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Transcranial Doppler in Autonomic Testing: Standards and clinical applications

机译:自主检查中的经颅多普勒检查:标准和临床应用

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摘要

When cerebral blood flow falls below a critical limit, syncope occurs and if prolonged ischemia leads to neuronal death. The cerebral circulation has its own complex finely tuned autoregulatory mechanisms to ensure blood supply to the brain can meet the high metabolic demands of the underlying neuronal tissue. This involves the interplay between myogenic and metabolic mechanisms, input from noradrenergic and cholinergic neurons, and the release of vasoactive substrates including adenosine from astrocytes and nitric oxide from the endothelium. The transcranial Doppler (TCD) is a non-invasive technique that provides real-time measurements of cerebral blood flow velocity. TCD can be very useful in the work up of a patient with recurrent syncope. Cerebral autoregulatory mechanisms help defend the brain against hypoperfusion when perfusion pressure falls on standing. Syncope occurs when hypotension is severe and susceptibility increases with hyperventilation, hypocapnia and cerebral vasoconstriction. We review clinical standards for the acquisition and analysis of TCD signals in the autonomic laboratory and the multiple methods available to assess cerebral autoregulation. We also describe the control of cerebral blood flow in autonomic disorders and functional syndromes.
机译:当脑血流量降至临界极限以下时,就会发生晕厥,如果长时间的缺血会导致神经元死亡。脑循环具有其自身复杂的微调自动调节机制,以确保向大脑的血液供应可以满足基础神经元组织的高代谢需求。这涉及成肌和代谢机制,去甲肾上腺素能神经元和胆碱能神经元的输入以及血管活性底物(包括星形胶质细胞中的腺苷和内皮中的一氧化氮)的释放之间的相互作用。经颅多普勒(TCD)是一种非侵入性技术,可提供脑血流速度的实时测量。在复发性晕厥患者的检查中,TCD可能非常有用。当站立时的灌注压力下降时,脑自动调节机制有助于保护大脑免受灌注不足。低血压严重时会出现晕厥,通气过度,低碳酸血症和脑血管收缩会增加易感性。我们回顾了在自主实验室中对TCD信号的采集和分析的临床标准,以及可用于评估大脑自动调节的多种方法。我们还描述了在自主神经疾病和功能综合征中对脑血流的控制。

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