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Middle cerebral artery blood flows by combining TCD velocities and MRA diameters: in vitro and in vivo validations

机译:通过结合TCD速度和MRA直径来计算大脑中动脉的血流:体外和体内验证

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摘要

Noninvasive transcranial Doppler (TCD) is widely used for blood velocity (BV, cm/sec) measurements in the human middle cerebral artery (MCA). MCABV measurements are accepted as linear with MCA blood flow (MCABF). Magnetic resonance angiography (MRA) provides measurements of MCA lumen diameters that can be combined with TCD MCABV to calculate MCABF (ml/min). We tested the precision and accuracy of this method against a flow phantom and in vivo proximal internal carotid artery blood flow (ICABF). In vitro precision (repeated measures) and accuracy (versus time collection) gave correlations coefficients of 0.97 and 0.98; respectfully (both p<0.05). In vivo precision (repeated measures) and accuracy (versus ICABF) gave correlation coefficients of 0.90 (left and right), and 0.94 (left) and 0.93 (right) (all p<0.05). Bilateral MCABF in 35 adults were similar (left, 168±72 ml/min; right, 180±69 ml/min; p>0.05). Results suggest that blood velocity by TCD and lumen diameter by MRA can be combined to estimate absolute values of MCABF.
机译:无创经颅多普勒(TCD)被广泛用于人类大脑中动脉(MCA)的血流速度(BV,cm / sec)测量。 MCABV测量与MCA血流(MCABF)呈线性关系。磁共振血管造影(MRA)提供了MCA内腔直径的测量值,可以将其与TCD MCABV结合以计算MCABF(ml / min)。我们针对体模和体内近端颈内动脉血流(ICABF)测试了该方法的精度和准确性。体外精密度(重复测量)和准确性(相对于时间收集)得出的相关系数为0.97和0.98;分别(p <0.05)。体内精度(重复测量)和准确性(相对于ICABF)得出的相关系数分别为0.90(左和右),0.94(左)和0.93(右)(所有p <0.05)。 35名成年人的双侧MCABF相似(左,168±72 ml / min;右,180±69 ml / min; p> 0.05)。结果表明,可以将TCD的血流速度和MRA的管腔直径相结合,以估计MCABF的绝对值。

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