皮质脊髓束
神经科学
脑深部刺激
电生理学
脊髓
内囊
计算机科学
锥体束
局部场电位
神经外科
人工智能
心理学
医学
磁共振成像
病理
磁共振弥散成像
外科
放射科
疾病
帕金森病
白质
作者
Jonathan Ho,Lucy Liang,Erinn M Grigsby,Josep-Maria Balaguer,Vahagn Karapetyan,David J. Schaeffer,Afonso C. Silva,T. Kevin Hitchens,Marco Capogrosso,Peter C. Gerszten,Jorge Gonzalez-Martinez,Elvira Pirondini
标识
DOI:10.1109/embc48229.2022.9871520
摘要
Traditional methods to access subcortical structures involve the use of anatomical atlases and high precision stereotaxic frames but suffer from significant variations in implantation accuracy. Here, we leveraged the use of the ROSA One(R) Robot Assistance Platform in non-human primates to study electrophysiological interactions of the corticospinal tract with spinal cord circuits. We were able to target and stimulate the corticospinal tract within the internal capsule with high accuracy and efficiency while recording spinal local field potentials and multi-unit spikes. Our method can be extended to any subcortical structure and allows implantation of multiple deep brain stimulation probes at the same time. Clinical Relevance— Our method will allow us to elucidate further roles of the corticospinal tract and its interactions with other processing centers in intact animals and in motor syndromes in the future
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