Suppr超能文献

死亡大鼠体内无血管内气泡成核现象。

Absence of intravascular bubble nucleation in dead rats.

作者信息

Lee Y C, Wu Y C, Gerth W A, Vann R D

机构信息

Physiological Research Laboratory, Scripps Institution of Oceanography, La Jolla, CA.

出版信息

Undersea Hyperb Med. 1993 Dec;20(4):289-96.

PMID:8286983
Abstract

Bubble formation in the inferior vena cavae (IVC) of dead rats was investigated after 6-15-h exposures to air at 123 atm abs (12.5 MPa) and decompression to 1 atm abs at 13.6 atm/min (1.4 MPa/min). The maximum estimated air-supersaturation attained in the IVCs after decompression was 6.1-18.3 atm (0.6-1.8 MPa). Bubbles were detected by light microscopy, buoyancy, and underwater dissection. No bubbles formed in 42 blood-filled IVCs that were isolated from the circulation by ligatures, but bubbles were always observed in unisolated IVCs (P < 0.000005). Other isolated IVCs were filled with tap water, water and bubbles, or water and iron filings. Bubbles formed in 13% of the IVCs filled with tap water, in 16% of the IVCs containing water with preexisting bubbles, and in 80% of the IVCs containing water with iron filings. Results indicate that at the air supersaturations attained in the isolated IVCs a) blood is resistant to de novo bubble formation; b) preexisting bubbles are dissolved by compression; c) bubbles in water originate from preexisting gas nuclei; and d) iron filings harbor gas nuclei that are able to survive 122 atm (12.4 MPa) overpressures and form bubbles on subsequent decompression.

摘要

在123个绝对大气压(12.5兆帕)下将死鼠的下腔静脉暴露于空气中6至15小时,然后以13.6个绝对大气压/分钟(1.4兆帕/分钟)的速度减压至1个绝对大气压,研究下腔静脉中气泡的形成情况。减压后在下腔静脉中达到的最大估计空气过饱和度为6.1至18.3个大气压(0.6至1.8兆帕)。通过光学显微镜、浮力和水下解剖检测气泡。通过结扎与循环系统隔离的42个充满血液的下腔静脉中未形成气泡,但在未隔离的下腔静脉中总是观察到气泡(P<0.000005)。其他隔离的下腔静脉中充满了自来水、水和气泡或水和铁屑。在13%充满自来水的下腔静脉、16%含有预先存在气泡的水的下腔静脉以及80%含有带铁屑的水的下腔静脉中形成了气泡。结果表明,在隔离的下腔静脉中达到的空气过饱和度下,a)血液对新气泡的形成具有抗性;b)预先存在的气泡通过压缩而溶解;c)水中的气泡源自预先存在的气体核;d)铁屑含有能够承受122个大气压(12.4兆帕)超压并在随后减压时形成气泡的气体核。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验