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首页> 外文期刊>Brain & Development >Changes in cerebral oxygenation and hemodynamics during cranial ultrasound in preterm infants.
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Changes in cerebral oxygenation and hemodynamics during cranial ultrasound in preterm infants.

机译:早产儿颅内超声检查中脑氧合和血流动力学的变化。

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摘要

OBJECTIVES: To evaluate whether application of a transducer on the anterior fontanelle during cranial ultrasound (US) examination effects cerebral hemodynamics and oxygenation in preterm infants. STUDY DESIGN*: During cranial US examination, changes in cerebral blood oxygenation (cHbD) and cerebral blood volume (CBV) were assessed using near infrared spectrophotometry (NIRS) in 76 infants (GA 30.7 (4.1)wk, BW 1423 (717)g) within two days after birth. Ten of these infants (GA 29.1 (1.6)wk, BW 1092 (455)g) were studied again at a postnatal age of one week. RESULTS*: We obtained stable and consistent NIRS registrations in 54 infants within the first two days after birth. Twenty-eight of these infants showed a decrease in cHbD (0.59 (0.54) micromol/100g) during the scanning procedure while CBV did not change. Twenty-four infants showed no changes in NIRS and 2 infants showed an atypical NIRS response during cranial US examination. At the postnatal age of one week, stable and consistent NIRS registrations were obtained in 7 infants. None of these infants showed changes in NIRS variables during cranial US examination. CONCLUSIONS: Application of an US transducer on the anterior fontanelle causes changes in cerebral oxygenation and hemodynamics in a substantial number of preterm infants. ( *values are expressed as median (interquartile range)).
机译:目的:评估在颅骨超声检查中在前font上使用换能器是否会影响早产儿的脑血流动力学和氧合作用。研究设计*:在颅内超声检查中,使用近红外分光光度法(NIRS)对76例婴儿(GA 30.7(4.1)wk,BW 1423(717)g)的脑血氧含量(cHbD)和脑血容量(CBV)的变化进行了评估。 )在出生后两天内。在出生后的一周内再次对其中10例婴儿(GA 29.1(1.6)wk,BW 1092(455)g)进行了研究。结果*:我们在出生后的前两天内对54名婴儿获得了稳定且一致的NIRS注册。在扫描过程中,这些婴儿中有28名婴儿的cHbD降低(0.59(0.54)micromol / 100g),而CBV不变。在颅骨超声检查中,有24例婴儿的NIRS无变化,有2例婴儿的NIRS反应非典型。在出生后1周的年龄中,有7名婴儿获得了稳定且一致的NIRS注册。这些婴儿在颅内超声检查中均未显示NIRS变量发生变化。结论:在前font门上使用US换能器会导致大量早产儿脑氧合和血流动力学发生变化。 (*值表示为中位数(四分位间距))。

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