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通过超声在体内定量的气泡与从高压减压后的兔子死后检测到的气体量相关。

Bubbles Quantified In vivo by Ultrasound Relates to Amount of Gas Detected Post-mortem in Rabbits Decompressed from High Pressure.

作者信息

Bernaldo de Quirós Yara, Møllerløkken Andreas, Havnes Marianne B, Brubakk Alf O, González-Díaz Oscar, Fernández Antonio

机构信息

Veterinary Histology and Pathology, Department of Morphology, Veterinary School, Institute of Animal Health, University of Las Palmas de Gran Canaria Las Palmas, Spain.

Department of Circulation and Medical Imaging, Norwegian University of Science and Technology Trondheim, Norway.

出版信息

Front Physiol. 2016 Jul 21;7:310. doi: 10.3389/fphys.2016.00310. eCollection 2016.

Abstract

The pathophysiological mechanism of decompression sickness is not fully understood but there is evidence that it can be caused by intravascular and autochthonous bubbles. Doppler ultrasound at a given circulatory location is used to detect and quantify the presence of intravascular gas bubbles as an indicator of decompression stress. In this manuscript we studied the relationship between presence and quantity of gas bubbles by echosonography of the pulmonary artery of anesthetized, air-breathing New Zealand White rabbits that were compressed and decompressed. Mortality rate, presence, quantity, and distribution of gas bubbles elsewhere in the body was examined postmortem. We found a strong positive relationship between high ultrasound bubble grades in the pulmonary artery, sudden death, and high amount of intra and extra vascular gas bubbles widespread throughout the entire organism. In contrast, animals with lower bubble grades survived for 1 h after decompression until sacrificed, and showed no gas bubbles during dissection.

摘要

减压病的病理生理机制尚未完全明确,但有证据表明其可由血管内气泡和自生气泡引起。在特定循环部位使用多普勒超声检测和量化血管内气泡的存在情况,以此作为减压应激的指标。在本手稿中,我们通过对麻醉的、呼吸空气的新西兰白兔进行压缩和减压处理后,对其肺动脉进行超声检查,研究了气泡的存在与数量之间的关系。在动物死后检查其死亡率、身体其他部位气泡的存在情况、数量及分布。我们发现肺动脉中超声气泡分级高、猝死以及全身广泛存在大量血管内和血管外气泡之间存在很强的正相关关系。相比之下,气泡分级较低的动物在减压后存活1小时直至被处死,解剖时未发现气泡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47d3/4954815/bec1fb93affc/fphys-07-00310-g0001.jpg

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