首页> 外文期刊>Fish Physiology and Biochemistry >Anesthetic effects of AQUI-S 20E (R) (eugenol) on the afferent neural activity of the oyster toadfish (Opsanus tau)
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Anesthetic effects of AQUI-S 20E (R) (eugenol) on the afferent neural activity of the oyster toadfish (Opsanus tau)

机译:Aqui-S 20E(R)(丁香酚)对牡蛎蟾鱼传入神经活动的麻醉作用(Opsanus tau)

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摘要

Anesthesia is used to sedate aquatic animals during transportation or to immobilize them for surgery. However, most studies have focused on the behavioral effects of induction and recovery, without addressing the effect of anesthetic on neural activity. This study investigated the neural response of anterior lateral line afferent fibers in the oyster toadfish,Opsanus tau, during exposure to incremental increases of AQUI-S 20E (0.001-0.006%), to determine if eugenol (the active ingredient of AQUI-S 20E) influences neural activity of the fish lateral line system. Ventilation rate significantly decreased following AQUI-S 20E exposure with the surgical plane of anesthesia reached at 0.003%, characterized by shallow ventilation, equilibrium loss, and no response to tactile stimuli. Spontaneous and evoked firing rates of anterior lateral line fibers also significantly decreased following exposure, although the effect was transitory as neural activity recovered in the majority of fibers (70%) within 30 min of anesthetic withdrawal. While AQUI-S 20E proved effective in inducing the surgical plane of anesthesia without compromising survival, it is not recommended for acute neural preparations due to its depression of neural activity. However, the depression of lateral line sensitivity at low concentrations could play a role in reducing the stress response during fish transport.
机译:麻醉在运输过程中镇静水生动物或将它们固定用于手术。然而,大多数研究侧重于诱导和恢复的行为影响,而不解决麻醉对神经活动的影响。本研究研究了牡蛎蟾鱼中前侧线传入纤维的神经响应,opsanus tau,在暴露于增量增加的Aqui-s 20e(0.001-0.006%)期间,以确定丁醇(Aqui-s 20e的活性成分吗? )影响鱼横向线系统的神经活动。随着0.003%的情况下,随着麻醉的手术平面,随着浅通的通气,平衡损失,并且对触觉刺激无响应触觉刺激,麻醉外平面达到近达0.003%的通风率显着降低。暴露后,前侧线纤维的自发和诱发的射击率也显着降低,但在麻醉后30分钟内在大多数纤维(70%)中恢复的神经活性,效果是暂时的。虽然Aqui-S 20E有效地诱导麻醉外出的不妥协的麻醉,但由于其抑郁神经活动而不推荐急性神经制剂。然而,低浓度下横向线敏感度的抑郁可能在减少鱼类运输期间的应力响应方面发挥作用。

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