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超声造影测量与骨骼肌营养物质和激素输送相关的微血管灌注:一项体外模型研究

Contrast-enhanced ultrasound measurement of microvascular perfusion relevant to nutrient and hormone delivery in skeletal muscle: a model study in vitro.

作者信息

Ross Renee M, Downey Kathleen, Newman John M B, Richards Stephen M, Clark Michael G, Rattigan Stephen

机构信息

Menzies Research Institute, University of Tasmania, Hobart, 7001, Australia.

出版信息

Microvasc Res. 2008 Apr;75(3):323-9. doi: 10.1016/j.mvr.2007.11.002. Epub 2007 Nov 28.

Abstract

Contrast-enhanced ultrasound (CEU) has been used to measure muscle microvascular perfusion in vivo in response to exercise and insulin. In the present study we address whether CEU measurement of capillary volume is influenced by bulk flow and if measured capillary filling rate allows discrimination of different flow pattern changes within muscle. Three in vitro models were used: (i) bulk flow rate was varied within a single length of capillary tubing; (ii) at constant bulk flow, capillary volume was increased 3-fold by joining lengths of capillary in series, and compared to a single length; and (iii) at constant bulk flow, capillary volume was increased by sharing flow between a number of lengths of identical capillaries in parallel. The contrast medium for CEU was gas-filled albumin microbubbles. Pulsing interval (time) versus acoustic-intensity curves were constructed and from these, capillary volume and capillary filling rate were calculated. CEU estimates of capillary volume were not affected by changes in bulk flow. Furthermore, as CEU estimates of capillary volume increased, measures of capillary filling rate decreased, regardless of whether capillaries were connected in series or parallel. Therefore, CEU can detect a change in filling rate of the microvascular volume under measurement, but it can not be used to discriminate between different flow patterns within muscle that might account for capillary recruitment in vivo.

摘要

超声造影(CEU)已被用于在体内测量运动和胰岛素作用下的肌肉微血管灌注。在本研究中,我们探讨了CEU对毛细血管容积的测量是否受总体流量影响,以及所测量的毛细血管充盈率是否能够区分肌肉内不同的血流模式变化。我们使用了三种体外模型:(i)在单一长度的毛细管内改变总体流量;(ii)在总体流量恒定的情况下,通过将毛细管首尾相连使毛细血管容积增加3倍,并与单根毛细管进行比较;(iii)在总体流量恒定的情况下,通过在多个相同的平行毛细管之间分流使毛细血管容积增加。用于CEU的造影剂是充气白蛋白微泡。构建脉冲间隔(时间)与声强曲线,并据此计算毛细血管容积和毛细血管充盈率。CEU对毛细血管容积的估计不受总体流量变化的影响。此外,无论毛细血管是串联还是并联,随着CEU对毛细血管容积估计值的增加,毛细血管充盈率的测量值均下降。因此,CEU能够检测所测量的微血管容积充盈率的变化,但无法用于区分肌肉内可能导致体内毛细血管募集的不同血流模式。

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