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Videomicroscopy as a tool for investigation of the microcirculation in the newborn

机译:电镜作为研究新生儿微循环的工具

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The perinatal period remains a time of significant risk of death or disability. Increasing evidence suggests that this depends on microcirculatory behavior. Sidestream dark?¢????field orthogonal polarized light videomicroscopy (OPS) has emerged as a useful assessment of adult microcirculation but the values derived are not delineated for the newborn. We aimed to define these parameters in well term newborn infants. Demographic details were collected prospectively on 42 healthy term neonates ( n ????=????20 females, n ????=????22 males). OPS videomicroscopy (Microscan) was used to view ear conch skin microcirculation at 6, 24, and 72????h of age. Stored video was analyzed by a masked observer using proprietary software. There were no significant differences between the sexes for any structural parameters at any time point. There was a significant increase over time in small vessel perfusion in female infants only ( P ????=????0.009). A number of 6?¢???? and 72?¢????h measurements were significantly correlated, but differed from the 24?¢????h values. These observations confirm the utility of the ear conch for neonatal microvascular videomicroscopy. They provide a baseline for studies into the use of OPS videomicroscopy in infants. The changes observed are comparable with previous studies of term infants using these and other microvascular techniques. It is recommended that studies for examining the mature neonatal microvascular structure be delayed until 72????h of life, but studies of the physiology of cardiovascular transition should include the 24?¢????h time point after delivery.
机译:围产期仍然是重大死亡或残疾风险的时期。越来越多的证据表明,这取决于微循环行为。侧流暗场正交偏振光视频显微镜(OPS)已经出现,可以作为对成人微循环的有用评估,但并未描述新生儿的数值。我们旨在定义足月新生儿的这些参数。前瞻性收集了42例健康足月新生儿的人口统计学信息(n = 20 = 20女性,n = 22 =男性22)。用OPS视频显微镜(Microscan)观察在6、24和72小时的年龄的海螺皮肤微循环。蒙面的观察员使用专有软件对存储的视频进行了分析。在任何时间点,任何结构参数的性别之间均无显着差异。仅随着时间的推移,仅女婴的小血管灌注显着增加(P = 0.009)。数量是6个吗?与72°¢ h的测量值显着相关,但不同于24°hh的值。这些观察结果证实了耳蜗可用于新生儿微血管视频显微镜。它们为研究婴儿OPS显微镜的使用提供了基线。观察到的变化与以前使用这些和其他微血管技术进行的足月婴儿研究相当。建议将检查成熟的新生儿微血管结构的研究推迟到生命的72小时后,但有关心血管过渡生理的研究应包括分娩后24小时的时间点。

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