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与以往方法相比,采用较低压力和氧浓度的高压氧疗法对犬生理机制的影响。

The influences of hyperbaric oxygen therapy with a lower pressure and oxygen concentration than previous methods on physiological mechanisms in dogs.

作者信息

Ishibashi Maki, Hayashi Akiyoshi, Akiyoshi Hideo, Ohashi Fumihito

机构信息

Department of Veterinary Clinical Medicine, Graduate School of Life and Environmental Sciences, Osaka Prefecture University, 1-58 Rinku-ohrai-kita, Izumisano, Osaka 598-8531, Japan.

出版信息

J Vet Med Sci. 2015 Mar;77(3):297-304. doi: 10.1292/jvms.14-0316. Epub 2014 Dec 7.

Abstract

Recently, hyperbaric oxygen therapy with a lower pressure and oxygen concentration (L-HBOT) than previous methods has been used for dogs in Japan; however, the influences of L-HBOT on dogs have not been clarified. To verify the influences of L-HBOT on physiological mechanism in dogs, we investigated blood gas parameters, glutathione peroxidase (GPx) activity, heart rate variability, stress-related hormones and skin conductance (SC) in 4 clinically normal beagle dogs with catheters in their carotid arteries and jugular veins when they were quiet, after running, after receiving L-HBOT (30% oxygen concentration, 1.3 atmospheres absolute, 30 min) or after not receiving L-HBOT. The results showed there were no changes in blood gas parameters, heart rate variability and catecholamine levels after L-HBOT. GPx activity was significantly higher, and the SC and cortisol level were lower in dogs that received L-HBOT than those when they were quiet. These results suggested that L-HBOT may have a small influence on oxygenation dynamics, activate antioxidant enzymes such as GPx, restrain autonomic nervous activity and control the balance between oxidation and antioxidation inside the body.

摘要

最近,在日本,一种压力和氧浓度比以前的方法更低的高压氧疗法(L-HBOT)已被用于犬类;然而,L-HBOT对犬类的影响尚未明确。为了验证L-HBOT对犬类生理机制的影响,我们对4只临床健康的比格犬进行了研究,这些犬的颈动脉和颈静脉中插入了导管,在它们安静时、跑步后、接受L-HBOT(氧浓度30%,绝对压力1.3个大气压,30分钟)后或未接受L-HBOT后,检测其血气参数、谷胱甘肽过氧化物酶(GPx)活性、心率变异性、应激相关激素和皮肤电导率(SC)。结果显示,L-HBOT后血气参数、心率变异性和儿茶酚胺水平没有变化。接受L-HBOT的犬的GPx活性显著更高,SC和皮质醇水平低于安静时。这些结果表明,L-HBOT可能对氧合动力学影响较小,激活如GPx等抗氧化酶,抑制自主神经活动,并控制体内氧化与抗氧化之间的平衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0cee/4383775/32a7e7b6bb97/jvms-77-297-g001.jpg

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