于重组异常神经电路并校正行为缺陷而不会破坏正常连接。

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