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Hemodynamic and electrophysiological responses to functional activation accessed by multi-wavelength optical imaging and electrophysiological recording system

机译:多波长光学成像和电生理记录系统访问功能激活的血流动力学和电生理响应

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A compact and convenient system is designed and realized for high-resolution simultaneous imaging hemodynamic parameters and recording electrophysiological signals in the brain by the combination of multi-wavelength optical imaging and electrophysiological recording system. Multi-wavelength optical imaging system uses an integration of light-emitting diode (LED which has three wavelengths) and laser diode (LD) as imaging illuminants to combine the laser speckle imaging and optical intrinsic signal imaging. Electrophysiological recording system is based on the virtual instrument technology. The spatial and temporal changes in oxy-hemoglobin, deoxy-hemoglobin, total hemoglobin concentration, cerebral blood flow, and the cerebral metabolic rate of oxygen in response to the brain activities are monitored by the multi-wavelength optical imaging system. Meanwhile the electrophysiological recording system can simultaneously collect the extra-cellular electrophysiological signals. The combination system provides the capability to simultaneously investigate hemodynamic parameters and electrophysiological signals, which may lead to a better understanding of the coupling between neuronal activation and vascular responses.
机译:通过多波长光学成像和电生理记录系统的组合,设计了一种紧凑且方便的系统,用于高分辨率同时成像血液动力学参数和脑中的电生理信号。多波长光学成像系统使用发光二极管(LED的LED)和激光二极管(LD)的集成作为成像光源,以组合激光散斑成像和光学内在信号成像。电生理记录系统基于虚拟仪器技术。通过多波长光学成像系统监测氧血红蛋白,脱氧 - 血红蛋白,脱氧血红蛋白,总血红蛋白浓度,脑血流和氧气脑代谢率的空间和时间变化。同时,电生理记录系统可以同时收集细胞外电生理信号。组合系统提供了同时研究血液动力学参数和电生理学信号的能力,这可能导致更好地了解神经元激活和血管反应之间的偶联。

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