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Model of the Pathological Changes in the Thalamo-Cortical Motor Circuit in Parkinsonism

Model of the Pathological Changes in the Thalamo-Cortical Motor Circuit in Parkinsonism
帕金森病丘脑皮质运动回路病理变化模型
批准号:
1951682
负责人:
Thomas Wichmann
金额:
$17.52万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2020
资助国家:
美国
项目状态:
已结题
起止时间:
2020-06-01 至 2024-05-31

项目摘要

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中文摘要
翻译
灵长类动物的运动部分是由涉及大脑三个部分的大脑回路控制的:运动皮层、基底神经节和丘脑。这些回路的活动变化导致了帕金森氏病等运动障碍中的异常。虽然基底神经节的活动变化是明确的,但对帕金森病相关的灵长类动物基底神经节连接的运动丘脑和皮质的变化知之甚少。为了了解人类的这些变化,重要的是研究灵长类动物的回路功能障碍,因为这些神经元区域在连接和组成方面与其他物种(如啮齿动物)不同。该项目旨在以传统建模方法无法实现的方式增强对这些网络动态的理解,传统建模方法通常使用大量耦合方程。一旦动力学被描述,新的治疗方法,旨在正常丘脑活动在帕金森病subjects.Mathematical模型的安全性和effectiveness可能会被开发和优化,有助于了解这些异常的基底神经节丘脑皮质网络的连接。该项目将产生一个新的基底神经节-丘脑-皮质通路的多尺度模型,该模型将反映单个神经元的非线性性质,同时利用每个核的固有特征。第一个目标将是创建一个功能齐全的丘脑皮层回路模型,可以定位和检查健康和患病的大脑活动状态之间的分歧。特别感兴趣的是参数空间中的轨迹,可以让帕金森病患者恢复到稳定的健康状态,使研究人员有可能确定新的治疗机会。接下来,由于灵长类特异性丘脑中间神经元目前无法在体内确定靶向,因此该模型将用于检查这些中间神经元对系统的作用。最后,该模型将使用来自健康和帕金森非人灵长类动物的神经元记录的广泛数据集进行验证。与记录数据的比较将数学模型的分析限制在参数空间的生理上合理的区域。该奖项反映了NSF的法定使命,并被认为是值得通过使用基金会的智力价值和更广泛的影响审查标准进行评估的支持。
英文摘要
Movement in primates is, in part, controlled by brain circuits that involve three parts of the brain: the motor cortex, basal ganglia, and thalamus. Activity changes in these circuits contribute to the abnormalities seen in movement disorders such Parkinson’s disease. While activity changes in the basal ganglia are well defined, little is known about parkinsonism-associated changes in the primate basal ganglia-connected motor thalamus and cortex. To understand these changes in humans it is important to study the circuit dysfunction in primates, as these neuronal regions differ in both connections and composition from other species such as rodents. This project aims to enhance understanding of these network dynamics in ways that cannot be accomplished with conventional modeling approaches that often use an unwieldy number of coupled equations. Once the dynamics are described, new treatment approaches directed at normalizing thalamic activity in parkinsonian subjects may be developed and optimized for safety and effectiveness.Mathematical models of brain circuits are helpful to understand these abnormalities within the basal ganglia-thalamocortical network of connections. This project will generate a new multiscale model of the basal ganglia-thalamo-cortical pathways that will reflect the nonlinear nature of individual neurons while taking advantage of the inherent features of each nucleus. The first objective will be to create a fully functional thalamocortical loop model that can locate and examine the bifurcations between healthy and diseased brain activity states. Of particular interest are the trajectories in parameter space that could allow a parkinsonian subject to return back to the stable healthy state, allowing possibilities for researchers to identify new therapeutic opportunities. Next, since the primate-specific thalamic interneurons cannot currently be targeted with certainty in vivo, the model will be used to examine the roles that these interneurons have on the system. Finally, the model will be validated using an extensive dataset of neuronal recordings from healthy and parkinsonian nonhuman primates. Comparison to the recorded data will restrict the analysis of the mathematical model to a physiologically plausible region of the parameter space.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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