Department of Biological Sciences and JP Scott Center for Neuroscience, Mind and Behavior, Bowling Green State University, Bowling Green, OH 43403, USA.
J Exp Biol. 2010 Oct 15;213(Pt 20):3536-47. doi: 10.1242/jeb.044909.
In goldfish and other otophysans, the Weberian ossicles mechanically link the saccule of the inner ear to the anterior swimbladder chamber (ASB). These structures are correlated with enhanced sound-pressure sensitivity and greater sensitivity at high frequencies (600-2000 Hz). However, surprisingly little is known about the potential impact of the ASB on other otolithic organs and about how auditory responses are modulated by discrete sources that change their location or orientation with respect to the ASB. In this study, saccular and lagenar nerve fiber responses and conditioned behaviors of goldfish were measured to a small, low-frequency (50 Hz) vibrating sphere (dipole) source as a function of its location along the body and its orientation with respect to the ASB. Conditioned behaviors and saccular nerve fiber activity exhibited response characteristics nearly identical to those measured from a hydrophone in the same relative position as the ASB. By contrast, response patterns from lagena fibers could not be predicted by pressure inputs to the ASB. Deflation of the ASB abolished the characteristic spatial response pattern of saccular but not lagena fibers. These results show that: (1) the lagena is not driven by ASB-mediated pressure inputs to the ear; (2) the ASB-saccule pathway dominates behavioral responsiveness, operating effectively at frequencies as low as 50 Hz; and (3) behavioral and neural (saccular) responses are strongly modulated by the position and orientation of the dipole with respect to the ASB.
在金鱼和其他骨鳔鱼类中,韦伯氏小骨将内耳的球囊机械地连接到前鳔室(ASB)。这些结构与增强的声压灵敏度和更高的高频灵敏度(600-2000Hz)相关。然而,令人惊讶的是,人们对 ASB 对其他耳石器官的潜在影响以及听觉反应如何被离散的声源调制知之甚少,这些声源会改变其相对于 ASB 的位置或方向。在这项研究中,测量了金鱼的球囊和耳石神经纤维反应和条件行为,以一个小的低频(50Hz)振动球(偶极子)源作为其在身体上的位置及其相对于 ASB 的方向的函数。条件行为和球囊神经纤维活动表现出与 ASB 相同相对位置的水听器测量的反应特征几乎相同。相比之下,耳石纤维的反应模式不能通过 ASB 的压力输入来预测。ASB 的放气消除了球囊但不是耳石纤维的特征空间反应模式。这些结果表明:(1)耳石不受 ASB 介导的耳内压力输入的驱动;(2)ASB-球囊途径主导行为反应,在低至 50Hz 的频率下有效运作;(3)行为和神经(球囊)反应强烈受到偶极子相对于 ASB 的位置和方向的调制。