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Segregated Anatomical Input to Sub-Regions of the Rodent Superior Colliculus Associated with Approach and Defense

机译:与方法和防御相关的啮齿类动物上丘囊亚区域的分离解剖输入

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摘要

The superior colliculus (SC) is responsible for sensorimotor transformations required to direct gaze toward or away from unexpected, biologically salient events. Significant changes in the external world are signaled to SC through primary multisensory afferents, spatially organized according to a retinotopic topography. For animals, where an unexpected event could indicate the presence of either predator or prey, early decisions to approach or avoid are particularly important. Rodents’ ecology dictates predators are most often detected initially as movements in upper visual field (mapped in medial SC), while appetitive stimuli are normally found in lower visual field (mapped in lateral SC). Our purpose was to exploit this functional segregation to reveal neural sites that can bias or modulate initial approach or avoidance responses. Small injections of Fluoro-Gold were made into medial or lateral sub-regions of intermediate and deep layers of SC (SCm/SCl). A remarkable segregation of input to these two functionally defined areas was found. (i) There were structures that projected only to SCm (e.g., specific cortical areas, lateral geniculate and suprageniculate thalamic nuclei, ventromedial and premammillary hypothalamic nuclei, and several brainstem areas) or SCl (e.g., primary somatosensory cortex representing upper body parts and vibrissae and parvicellular reticular nucleus in the brainstem). (ii) Other structures projected to both SCm and SCl but from topographically segregated populations of neurons (e.g., zona incerta and substantia nigra pars reticulata). (iii) There were a few brainstem areas in which retrogradely labeled neurons were spatially overlapping (e.g., pedunculopontine nucleus and locus coeruleus). These results indicate significantly more structures across the rat neuraxis are in a position to modulate defense responses evoked from SCm, and that neural mechanisms modulating SC-mediated defense or appetitive behavior are almost entirely segregated.
机译:上丘(SC)负责将视线引导至或远离意想不到的生物学显着事件所需的感觉运动转换。外部世界的重大变化通过主要的多感觉传入信号传递给SC,这些传入信号根据视网膜局部地形在空间上进行组织。对于动物来说,意料之外的事件可能表明存在掠食者或猎物,因此尽早做出接近或避免的决定尤为重要。啮齿动物的生态学决定,捕食者最初最常被发现为上部视野中的运动(位于内侧SC中),而食欲刺激通常位于下部视野中(位于外侧SC中)。我们的目的是利用这种功能隔离来揭示可能偏向或调节初始方法或避免反应的神经部位。将少量氟金注入到SC中间层和深层(SCm / SCl)的内侧或外侧子区域中。发现这两个功能定义区域的输入存在明显的隔离。 (i)有些结构仅投射到SCm(例如特定的皮质区域,丘脑外侧膝状体和丘脑上丘脑,腹侧和下丘脑前丘脑核以及几个脑干区域)或SCl(例如代表上半身部位和触须的主要体感皮质)和脑干中的小细胞网状核)。 (ii)投射到SCm和SCl的其他结构,但来自地形分离的神经元种群(例如,带状带和黑质网状体)。 (iii)在少数脑干区域中,逆行标记的神经元在空间上是重叠的(例如,小足足突核和蓝斑轨迹)。这些结果表明,整个大鼠神经轴上的更多结构可以调节SCm引起的防御反应,并且调节SC介导的防御或食欲行为的神经机制几乎完全隔离。

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