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Development of semi-chronic microdrive system for large-scale circuit mapping in macaque mesolimbic and basal ganglia systems

机译:猕猴中脑和基底神经节系统中用于大规模电路映射的半同步微驱动系统的开发

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The development of novel neurotechnologies for treating refractory neuropsychiatry disorders depends on understanding and manipulating the dynamics of neural circuits across large-scale brain networks. The mesolimbic pathway plays an essential role in reward processing and mood regulation and disorders of this pathway underlie many neuropsychiatric disorders. Here, we present the design of a customized semi-chronic microdrive array that precisely targets the anatomical structures of non-human primate (NHP) mesolimbic and basal ganglia systems. We present an integrated experimental paradigm that uses this device to map and manipulate large-scale neural circuits. The system combines electrophysiology, spatiotemporal multisite patterned intracortical microstimulation (ICMS), and diffusion tractography. We propose that this system provides a flexible platform for exploring and identifying neural signatures which can serve as novel targets for closed-loop stimulation in the clinical treatment of neuropsychiatric disorders.
机译:用于治疗难治性神经精神疾病的新型神经技术的发展取决于对大型大脑网络中神经回路动力学的理解和操纵。中脑边缘的途径在奖励过程和情绪调节中起着至关重要的作用,并且该途径的疾病是许多神经精神疾病的基础。在这里,我们介绍了一种定制的半同步微驱动器阵列的设计,该阵列精确地针对了非人类灵长类动物(NHP)中脑边缘和基底神经节系统的解剖结构。我们提出了一个集成的实验范式,使用该设备可以映射和操纵大规模的神经回路。该系统结合了电生理学,时空多位模式皮层内微刺激(ICMS)和扩散束摄影术。我们建议该系统提供了一个灵活的平台,用于探索和识别神经特征,可以作为神经精神疾病的临床治疗中的闭环刺激的新目标。

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