胎儿羊对体感刺激的脑血流动力学反应

S. Nakamura, D. Walker, F. Wong
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引用次数: 14

摘要

脑血流动力学对神经刺激的反应已经在动物和临床研究中进行了广泛的研究,包括成人和儿科人群,但对胎儿脑的脑血流动力学功能反应知之甚少。本研究描述了用近红外光谱测量胎儿羊对体感刺激的脑血流动力学反应。当体感刺激持续时间增加时,可能是由于长时间刺激导致脑血管收缩,胎羊脑血流动力学反应从阳性(氧合血红蛋白(oxyHb)增加)反应模式转变为阴性或双相反应模式。与成人研究相反,我们发现胎儿脑血流量和氧血红蛋白的变化在高碳酸血症期间响应体感觉刺激而正增加。我们认为这与高碳酸血症期间胎儿大脑血管阻力降低和脑血管系统募集有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cerebral haemodynamic response to somatosensory stimulation in near‐term fetal sheep
Cerebral haemodynamic response to neural stimulation has been extensively investigated in animal and clinical studies, in both adult and paediatric populations, but little is known about cerebral haemodynamic functional response in the fetal brain. The present study describes the cerebral haemodynamic response measured by near‐infrared spectroscopy to somatosensory stimulation in fetal sheep. The cerebral haemodynamic response in the fetal sheep brain changes from a positive (increase in oxyhaemoglobin (oxyHb)) response pattern to a negative or biphasic response pattern when the duration of somatosensory stimulation is increased, probably due to cerebral vasoconstriction with prolonged stimulations. In contrast to adult studies, we have found that changes in fetal cerebral blood flow and oxyHb are positively increased in response to somatosensory stimulation during hypercapnia. We propose this is related to reduced vascular resistance and recruitment of cerebral vasculature in the fetal brain during hypercapnia.
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