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首页> 外文期刊>NeuroImage >Direct cortical hemodynamic mapping of somatotopy of pig nostril sensation by functional near-infrared cortical imaging (fNCI)
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Direct cortical hemodynamic mapping of somatotopy of pig nostril sensation by functional near-infrared cortical imaging (fNCI)

机译:功能近红外皮质成像(FNCI)脊髓鼻窦鼻窦躯体骨骼的直接皮质血流动力学映射

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摘要

Functional near-infrared spectroscopy (fNIRS) is a neuroimaging technique for the noninvasive monitoring of human brain activation states utilizing the coupling between neural activity and regional cerebral hemodynam-ics. Illuminators and detectors, together constituting optodes, are placed on the scalp, but due to the presence of head tissues, an inter-optode distance of more than 2.5 cm is necessary to detect cortical signals. Although direct cortical monitoring with fNIRS has been pursued, a high-resolution visualization of hemodynamic changes associated with sensory, motor and cognitive neural responses directly from the cortical surface has yet to be realized. To acquire robust information on the hemodynamics of the cortex, devoid of signal complications in transcranial measurement, we devised a functional near-infrared cortical imaging (fNCI) technique. Here we demonstrate the first direct functional measurement of temporal and spatial patterns of cortical hemodynamics using the fNCI technique. For fNCI, inter-optode distance was set at 5 mm, and light leakage from illuminators was prevented by a special optode holder made of a light-shielding rubber sheet. fNCI successfully detected the somatotopy of pig nostril sensation, as assessed in comparison with concurrent and sequential somatosensory-evoked potential (SEP) measurements on the same stimulation sites. Accordingly, the fNCI system realized a direct cortical hemodynamic measurement with a spatial resolution comparable to that of SEP mapping on the rostral region of the pig brain. This study provides an important initial step toward realizing functional cortical hemodynamic monitoring during neurosurgery of human brains.
机译:功能近红外光谱(FNIRS)是利用神经活性与区域脑血力血管动力学偶联的人脑激活状态的非侵入性监测的神经影像技术。照明器和探测器一起构成光学器件放置在头皮上,但由于存在头组织的存在,需要大于2.5cm的电光孔距离来检测皮质信号。虽然已经追求了与FNIR的直接皮质监测,但直接从皮质表面直接与感觉,电动机和认知神经响应相关的血流动力学变化的高分辨率可视化尚未实现。要获取有关皮质血流动力学的强大信息,请利用经颅测量中的信号并发症,我们设计了一种功能近红外皮质成像(FNCI)技术。在这里,我们使用FNCI技术展示了皮质血流动力学的时间和空间模式的第一直接功能测量。对于FNCI,光电邻距离设定为5mm,通过由遮光橡胶板制成的特殊光电磁极支架防止了照明器的漏光。 FNCI成功地检测到猪鼻孔感觉的躯体,如与同一刺激位点的同时和序贯的躯体感应诱发的潜在(SEP)测量相比评估。因此,FNCI系统实现了直接皮质血液动力学测量,其空间分辨率可与猪脑训练区域的SEP映射相当。本研究为实现人脑神经外科期间实现功能性皮质血液动力学监测提供了重要的初步步骤。

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