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兔膝关节后关节神经刺激引起的滑膜氧分压和血流变化。

Changes in synovial PO2 and blood flow in the rabbit knee joint due to stimulation of the posterior articular nerve.

作者信息

Ferrell W R, Najafipour H

机构信息

Institute of Physiology, University of Glasgow.

出版信息

J Physiol. 1992 Apr;449:607-17. doi: 10.1113/jphysiol.1992.sp019104.

Abstract
  1. Experiments were performed to measure the partial pressure of oxygen in the synovial fluid (Ps,O2) of the normal rabbit knee joint and assess the extent to which this varied with changes in knee joint blood flow. 2. With the hypodermic needle oxygen electrode sited just within the synovial cavity, Ps,O2 values ranged from 25 to 72 mmHg with a mean of 48.2 +/- 3.1 (S.E.M.; n = 18). 3. Ps,O2 was found to decrease with increasing depth of penetration of the oxygen electrode. Lowest values were observed close to the articular cartilage. 4. Electrical stimulation of the posterior articular nerve (PAN) of the knee resulted in vasoconstriction of knee joint blood vessels which was accompanied by a decrease in Ps,O2. The frequency-response and voltage-response profiles to electrical stimulation of PAN, although differing in magnitude, showed a high degree of correlation between blood flow and Ps,O2. 5. As judged by the conduction velocity, the vasoconstrictor response to nerve stimulation was mediated by unmyelinated nerve fibres, presumed to be sympathetic postganglionic fibres. 6. In view of the low Ps,O2 values occurring deep within the joint, avascular structures such as cartilage could be subject to injury if sustained reduction in synovial blood flow occurred. This could be a contributory factor in the pathogenesis of degenerative and inflammatory joint diseases.
摘要
  1. 进行实验以测量正常兔膝关节滑液中的氧分压(Ps,O2),并评估其随膝关节血流变化的程度。2. 将皮下针式氧电极置于滑膜腔内,Ps,O2值范围为25至72 mmHg,平均值为48.2 +/- 3.1(标准误;n = 18)。3. 发现Ps,O2随氧电极插入深度的增加而降低。在靠近关节软骨处观察到最低值。4. 对膝关节后关节神经(PAN)进行电刺激导致膝关节血管收缩,同时Ps,O2降低。尽管幅度不同,但对PAN电刺激的频率响应和电压响应曲线显示血流与Ps,O2之间高度相关。5. 从传导速度判断,神经刺激引起的血管收缩反应由无髓神经纤维介导,推测为交感神经节后纤维。6. 鉴于关节深处出现的低Ps,O2值,如果滑膜血流持续减少,诸如软骨等无血管结构可能会受到损伤。这可能是退行性和炎性关节疾病发病机制中的一个促成因素。

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本文引用的文献

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The nervous control of joint blood vessels.关节血管的神经控制。
J Physiol. 1956 Aug 28;133(2):467-71. doi: 10.1113/jphysiol.1956.sp005601.
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Oxygen tension in synovial fluids.滑液中的氧张力。
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