Optical imaging of respiratory neuron activity from the dorsal view of the lower brainstem.

IF 2.4 4区 医学 Q3 PHARMACOLOGY & PHARMACY
Hiroshi Onimaru, Ikuo Homma
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引用次数: 12

Abstract

1. We visualized respiratory-related neuron network activity in the dorsal part of the pons and medulla of an in vitro preparation from newborn rats by optical recordings using a voltage-sensitive dye. We measured optical signals from several seconds before to several seconds after the inspiratory phase using the inspiratory motor nerve discharge as the trigger signal and we averaged the optical signals of 20-50 respiratory cycles to obtain an optical image correlating specifically to inspiratory activity. 2. Four areas that were excited or inhibited corresponding to the respiratory cycles were detected. (i) The most rostral activity was in the rostral and lateral parts of the pons, with activity mainly in the inspiratory phase, corresponding to the pontine-respiratory group. (ii) In the midpontine level, inspiratory activity followed by long-lasting hyperpolarization appeared in the midlateral parts. This part was presumed to reflect activity in the locus coeruleus. The hyperpolarization became almost negligible after treatment with the alpha-adrenergic antagonist, phentolamine. (iii) In the dorsal medulla, the predominantly inspiratory activity was detected at the rostral level of the area postrema. This part was considered to reflect activity mainly of the hypoglossal nucleus. (iv) At a similar level, we also detected weak and disperse inspiratory activity extending more laterally and caudally than that of the hypoglossal nucleus activity. This might reflect activity of the dorsal respiratory group. 3. In conclusion, the present optical recording study revealed that the dorsal part of the lower brainstem in the in vitro preparation is noticeably active as well as the ventral part shown in the previous study. This method is very useful for analysis of pharmacological properties, as well as the spatio-temporal pattern of respiratory-related network activity in the brainstem.

从下脑干背侧观察呼吸神经元活动的光学成像。
1. 我们利用一种电压敏感染料进行光学记录,观察新生大鼠脑桥背侧和髓质的呼吸相关神经元网络活动。我们使用吸气运动神经放电作为触发信号,测量了吸气期前几秒到吸气期后几秒的光信号,并将20-50个呼吸周期的光信号平均,以获得与吸气活动专门相关的光学图像。2. 检测到与呼吸周期相对应的四个兴奋或抑制区域。(i)吻侧活动最多的是桥侧吻侧部分,活动主要在吸气期,对应于桥侧-呼吸组。(ii)在脑桥正中水平,中外侧部分出现吸气活动,随后出现长时间的超极化。这部分被认为反映了蓝斑的活动。用肾上腺素能拮抗剂酚妥拉明治疗后,超极化几乎可以忽略不计。(iii)在髓质背侧,在脑后区吻侧水平检测到主要的吸气活动。这部分被认为主要反映舌下核的活动。(iv)在类似的水平上,我们还检测到微弱和分散的吸气活动,比舌下核活动更向外侧和尾侧延伸。这可能反映了背呼吸群的活动。3.综上所述,本光学记录研究显示,体外制备的下脑干背侧部分和之前研究显示的腹侧部分明显活跃。这种方法对于分析脑干呼吸相关网络活动的药理性质和时空格局非常有用。
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来源期刊
Clinical and Experimental Pharmacology and Physiology
Clinical and Experimental Pharmacology and Physiology PHARMACOLOGY & PHARMACY-PHYSIOLOGY
自引率
0.00%
发文量
128
期刊介绍: Clinical and Experimental Pharmacology and Physiology is an international journal founded in 1974 by Mike Rand, Austin Doyle, John Coghlan and Paul Korner. Our focus is new frontiers in physiology and pharmacology, emphasizing the translation of basic research to clinical practice. We publish original articles, invited reviews and our exciting, cutting-edge Frontiers-in-Research series’.
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