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Chronically Monitoring of Optogenetic Stimulation-Induced Neural and Hemodynamic Response

机译:慢性刺激诱导的神经和血液动力学反应的慢性监测

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Understanding the link between neuronal activity and cerebral hemodynamics, known as neurovascular coupling (NVC), is critical for studying cerebral vascular dysfunctions. Optogenetics, which involves using light to control electrical activity of opsin-expressing neurons, is an approach to monitor and modulate functions of specific neurons in neuronal networks. Recent studies suggested that optogenetic stimulation induced hemodynamic response could be a good model for studying the mechanism of NVC. The aim of the study is to develop an optogenetic platform for long-term monitoring of the cerebral hemodynamics. An implantable optrode for optical stimulation and neural recording in addition to near-infrared spectroscopy (NIRS) recording have been developed. Through fiber optics, the optogenetic stimulation was introduced into ChR2-positive glutamatergic neuron of primary motor cortex (Ml). Neural and hemodynamic responses were evaluated using local field potentials (LFPs) and NIRS recordings. An in-line optical filter was applied to filter off the blue light collected from Ml and to avoid interfering the NIRS measurement. The results showed the classic waveform of evoked hemodynamic response was obtained alongside of LFPs during optogenetic stimulation. Overall, our innovative optogenetic-NIRS interface could provide long-term observation on cerebral hemodynamics during optogenetic modulation.
机译:了解神经元活性和脑血流动力学之间的联系,称为神经血管偶联(NVC),对于研究脑血管功能障碍至关重要。涉及使用光来控制Opsin-Tressing神经元的电活性的光学机构是一种监测和调节神经网络中特定神经元的功能的方法。最近的研究表明,致原刺激诱导的血液动力学反应可能是研究NVC机制的良好模型。该研究的目的是开发一种用于长期监测脑血流动力学的致灭的平台。除了近红外光谱(NIRS)记录之外,还开发了用于光学刺激和神经记录的可植入Optrope。通过光纤,将致敏刺激引入初级电机皮质(mL)的CHR2阳性谷氨酸神经元中。使用当地域电位(LFP)和NIRS录音来评估神经和血流动力学响应。施加在线光学滤波器以滤除从M1收集的蓝光并避免干扰NIR测量。结果表明,在致敏刺激期间,在LFP旁边获得了诱发血液动力学反应的经典波形。总体而言,我们创新的Optogence-Nirs界面可以在致灭调制过程中对脑血流动力学进行长期观察。

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