不同靶向治疗方案对丘脑皮质双向交互模型中失神癫痫的调控机制。

IF 3 4区 医学 Q2 NEUROSCIENCES
Neural Plasticity Pub Date : 2021-09-16 eCollection Date: 2021-01-01 DOI:10.1155/2021/1198072
Hudong Zhang, Xiaolong Tan, Yufeng Pan, Yuan Chai
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引用次数: 0

摘要

近年来的临床研究发现,失神发作的峰波放电(SWD)范围由小的皮质区域向大的丘脑皮质网络转变,这也得到了理论模拟的证实。最好的生物物理学解释是,在耦合的皮质-丘脑回路和丘脑皮质回路之间存在相互作用。为了与实验结果相一致,更好地描述这一现象,我们构建了一个带有双向通道的丘脑皮质耦合模型(CTMBC)来解释失神发作的原因,这些原因是通过神经通路的双向交流原理联系起来的。通过调节双向通路的耦合强度,可以再现尖峰波放电。通过深部脑刺激(DBS)、电荷平衡双相脉冲(CBBP)、协调复位刺激(CRS) 1:0和(CRS) 3:2四种不同的靶向治疗方案,将失神癫痫的调控机制进一步应用于CTMBC。新的CTMBC模型表明,双向交互通道中的神经多样性可以为丘脑皮质网络的双向通信模式和发病机制的假设验证提供理论参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Regulatory Mechanism for Absence Seizures in Bidirectional Interactive Thalamocortical Model via Different Targeted Therapy Schemes.

Regulatory Mechanism for Absence Seizures in Bidirectional Interactive Thalamocortical Model via Different Targeted Therapy Schemes.

Regulatory Mechanism for Absence Seizures in Bidirectional Interactive Thalamocortical Model via Different Targeted Therapy Schemes.

Regulatory Mechanism for Absence Seizures in Bidirectional Interactive Thalamocortical Model via Different Targeted Therapy Schemes.

Recent clinical practice has found that the spike-wave discharge (SWD) scopes of absence seizures change from small cortical region to large thalamocortical networks, which has also been proved by theoretical simulation. The best biophysics explanation is that there are interactions between coupled cortico-thalamic and thalamocortical circuits. To agree with experiment results and describe the phenomena better, we constructed a coupled thalamocortical model with bidirectional channel (CTMBC) to account for the causes of absence seizures which are connected by the principle of two-way communication of neural pathways. By adjusting the coupling strength of bidirectional pathways, the spike-wave discharges are reproduced. Regulatory mechanism for absence seizures is further applied to CTMBC via four different targeted therapy schemes, such as deep brain stimulation (DBS), charge-balanced biphasic pulse (CBBP), coordinated reset stimulation (CRS) 1 : 0, and (CRS) 3 : 2. The new CTMBC model shows that neurodiversity in bidirectional interactive channel could supply theory reference for the bidirectional communication mode of thalamocortical networks and the hypothesis validation of pathogenesis.

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来源期刊
Neural Plasticity
Neural Plasticity NEUROSCIENCES-
CiteScore
6.80
自引率
0.00%
发文量
77
审稿时长
16 weeks
期刊介绍: Neural Plasticity is an international, interdisciplinary journal dedicated to the publication of articles related to all aspects of neural plasticity, with special emphasis on its functional significance as reflected in behavior and in psychopathology. Neural Plasticity publishes research and review articles from the entire range of relevant disciplines, including basic neuroscience, behavioral neuroscience, cognitive neuroscience, biological psychology, and biological psychiatry.
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