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首页> 外文期刊>Journal of Neurophysiology >Dynamics of visually guided auditory plasticity in the optic tectum of the barn owl.
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Dynamics of visually guided auditory plasticity in the optic tectum of the barn owl.

机译:谷仓猫头鹰视神经外层视觉引导听觉可塑性的动力学。

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摘要

1. In the optic tectum of normal barn owls, bimodal (auditory-visual) neurons are tuned to the values of interaural time difference (ITD) that are produced by sounds at the locations of their visual receptive fields (VRFs). The auditory tuning of tectal neurons is actively guided by visual experience during development: in the tectum of adult owls reared with an optically displaced visual field, neurons are tuned to abnormal values of ITD that are close to the values produced by sounds at the locations of their optically displaced VRFs. In this study we investigated the dynamics of this experience-dependent plasticity. 2. Owls were raised from shortly after eye-opening (14-22 days of age) with prismatic spectacles that displaced the visual field to the right or left. Starting at approximately 60 days of age, multiunit recordings were made to assess the tuning of tectal neurons to ITD presented via earphones. In the earliest recording sessions (ages 60-80 days), ITD tuning was often close to normal, even though the majority of the owls' previous experience was with an altered correspondence between ITD values and VRF locations. Subsequently, over a period of weeks, responses to the normal range of ITDs were gradually eliminated while responses to values of ITD corresponding with the optically displaced VRF were acquired. 3. At intermediate stages in this process, the ITD tuning at many sites became abnormally broad, so that responses were simultaneously present to both normal values of ITD and to values corresponding with the optically displaced VRF. At this stage the latencies and durations of newly acquired responses systematically exceeded the latencies and durations of the responses to normal values of ITD. 4. Dynamic changes in ITD tuning similar to those recorded in the optic tectum also occurred in the external nucleus of the inferior colliculus (ICX), which provides the major source of ascending auditory input to the tectum. 5. These results suggest the hypothesis that the neural selectivity for ITD in the barn owl's tectum is first established by vision-independent mechanisms and only subsequently calibrated by visual experience. This calibration involves both the elimination of responses to normal values of ITD and the visually guided acquisition of responses to novel values and can be accounted for by plasticity at the level of the ICX.
机译:1.在正常仓鼠的视神经外皮中,将双峰(听觉-视觉)神经元调至听觉时差(ITD)的值,该值是由其视听场(VRF)处的声音产生的。发育过程中的视觉经验积极地指导了对坐骨神经元的听觉调节:在成年猫头鹰的视锥细胞中,视变位的视野中,神经元被调至接近于ITD异常值,该值接近于声音的产生位置。其光学位移的VRF。在这项研究中,我们调查了这种依赖于经验的可塑性的动力学。 2.睁开眼睛后不久(14至22天大),将猫头鹰戴上棱形眼镜,使视野向右或向左移动。从大约60天的年龄开始,进行多单位录音,以评估通过耳机呈现的顶盖神经元向ITD的调节。在最早的录音阶段(60-80天),ITD调整通常接近正常,即使猫头鹰以前的大多数经验是ITD值与VRF位置之间的对应关系发生了变化。随后,在数周的时间内,逐渐消除了对ITD正常范围的响应,同时获得了对与光学位移VRF相对应的ITD值的响应。 3.在此过程的中间阶段,许多站点的ITD调整变得异常宽泛,因此对ITD的正常值和与光学位移VRF相对应的值同时出现响应。在此阶段,新获得的响应的延迟和持续时间系统地超过了对ITD正常值的响应的延迟和持续时间。 4. ITD调整的动态变化类似于下眼睑(ICX)的外核中也发生了类似视光学膜记录的动态变化,这为上眼膜的听觉输入提供了主要来源。 5.这些结果提出了这样的假说,即首先通过视觉独立的机制建立了对谷仓盖中ITD的神经选择性,然后才通过视觉经验对其进行了校准。该校准既涉及消除对ITD正常值的响应,又涉及对新值的响应的视觉引导获取,并且可以通过ICX级别的可塑性来解释。

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