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猫脑细胞外液的pH值。

The pH of brain extracellular fluid in the cat.

作者信息

Cragg P, Patterson L, Purves M J

出版信息

J Physiol. 1977 Oct;272(1):137-66. doi: 10.1113/jphysiol.1977.sp012038.

Abstract
  1. The blood supply to the medulla was determined by the injection of indian ink via the vertebral arteries. Virtually the whole medulla was supplied by penetrating vessels from the ventral surface. The highest density of small arterioles and venules was found close to the roots of XII and on the ventrolateral surface.2. The pH of extracellular fluid (pH(e.c.f.)) was measured with pH microelectrodes of tip size 1-3 mum in cortex and medulla in seventeen cats, anaesthetized with pentobarbitone or a chloralose-urethane mixture. Parallel measurements were made of the pH of c.s.f. and plasma, the DC potential between plasma and brain and ventilation or phrenic nerve discharge.3. In the majority of tests under steady conditions, the pH of e.c.f. was found to be lower than that of c.s.f. by between 0.03 and 0.08 units. No systematic pH gradients could be found to a depth of 5 mm beneath the surface of either medulla or cortex.4. When plasma P(CO2) was altered, pH(e.c.f.) changed with a latent period and speed of response related to the density of blood vessels. In vascular areas of the medulla and in the cortex, the latent period of 4 sec and the change of pH(e.c.f.) coincided with changes in ventilation. Changes in pH(c.s.f.) over the same areas were invariably slower.5. CO(2) buffering capacities were in the order plasma > e.c.f. > c.s.f. Typical values were respectively, -2.2, -2.1 and -1.6.6. The pH of e.c.f. was unaffected by the intravenous injection of H+ and only slowly by the injection of HCO(3)-. Only up to a depth of 1 mm beneath the surface was pH(e.c.f.) affected by superfusion of mock c.s.f. in the range 6.8-8.0 units. This response had a latent period of 2-3 min and was complete in 15 min.7. The pH of e.c.f. fell with hypoxia after a latent period of > 1 min and if all vasosensory nerves had been cut, pH(e.c.f.) was markedly affected by changes of blood pressure.8. These results indicate that even under steady conditions, the pH of e.c.f. and c.s.f. is not identical, that pH(e.c.f.) is more obviously affected by changes in P(a, CO2) than pH(c.s.f.) and that putative H+ sensors which drive respiratory neurones are likely to be similarly affected.
摘要
  1. 通过经椎动脉注射印度墨水来确定延髓的血液供应。实际上,整个延髓由来自腹侧面的穿通血管供血。在第Ⅻ对脑神经根部附近和腹外侧表面发现小动脉和小静脉的密度最高。

  2. 用尖端尺寸为1 - 3微米的pH微电极在17只经戊巴比妥或氯醛糖 - 乌拉坦混合物麻醉的猫的皮质和延髓中测量细胞外液的pH值(pH(e.c.f.))。同时测量脑脊液和血浆的pH值、血浆与脑之间的直流电位以及通气或膈神经放电。

  3. 在大多数稳定条件下的测试中,发现细胞外液的pH值比脑脊液的pH值低0.03至0.08个单位。在延髓或皮质表面以下5毫米深度内未发现系统性的pH梯度。

  4. 当血浆P(CO2)改变时,pH(e.c.f.)会随着潜伏期和与血管密度相关的反应速度而变化。在延髓的血管区域和皮质中,4秒的潜伏期以及pH(e.c.f.)的变化与通气变化同时发生。同一区域脑脊液pH值(pH(c.s.f.))的变化总是较慢。

  5. CO(2)缓冲能力的顺序为血浆>细胞外液>脑脊液。典型值分别为 - 2.2、 - 2.1和 - 1.6。

  6. 静脉注射H + 对细胞外液的pH值无影响,注射HCO(3) - 时影响也很缓慢。仅在表面以下1毫米深度内,模拟脑脊液在6.8 - 8.0单位范围内的灌注会影响pH(e.c.f.)。这种反应有2 - 3分钟的潜伏期,15分钟内完成。

  7. 缺氧1分钟以上潜伏期后,细胞外液的pH值下降,如果所有血管感觉神经都被切断,pH(e.c.f.)会受到血压变化的显著影响。

  8. 这些结果表明,即使在稳定条件下,细胞外液和脑脊液的pH值也不相同,细胞外液的pH值比脑脊液的pH值更明显地受到P(a,CO2)变化的影响,并且驱动呼吸神经元的假定H + 传感器可能也会受到类似影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a03e/1353597/0738bc73d232/jphysiol00792-0160-a.jpg

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