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首页> 外文期刊>The European Journal of Neuroscience >Close temporal coupling of neuronal activity and tissue oxygen responses in rodent whisker barrel cortex.
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Close temporal coupling of neuronal activity and tissue oxygen responses in rodent whisker barrel cortex.

机译:鼠须晶须皮层中神经元活动和组织氧反应的紧密时间耦合。

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摘要

Neuronal activity elicits metabolic and vascular responses, during which oxygen is first consumed and then supplied to the tissue via an increase in cerebral blood flow. Understanding the spatial and temporal dynamics of blood and tissue oxygen (To) responses following neuronal activity is crucial for understanding the physiological basis of functional neuroimaging signals. However, our knowledge is limited because previous To measurements have been made at low temporal resolution (>100 ms). Here we recorded To at high temporal resolution (1 ms), simultaneously with co-localized field potentials, at several cortical depths from the whisker region of the somatosensory cortex in anaesthetized rats and mice. Stimulation of the whiskers produced rapid, laminar-specific changes in To. Positive To responses (i.e. increases) were observed in the superficial layers within 50 ms of stimulus onset, faster than previously reported. Negative To responses (i.e. decreases) were observed in the deeper layers, with maximal amplitude in layer IV, within 40 ms of stimulus onset. The amplitude of the negative, but not the positive, To response correlated with local field potential amplitude. Disruption of neurovascular coupling, via nitric oxide synthase inhibition, abolished positive To responses to whisker stimulation in the superficial layers and increased negative To responses in all layers. Our data show that To responses occur rapidly following neuronal activity and are laminar dependent.
机译:神经元活动引起代谢和血管反应,在此期间首先消耗氧气,然后通过脑血流量的增加将氧气提供给组织。了解神经元活动后血液和组织氧(To)响应的时空动态对于了解功能性神经影像信号的生理基础至关重要。但是,我们的知识有限,因为以前的To测量是在低时间分辨率(> 100 ms)下进行的。在这里,我们在麻醉的大鼠和小鼠中,从体感皮质的晶须区域的几个皮质深度,以高时间分辨率(1 ms)记录了To,同时存在共定位的场电势。晶须的刺激在To中产生快速的,层流特定的变化。在刺激发作后的50毫秒内,在表层中观察到对反应的阳性反应(即增加),比以前报道的要快。在刺激发作后40毫秒内,在较深的层中观察到了对负响应(即减小),在IV层中振幅最大。负(而非正)To响应的幅度与局部场电势幅度相关。通过一氧化氮合酶抑制神经血管耦合的破坏,消除了表层对晶须刺激的正响应,而在所有层均增加了负响应。我们的数据表明,To反应在神经元活动后迅速发生,并且是层流依赖性的。

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