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评估激光散斑对比成像技术在仔猪皮质微循环中的应用。

Evaluation of laser-speckle contrast image analysis techniques in the cortical microcirculation of piglets.

机构信息

Department of Physiology, Faculty of Medicine, University of Szeged, Szeged, Hungary.

出版信息

Microvasc Res. 2012 May;83(3):311-7. doi: 10.1016/j.mvr.2012.01.003. Epub 2012 Jan 28.

Abstract

A new laser speckle-contrast analysis (LASCA) technique based on multi-exposure imaging was employed to simultaneously study pial arteriolar responses with cerebrocortical perfusion changes to various vasodilator (5-10% CO(2) ventilation, bradykinin (1-10 μM), N-methyl-D-aspartate (100 μM)) vasoconstrictor (10-100 μM noradrenaline, 1M KCl), or neutral (2.1% H(2) ventilation) stimuli as well as to asphyxia in the newborn piglet. Anesthetized, ventilated animals (n=20) were fitted with closed cranial windows. Multiple exposure laser-speckle image series (1-100 ms) were obtained using a near infrared diode laser (λ=808 nm). The autocorrelation decay time (τ) of speckle fluctuations was determined over pial arterioles and parenchymal areas to express 1/τ being proportional to blood flow velocity by two different LASCA techniques: our novel multi-exposure or a single exposure (2 and 20 ms) approach. 1/τ values yielded by different LASCA techniques were not significantly different at most points. LASCA easily detected both increases and decreases in cortical blood flow (CoBF). Cortical 1/τ changes to hypercapnia closely matched quantitative CoBF data determined previously, and were also in accordance with increases of pial arteriolar blood flow, calculated from arteriolar flow velocity and cross sectional area changes. In summary, LASCA emerges as an appealing method to simultaneously study microvascular reactivity and cortical perfusion changes in the piglet.

摘要

一种新的基于多曝光成像的激光散斑对比分析 (LASCA) 技术被用于同时研究脑皮质灌注变化与各种血管扩张剂(5-10% CO2 通气、缓激肽(1-10 μM)、N-甲基-D-天冬氨酸(100 μM))、血管收缩剂(10-100 μM 去甲肾上腺素、1M KCl)或中性(2.1% H2 通气)刺激以及新生仔猪窒息的软脑膜小动脉反应。麻醉、通气的动物(n=20)被安装了封闭的颅窗。使用近红外二极管激光(λ=808nm)获得多个曝光激光散斑图像系列(1-100ms)。通过两种不同的 LASCA 技术确定软脑膜小动脉和实质区域的散斑波动的自相关衰减时间(τ),以表示 1/τ 与血流速度成正比:我们的新型多曝光或单曝光(2 和 20ms)方法。在大多数情况下,不同 LASCA 技术的 1/τ 值没有显著差异。LASCA 很容易检测到皮质血流量的增加和减少。高碳酸血症引起的皮质 1/τ 变化与先前确定的定量 CoBF 数据非常吻合,并且与软脑膜小动脉血流的增加也一致,这是从小动脉血流速度和横截面积的变化计算得出的。总之,LASCA 是一种很有吸引力的方法,可以同时研究仔猪的微血管反应和皮质灌注变化。

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