首页> 外文期刊>The Journal of Experimental Biology >The orienting response of Lake Michigan mottled sculpin is mediated bycanal neuromasts
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The orienting response of Lake Michigan mottled sculpin is mediated bycanal neuromasts

机译:密歇根湖斑驳的sculpin的定向反应是由运河神经质介导的。

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摘要

Lake Michigan mottled sculpin, Cottus bairdi, exhibit a naturally occurring and unconditioned orienting response that can be triggered by both live prey and chemically inert vibrating spheres, even in blinded animals. CoCl2-induced reductions of the orienting response demonstrate that the lateral line is required for this behavior in the absence of non-mechanosensory cues (such as vision), but shed no light on the relative contributions of superficial and canal neuromasts to this behavior, To determine the relative roles of these two subsystems, we measured the frequency with which mottled sculpin oriented towards a small vibrating sphere before and after two treatments: (i) immersion of fish in a solution of gentamicin, an aminoglycoside antibiotic that damages hair cells in canal, but not superficial, neuromasts; and (ii) scraping the skin of the fish, which damages the superficial, but not the canal, neuromasts. To ensure that both superficial and canal neuromasts were adequately stimulated, we tested at different vibration frequencies (10 and 50 Hz) near or at the best frequency for each type of neuromast, At both test frequencies, response rates before treatment were greater than 70 % and were significantly greater than 'spontaneous' response frequencies measured in the absence of sphere vibration. Response rates fell to spontaneous levels after 1 day of gentamicin treatment and did not return to pre-treatment levels for 10-15 days. In contrast, response rates stayed approximately the same after superficial neuromasts had been damaged by skin abrasion. Scanning electron microscopy confirmed hair cell damage (loss of apical cilia) in canal, but not superficial, neuromasts of gentamicin-treated animals after as little as 24 h of treatment. The sensory epithelium of canal neuromasts gradually returned to normal, following a time course similar to behavioral loss and recovery of the orienting response, whereas that of superficial neuromasts appeared normal throughout the entire period. This study shows that the orienting response of the mottled sculpin is mediated by canal neuromasts.
机译:密歇根湖斑驳的s鱼Cottus bairdi表现出自然发生的,无条件的定向反应,即使在失明的动物中,活的猎物和化学惰性的振动球也可以触发这种反应。 CoCl2诱导的定向反应减少表明,在没有非机械感官提示(例如视力)的情况下,此行为需要侧线,但并未阐明浅表神经管和管神经瘤对此行为的相对贡献。确定这两个子系统的相对作用,我们测量了两种处理前后斑驳的鱼朝向小的振动球的频率:(i)将鱼浸入庆大霉素溶液中,庆大霉素是一种氨基糖苷类抗生素,会破坏管中的毛细胞但不是浅表神经瘤; (ii)刮擦鱼皮,这会损害浅表神经节,但不会损害运河神经节。为了确保充分刺激浅表神经管和根管神经管,我们对每种类型的神经桅杆在接近或处于最佳频率的不同振动频率(10和50 Hz)下进行了测试。在这两个测试频率下,治疗前的响应率均大于70%并且明显高于在没有球体振动的情况下测得的“自发”响应频率。庆大霉素治疗1天后,缓解率降至自发水平,且10到15天未恢复至治疗前水平。相反,皮肤磨擦损伤浅表神经瘤后,反应率大致保持不变。扫描电镜证实,经庆大霉素处理的动物在治疗24小时后,其毛细血管受损(但根尖未见表层毛细血管)受损,但庆大霉素处理过的动物却没有。在类似于行为丧失和定向反应恢复的时间过程之后,神经神经管的感觉上皮逐渐恢复正常,而在整个时期中,浅表神经质的感觉上皮表现为正常。这项研究表明,斑驳的sculpin的定向反应是由神经管介导的。

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