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Variability of human brain and muscle optical pathlength in different experimental conditions

机译:不同实验条件下人脑和肌肉光程的变化

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Abstract: Pathlength can be evaluated by measuring the time taken from a picosecond (psec) near infrared (IR) laser pulse to cross tissue. Differential pathlength factor (DPF) is calculated by dividing the mean pathlength by the inter-fiber distance. Data on DPF variability on humans are scarce. We investigated the forehead and forearm DPF in resting conditions and dynamically during brain hypoxic hypoxia, muscle ischemia and voluntary isometric exercise. At 3 cm inter optode spacing DPF at 800 nm was 4.3 $POM 0.2 (n $EQ 14, mean $POM SD) on the forearm, and 6.5 $POM 0.5 (n $EQ 8) on the forehead. Brain, muscle, and breast DPF values were almost constant over the inter optode spacing 2.5 - 4 cm. DPF was roughly constant in the central region of forehead. DPF drastically decreased under the fronto-temporal junction for the presence of muscle in the optical field. DPF decreased 5 - 10% during forearm ischemia with and without maximal voluntary contraction and during brain hypoxic hypoxia. !15
机译:摘要:可以通过测量从皮秒(psec)的近红外(IR)激光脉冲到穿过组织的时间来评估光程。差分路径长度因子(DPF)通过将平均路径长度除以光纤间距离来计算。关于人的DPF变异性的数据很少。我们研究了静息状态下的前额和前臂DPF,并在脑缺氧性缺氧,肌肉缺血和自愿等距锻炼中动态地进行了调查。在3 cm处,在800 nm处的光二极管间距DPF在前臂为4.3 $ POM 0.2(n $ EQ 14,平均为$ POM SD),在前额为6.5 $ POM 0.5(n $ EQ 8)。脑,肌肉和乳房的DPF值在2.5-4 cm的光间隔之间几乎保持不变。 DPF在前额中央区域大致恒定。由于在视场中存在肌肉,DPF在额颞交界处急剧下降。在有无最大自愿收缩的情况下以及在脑缺氧性缺氧期间,前臂缺血期间DPF降低了5-10%。 !15

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