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Parallel pathways mediating both sound localization and gaze control in the forebrain and midbrain of the barn owl

机译:并行通路介导谷仓猫头鹰的前脑和中脑的声音定位和注视控制

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摘要

The hypothesis that sound localization and gaze control are mediated in parallel in the midbrain and forebrain was tested in the barn owl. The midbrain pathway for gaze control was interrupted by reversible inactivation (muscimol injection) or lesion of the optic tectum. Auditory input to the forebrain was disrupted by reversible inactivation or lesion of the primary thalamic auditory nucleus, nucleus ovoidalis (homolog of the medial geniculate nucleus). Barn owls were trained to orient their gaze toward auditory or visual stimuli presented from random locations in a darkened sound chamber. Auditory and visual test stimuli were brief so that the stimulus was over before the orienting response was completed. The accuracy and kinetics of the orienting responses were measured with a search coil attached to the head. Unilateral inactivation of the optic tectum had immediate and long-lasting effects on auditory orienting behavior. The owls failed to respond on a high percentage of trials when the auditory test stimulus was located on the side contralateral to the inactivated tectum. When they did respond, the response was usually (but not always) short of the target, and the latency of the response was abnormally long. When the auditory stimulus was located on the side ipsilateral to the inactivated tectum, responses were reliable and accurate, and the latency of responses was shorter than normal. In a tectally lesioned animal, response probability and latency to contralateral sounds returned to normal within 2 weeks, but the increase in response error (due to undershooting) persisted for at least 12 weeks. Despite abnormalities in the response, all of the owls were capable of localizing and orienting to contralateral auditory stimuli on some trials with the optic tectum inactivated or lesioned. This was not true for contralateral visual stimuli. Immediately following tectal inactivation, the owls exhibited complete neglect for visual stimuli located more than 20 degrees to the contralateral side (i.e., beyond the edge of the visual field of the ipsilateral eye). In the tectally lesioned animal, this neglect diminished with time. Unilateral inactivation of nucleus ovoidalis had different effects in three owls. Response error to contralateral sound sources increased for one owl and decreased for two; response error to ipsilateral sources did not change significantly for any. The probability of response to ipsilateral (but not contralateral) stimuli decreased for one owl. The latency of response to ipsilateral (but not contralateral) stimuli increased for one and decreased for another. All of the owls, however, routinely localized and oriented toward ipsilateral and contralateral auditory stimuli with nucleus ovoidalis inactivated.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:在谷仓猫头鹰中测试了声音定位和凝视控制在中脑和前脑中并行介导的假设。用于注视控制的中脑途径被可逆的失活(麝香酚注射)或视神经的病变所中断。前丘脑听觉核,卵圆形核(内侧膝状核的同源物)的可逆失活或病变破坏了前脑的听觉输入。对仓进行培训,使他们的目光对准黑暗声音室中随机位置呈现的听觉或视觉刺激。听觉和视觉测试刺激是短暂的,因此在定向反应完成之前刺激已经结束。定向响应的准确性和动力学是通过连接到头部的搜索线圈测量的。视神经支架的单侧失活对听觉定向行为具有即时和持久的影响。当听觉测试刺激物位于失活的顶盖对侧时,猫头鹰在高比例的试验中没有反应。当他们确实做出响应时,响应通常(但不总是)少于目标,响应的等待时间异常长。当听觉刺激位于失活的顶盖同侧时,反应是可靠和准确的,并且反应的潜伏期比正常人短。在具直肠病变的动物中,对侧声音的反应概率和潜伏期在2周内恢复正常,但响应误差(由于下冲不足)的增加至少持续了12周。尽管反应异常,但在某些试验中,在灭活或损伤视神经顶盖的所有试验中,所有猫头鹰都能够对侧听觉刺激进行定位和定向。对侧视觉刺激并非如此。顶盖失活后,猫头鹰对位于对侧的20度以上(即,超出同侧眼睛视野的边缘)的视觉刺激表现出完全的忽视。在患有直肠病变的动物中,这种疏忽会随着时间的流逝而减少。单侧灭活卵圆核对三只猫头鹰有不同的作用。对侧声源的响应误差增加了一只猫头鹰,减少了两只。对同侧源的反应误差没有任何明显变化。一只猫头鹰对同侧(但不是对侧)刺激产生反应的可能性降低。对同侧(而不是对侧)刺激的反应潜伏期增加了一个,而对另一种则减少了。然而,所有的猫头鹰通常都定位于同侧和对侧听觉刺激,而卵圆形的核被灭活。(摘要截断了400字)

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