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Cognitive control of heart rate in diving harbor porpoises

机译:潜水港豚鼠心率的认知控制

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摘要

Marine mammals have adapted to forage while holding their breath in a suite of aquatic habitats from shallow rivers to deep oceans. The key to tolerate such extensive apnea is the dive response, which comprises bradycardia and peripheral vasoconstriction. Although initially considered an all-or-nothing reflex [1] , numerous studies on freely diving marine mammals have revealed substantial dynamics of the dive response to meet the impending dive demands of depth, duration and exercise [2] . Such adjustments are not only autonomic responses, but are under acute cognitive control in pinnipeds [3] living amphibiously on land and in water. The fully aquatic cetaceans would similarly benefit from cognitive cardiovascular control; however, even though they have exercise-modulated diving bradycardia [2] and full voluntary control of their respiratory system to such extent that even mild anesthesia often leads to asphyxiation [4] , cognitive cardiovascular control has never been demonstrated for this large group of marine mammals. To address this, we tested the hypothesis that porpoises modulate bradycardia according to anticipated dive duration. Two harbor porpoises, instrumented with ECG recording tags, were trained to perform 20- and 80-second stationary dives, during which they adjusted bradycardia to the anticipated duration, demonstrating cognitive control of their dive response.
机译:海洋哺乳动物在从浅河到深海的一系列水生生境中屏住呼吸时已经适应觅食。耐受这种广泛性呼吸暂停的关键是潜水反应,包括心动过缓和周围血管收缩。尽管最初被认为是全有或全无的反射[1],但许多关于自由潜水的海洋哺乳动物的研究表明,潜水响应的动态变化可以满足即将到来的深度,持续时间和运动需求[2]。这种调整不仅是自主反应,而且在两栖生活在陆地和水中的water鱼[3]中也受到了急性的认知控制。完全水生鲸类动物也将从认知心血管控制中获益;然而,即使他们具有运动调节性潜水心动过缓[2]和完全自主控制其呼吸系统的程度,以至于即使是轻度麻醉也常常会导致窒息[4],但对于这一大范围的海洋动物,从未证明过认知心血管控制哺乳动物。为了解决这个问题,我们测试了海豚根据预期潜水持续时间调节心动过缓的假设。训练了两只装有ECG记录标签的海豚,进行了20秒和80秒的固定潜水,在此期间他们将心动过缓调整到了预期的持续时间,从而证明了他们对潜水反应的认知控制。

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