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Optical mapping of pontine chemosensitive regions of neonatal rat.

机译:新生大鼠脑桥化学敏感区的光学作图。

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摘要

We analyzed the neuronal response to hypercapnic acidosis, using an optical recording technique with a fluorescent voltage-sensitive dye (di-4-ANEPPS), in pontine slice preparations of neonatal rats, containing the locus coeruleus (LC), which has been electrophysiologically demonstrated to be chemosensitive. The dye-stained preparation was continuously superfused with artificial cerebrospinal fluid. Epifluorescence of the slice was detected using a high-sensitivity optical recording system. Changes in the intensity of fluorescence were serially analyzed while switching artificial cerebrospinal fluid from control to hypercapnic acidosis, or vice versa. The optical recording method revealed that the LC, as reported in previous studies, reversibly showed a depolarizing response to hypercapnic acidosis in 56% of the examined preparations. The A5 area (56%) also exhibited a reversible, depolarizing response to hypercapnic acidosis. The response was preserved under conditions in which chemical synaptic transmission was blocked by low Ca(2+)-high Mg(2+) solution. These results suggest that the optical recording method is applicable to identification of potentially chemosensitive areas, which deserve further electrophysiological analysis, and that the A5 area could be chemosensitive.
机译:我们使用光学记录技术和荧光电压敏感染料(di-4-ANEPPS),对新生大鼠的脑桥片制剂中的神经元对高碳酸血症性酸中毒的反应进行了分析,其中含有脑蓝斑(LC),这已通过电生理学证实对化学敏感。将染料染色的制剂与人工脑脊髓液连续融合。使用高灵敏度光学记录系统检测切片的落射荧光。在将人工脑脊髓液从对照切换为高碳酸血症性酸中毒(反之亦然)的同时,连续分析了荧光强度的变化。光学记录方法显示,如先前研究中所述,LC可逆地显示了56%的受检制剂对高碳酸血症性酸中毒的去极化反应。 A5区(56%)对高碳酸血症性酸中毒也表现出可逆的去极化反应。在化学突触传递被低Ca(2 +)-高Mg(2+)解决方案阻止的条件下保留了响应。这些结果表明,光学记录方法可用于识别潜在的化学敏感区域,这值得进一步的电生理分析,并且A5区域可能是化学敏感的。

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