首页> 外文期刊>Neuropathology: official journal of the Japanese Society of Neuropathology >Toward understanding the causes of blood pH irregularities and the roles of newly described binuclear neurons of carotid bodies on blood pH regulation during subarachnoid hemorrhage: Experimental study
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Toward understanding the causes of blood pH irregularities and the roles of newly described binuclear neurons of carotid bodies on blood pH regulation during subarachnoid hemorrhage: Experimental study

机译:了解血液pH不规则性的原因和新描述颈动脉体对血液pH调节术后血液pH调节的作用:实验研究

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Acidosis is the most dangerous complication of subarachnoid hemorrhage (SAH). Although the carotid bodies (CBs) network is essential for pH regulation, neither binuclear neurons (BNN) nor their functions have been mentioned so far in the literature. The aim of this study was to investigate the crucial roles of mononuclear (MNN) or BNN in CBs on acidosis following SAH. Twenty‐five hybrid rabbits were used. Five rabbits were used as a control group, six for sham, and the remaining 14 rabbits were used as the study group by injection of 1?mL of autologous arterial blood into the cisterna magna to produce SAH. Normal and degenerated MNN/BNN densities of CBs were counted by stereological methods. The mean blood pH values were: 7.362?±?0.041 in the control group; 7.324?±?0.064 in sham, 7.272?±?0.062 in the SAH group. The degenerated MNN and BNN values were 5?±?1/mm 3 and 9?±?3/mm 3 in the control group; 15?±?5/mm 3 and 22?±?6/mm 3 in sham, 965?±?113/mm 3 and 1532?±?176/mm 3 in the SAH group. Mean pH values were under 7.212?±?0.130 in animals with prominent degenerated BNN. The differences between MNN/pH changes were significant between the SAH and control groups ( P ?0.005); whereas BNN/pH values were significant between the SAH and sham groups (pH??0.005), SAH and control ( P ?0.0001). BNN degeneration could result in more severe acidosis than MNN following SAH which has not been described so far.
机译:酸中毒是蛛网膜下腔出血(SAH)最危险的并发症。虽然颈动脉体(CBS)网络对于pH调节至关重要,但迄今为止迄今为止迄今为止已经提到了生物核神经元(BNN)和其功能。本研究的目的是探讨单核(MNN)或BNN在CBS对SAH后酸中毒中的关键作用。使用了二十五只杂交兔。将五只兔子用作对照组,六个为假,剩余的14只兔子用1?ml的自体动脉血液注射到Cisterna Magna中以生产SAH。通过立体方法计算CBS的正常和退化的MNN / BNN密度。平均血液pH值为:7.362?±0.041; 7.324?±±0.064在Sham,7.272?±0.062在SAH组中。在对照组中,退化的MNN和BNN值为5?±1 / mm 3和9?±3 / mm 3;在Sham,965?±113 / mm 3和1532中的15?±5 / mm 3和22?±6 / mm 3.±176 / mm 3。平均pH值下降于7.212?±0.130,具有突出的退化BNN。 SAH和对照组之间的MNN / pH变化之间的差异是显着的(P <0.005);虽然BNN / pH值在SAH和假组(pH = 0.005),SAH和对照之间是显着的(p <0.0001)。 BNN退化可能导致酸中的更严重的酸味,但在迄今未描述的SAH之后的MNN。

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