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脑血流中活动依赖性增加的背景敏感性。

Context sensitivity of activity-dependent increases in cerebral blood flow.

作者信息

Caesar Kirsten, Gold Lorenz, Lauritzen Martin

机构信息

Department of Medical Physiology, The Panum Institute, University of Copenhagen, Blegdamsvej 3, 2000 Copenhagen N, Denmark.

出版信息

Proc Natl Acad Sci U S A. 2003 Apr 1;100(7):4239-44. doi: 10.1073/pnas.0635075100. Epub 2003 Mar 24.

Abstract

Functional neuroimaging in humans is used widely to study brain function in relation to human disease and cognition. The neural basis of neuroimaging signals is probably synaptic activity, but the effect of context, defined as the interaction between synaptic inhibition, excitation, and the electroresponsive properties of the targeted neurons, is not well understood. We examined here the effect of interaction of synaptic excitation and net inhibition on the relationship between electrical activity and vascular signals in the cerebellar cortex. We show that stimulation of the net inhibitory parallel fibers simultaneously with stimulation of the excitatory climbing fibers leads to a further rise in total local field potentials (LFP) and cerebral blood flow (CBF) amplitudes, not a decrease, as predicted from theoretical studies. However, the combined stimulation of the parallel and climbing fiber systems produced changes in CBF and LFP that were smaller than their algebraic sum evoked by separate stimulation of either system. This finding was independent of the starting condition, i.e., whether inhibition was superimposed on a state of excitation or vice versa. The attenuation of the increases in LFP and CBF amplitudes was similar, suggesting that synaptic activity and CBF were coupled under these conditions. The result might be explained by a relative neuronal refractoriness that relates to the intrinsic membrane properties of Purkinje cells, which determine the recovery time of these cells. Our work implies that neuronal and vascular signals are context-sensitive and that their amplitudes are modulated by the electroresponsive properties of the targeted neurons.

摘要

功能性神经成像在人类中被广泛用于研究与人类疾病和认知相关的脑功能。神经成像信号的神经基础可能是突触活动,但情境的影响,即突触抑制、兴奋与目标神经元的电反应特性之间的相互作用,尚未得到充分理解。我们在此研究了突触兴奋与净抑制的相互作用对小脑皮质电活动与血管信号之间关系的影响。我们发现,在刺激兴奋性攀缘纤维的同时刺激净抑制性平行纤维会导致总的局部场电位(LFP)和脑血流量(CBF)振幅进一步升高,而不是如理论研究所预测的那样降低。然而,平行纤维和攀缘纤维系统的联合刺激所产生的CBF和LFP变化小于单独刺激任一系统所诱发的代数和。这一发现与起始条件无关,即无论抑制是叠加在兴奋状态上还是反之亦然。LFP和CBF振幅增加的衰减相似,表明在这些条件下突触活动和CBF是耦合的。这一结果可能由与浦肯野细胞固有膜特性相关的相对神经元不应期来解释,这些特性决定了这些细胞的恢复时间。我们的工作表明,神经元和血管信号对情境敏感,并且它们的振幅受目标神经元的电反应特性调节。

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Context sensitivity of activity-dependent increases in cerebral blood flow.脑血流中活动依赖性增加的背景敏感性。
Proc Natl Acad Sci U S A. 2003 Apr 1;100(7):4239-44. doi: 10.1073/pnas.0635075100. Epub 2003 Mar 24.

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