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首页> 外文期刊>The Journal of Experimental Biology >The autonomic control and functional significance of the changes in heart rate associated with air breathing in the jeju, Hoplerythrinus unitaeniatus
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The autonomic control and functional significance of the changes in heart rate associated with air breathing in the jeju, Hoplerythrinus unitaeniatus

机译:济州岛霍乱弧菌与空气呼吸有关的心率变化的自主控制和功能意义

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The jeju is a teleost fish with bimodal respiration that utilizes a modified swim bladder as an air-breathing organ (ABO). Like all air-breathing fish studied to date, jeju exhibit pronounced changes in heart rate (f(H)) during air-breathing events, and it is believed that these may facilitate oxygen uptake (M-O2) from the ABO. The current study employed power spectral analysis (PSA) of f(H) patterns, coupled with instantaneous respirometry, to investigate the autonomic control of these phenomena and their functional significance for the efficacy of air breathing. The jeju obtained less than 5% of total M-O2 (M-tO2) from air breathing in normoxia at 26 degrees C, and PSA of beat-to-beat variability in fH revealed a pattern similar to that of unimodal water-breathing fish. In deep aquatic hypoxia (water P-O2=1 kPa) the jeju increased the frequency of air breathing (f(AB)) tenfold and maintained M-tO2 unchanged from normoxia. This was associated with a significant increase in heart rate variability (HRV), each air breath (AB) being preceded by a brief bradycardia and then followed by a brief tachycardia. These f(H) changes are qualitatively similar to those associated with breathing in unimodal air-breathing vertebrates. Within 20 heartbeats after the AB, however, a beat-to-beat variability in f(H) typical of water-breathing fish was re-established. Pharmacological blockade revealed that both adrenergic and cholinergic tone increased simultaneously prior to each AB, and then decreased after it. However, modulation of inhibitory cholinergic tone was responsible for the major proportion of HRV, including the precise beat-to-beat modulation of f(H) around each AB. Pharmacological blockade of all variations in f(H) associated with air breathing in deep hypoxia did not, however, have a significant effect upon f(AB) or the regulation of M-tO2. Thus, the functional significance of the profound HRV during air breathing remains a mystery.
机译:济州岛是一种具有双峰呼吸的硬骨鱼类,它利用改良的游泳膀胱作为呼吸器官(ABO)。像迄今为止研究的所有吸气鱼一样,济州在吸气事件中显示出明显的心率变化(f(H)),并且据信这些可能有助于ABO吸收氧气(M-O2)。当前的研究采用f(H)模式的功率谱分析(PSA),结合瞬时呼吸测定法,研究这些现象的自主控制及其对呼吸功效的功能意义。济州人在26摄氏度的常氧条件下通过空气呼吸获得的总M-O2(M-tO2)不到5%,fH的逐跳变异性PSA显示出与单峰吸水鱼相似的模式。在深水缺氧中(水P-O2 = 1 kPa),济州岛的空气呼吸频率(f(AB))增加了10倍,并且M-tO2保持与常氧状态相同。这与心率变异性(HRV)的显着增加有关,每次呼吸(AB)之前是短暂的心动过缓,然后是短暂的心动过速。这些f(H)变化在质量上与单峰呼吸脊椎动物中与呼吸有关的变化相似。然而,在AB后的20个心跳内,重新建立了典型的吸水鱼的f(H)的逐次变化。药理学阻断作用显示,肾上腺素能和胆碱能调在每个AB前同时升高,而在其后降低。但是,抑制性胆碱能的调节是导致HRV的主要部分,包括每个AB周围f(H)的精确逐次调节。在深部缺氧时与空气呼吸有关的f(H)所有变化的药理学阻断作用对f(AB)或M-tO2的调节均无明显影响。因此,深层HRV在呼吸过程中的功能意义仍然是个谜。

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