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Assessment of cerebral autoregulation using continuous-wave near-infrared spectroscopy during squat-stand maneuvers in subjects with symptoms of orthostatic intolerance

机译:在体位不耐症患者的下蹲站立动作中使用连续波近红外光谱法评估大脑自动调节功能

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摘要

Orthostatic lightheadedness in healthy young adults often leads to syncope in severe cases. One suggested underlying mechanism of orthostatic lightheadedness is a drop in transient blood pressure (BP); however, a decrease in BP does not always lead to a drop in cerebral blood flow (CBF) due to cerebral autoregulation (CA). We present a direct assessment method of CA using a multichannel continuous-wave near-infrared spectroscopy (CW-NIRS) device that measures the temporal changes in oxy- and deoxy-hemoglobin concentrations in the prefrontal cortex. Twenty healthy young adults were recruited. During the experiment, continuous beat-to-beat BP and heart rate were simultaneously measured during repetitive squat-stand maneuvers. We introduce a new metric termed ‘time-derivative hemodynamic model (DHbT)’, which is the time-derivative of total-hemoglobin concentration change that reflects the changes of cerebral blood volume and CBF. Although the absolute levels and the variations of systolic and diastolic BPs and mean arterial pressure showed no significant difference between the two groups, the proposed model showed a distinct difference in slope variation and response time of DHbT between the subjects with frequent symptom of orthostatic intolerance and the healthy control subjects. Thus, these results clearly demonstrate the feasibility of using CW-NIRS devices as a CA performance assessment tool.
机译:在健康的成年人中体位性头晕常在严重的情况下导致晕厥。提示立位性头晕的潜在机制之一是瞬态血压(BP)下降。然而,由于脑自动调节(CA),BP的下降并不总是导致脑血流量(CBF)下降。我们提出了一种使用多通道连续波近红外光谱仪(CW-NIRS)的CA的直接评估方法,该设备可测量额叶皮层中氧和脱氧血红蛋白浓度的时间变化。招募了二十名健康的年轻成年人。在实验过程中,在重复的深蹲动作中同时测量了连续搏动的血压和心率。我们引入了一种称为“时间导数血流动力学模型(DHbT)”的新指标,它是反映血红蛋白和脑血流量变化的总血红蛋白浓度变化的时间导数。尽管两组之间的绝对水平以及收缩压和舒张压的变化以及平均动脉压没有显着差异,但是该模型显示了直立性不耐症和高频率症状的受试者之间的斜率变化和DHbT的响应时间有明显差异。健康对照者。因此,这些结果清楚地证明了使用CW-NIRS设备作为CA性能评估工具的可行性。

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