首页> 外文期刊>The Journal of Physiology >Activity-induced tissue oxygenation changes in rat cerebellar cortex: interplay of postsynaptic activation and blood flow.
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Activity-induced tissue oxygenation changes in rat cerebellar cortex: interplay of postsynaptic activation and blood flow.

机译:活动诱导的大鼠小脑皮质组织氧合变化:突触后激活和血流的相互作用。

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Functional neuroimaging relies on the robust coupling between neuronal activity, metabolism and cerebral blood flow (CBF), but the physiological basis of the neuroimaging signals is still poorly understood. We examined the mechanisms of activity-dependent changes in tissue oxygenation in relation to variations in CBF responses and postsynaptic activity in rat cerebellar cortex. To increase synaptic activity we stimulated the monosynaptic, glutamatergic climbing fibres that excite Purkinje cells via AMPA receptors. We used local field potentials to indicate synaptic activity, and recorded tissue oxygen partial pressure (P(tiss,O2)) by polarographic microelectrodes, and CBF using laser-Doppler flowmetry. The disappearance rate of oxygen in the tissue increased linearly with synaptic activity. This indicated that, without a threshold, oxygen consumption increased as a linear function of synaptic activity. The reduction in P(tiss,O2) preceded the rise in CBF. The time integral (area) of the negative P(tiss,O2) response increased non-linearly showing saturation at high levels of synaptic activity, concomitant with a steep rise in CBF. This was accompanied by a positive change in P(tiss,O2). Neuronal nitric oxide synthase inhibition enhanced the initial negative P(tiss,O2) response ('dip'), while attenuating the evoked CBF increase and positive P(tiss,O2) response equally. This indicates that increases in CBF counteract activity-induced reductions in P(tiss,O2), and suggests the presence of a tissue oxygen reserve. The changes in P(tiss,O2) and CBF were strongly attenuated by AMPA receptor blockade. Our findings suggest an inverse relationship between negative P(tiss,O2) and CBF responses, and provide direct in vivo evidence for a tight coupling between activity in postsynaptic AMPA receptors and cerebellar oxygen consumption.
机译:功能性神经影像依赖神经元活动,代谢和脑血流量(CBF)之间的牢固耦合,但是对神经影像信号的生理基础仍然知之甚少。我们研究了大鼠小脑皮层中与脑血流反应和突触后活动变化有关的组织氧合活动依赖性变化的机制。为了增加突触活性,我们刺激了通过AMPA受体激发Purkinje细胞的单突触,谷氨酸能爬升纤维。我们使用局部场电位来指示突触活动,并通过极谱微电极记录组织氧分压(P(tiss,O2)),并使用激光多普勒血流仪记录CBF。组织中氧的消失率随突触活性线性增加。这表明,在没有阈值的情况下,氧消耗作为突触活性的线性函数而增加。 P(tiss,O2)的降低先于CBF的升高。负P(tiss,O2)响应的时间积分(面积)呈非线性增加,表明在高水平的突触活动下饱和,同时CBF急剧上升。这伴随着P(tiss,O2)的正变化。神经元一氧化氮合酶抑制作用增强了初始的负P(tiss,O2)响应('dip'),同时减弱了诱发的CBF增加和正P(tiss,O2)响应。这表明CBF的增加抵消了活性引起的P(tiss,O2)减少,并暗示了组织氧储备的存在。 P(tiss,O2)和CBF的变化被AMPA受体阻滞剂强烈减弱。我们的发现表明负P(tiss,O2)与CBF反应之间呈反比关系,并为体内突触后AMPA受体活性与小脑耗氧量之间的紧密耦合提供了直接的证据。

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