Department of Automatic Control, College of Mechatronics and Automation, National University of Defense Technology, Changsha, Hunan 410073, PR China.
Brain Res Bull. 2011 Feb 1;84(2):157-62. doi: 10.1016/j.brainresbull.2010.12.004. Epub 2010 Dec 13.
Functional brain research has shown that the cerebral response to an external stimulus contains positive and negative signals. The positive signals are well studied, whereas explanations for the negative signals remain controversial. In this study, negative response was investigated using intrinsic optical imaging (OI) and a multi-electrode array (MEA) in rat with a hindlimb stimulus. The negative hemodynamic response (NHR) signals were measured by OI in contralateral and ipsilateral primary somatosensory forelimb, primary and secondary motor, and primary and secondary visual cortex areas. The spatial presentation of NHR signals showed diversity across subjects under an identical experimental paradigm. The NHR signals in different cortical areas had similar time courses but were in the opposite direction of the positive hemodynamic response (PHR) signals, and the amplitude of NHR signals was significantly smaller than that of PHR signals. Electrophysiological recording using an MEA in an NHR cortex area showed that spike activities decreased significantly during external stimulation, suggesting that the neuronal activity reduction has a strong relationship with the NHR signals. Our results highlight the importance of a negative response in a hemodynamics-based interpretation of neuroimaging signals.
功能脑研究表明,大脑对外界刺激的反应包含正、负两种信号。正信号已经得到了深入研究,而负信号的解释仍存在争议。本研究采用内源性光学成像(OI)和多电极阵列(MEA)在大鼠后腿刺激模型中,对负反应进行了研究。通过 OI 测量了对侧和同侧初级体感前肢、初级和次级运动以及初级和次级视觉皮层区域的负血流动力学反应(NHR)信号。在相同的实验范式下,NHR 信号在不同的个体之间呈现出多样性。不同皮层区域的 NHR 信号具有相似的时间进程,但与正血流动力学反应(PHR)信号的方向相反,NHR 信号的幅度明显小于 PHR 信号。在 NHR 皮层区域使用 MEA 进行的电生理记录显示,在外部刺激期间,尖峰活动显著减少,这表明神经元活动的减少与 NHR 信号有很强的关系。我们的研究结果强调了在基于血流动力学的神经影像学信号解释中负反应的重要性。