首页> 美国卫生研究院文献>The Journal of Neuroscience >Firing Properties of Rat Lateral Mammillary Single Units: Head Direction Head Pitch and Angular Head Velocity
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Firing Properties of Rat Lateral Mammillary Single Units: Head Direction Head Pitch and Angular Head Velocity

机译:大鼠外侧乳头单个单位的射击属性:头部方向头部间距和角速度

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摘要

Many neurons in the rat anterodorsal thalamus (ADN) and postsubiculum (PoS) fire selectively when the rat points its head in a specific direction in the horizontal plane, independent of the animal’s location and ongoing behavior. The lateral mammillary nuclei (LMN) are interconnected with both the ADN and PoS and, therefore, are in a pivotal position to influence ADN/PoS neurophysiology. To further understand how the head direction (HD) cell signal is generated, we recorded single neurons from the LMN of freely moving rats. The majority of cells discharged as a function of one of three types of spatial correlates: (1) directional heading, (2) head pitch, or (3) angular head velocity (AHV). LMN HD cells exhibited higher peak firing rates and greater range of directional firing than that of ADN and PoS HD cells. LMN HD cells were modulated by angular head velocity, turning direction, and anticipated the rat’s future HD by a greater amount of time (∼95 msec) than that previously reported for ADN HD cells (∼25 msec). Most head pitch cells discharged when the rostrocaudal axis of the rat’s head was orthogonal to the horizontal plane. Head pitch cell firing was independent of the rat’s location, directional heading, and its body orientation (i.e., the cell discharged whenever the rat pointed its head up, whether standing on all four limbs or rearing). AHV cells were categorized as fast or slow AHV cells depending on whether their firing rate increased or decreased in proportion to angular head velocity. These data demonstrate that LMN neurons code direction and angular motion of the head in both horizontal and vertical planes and support the hypothesis that the LMN play an important role in processing both egocentric and allocentric spatial information.
机译:当大鼠将头指向水平面中的特定方向时,大鼠前角丘脑(ADN)和臼后(PoS)中的许多神经元都会有选择地激发,而与动物的位置和行为无关。外侧乳突核(LMN)与ADN和PoS互连,因此处于枢纽位置以影响ADN / PoS神经生理学。为了进一步了解头方向(HD)细胞信号是如何产生的,我们记录了自由运动大鼠LMN的单个神经元。根据三种类型的空间相关函数之一释放的大多数单元格:(1)方向航向,(2)航向俯仰或(3)航向角速度(AHV)。与ADN和PoS HD电池相比,LMN HD电池具有更高的峰值发射速率和更大的定向发射范围。 LMN HD细胞受到角头速度,转弯方向的调制,并且比先前报道的ADN HD细胞(约25毫秒)要花费更多的时间(约95毫秒)来预测大鼠的未来HD。当大鼠头部的头尾尾轴与水平面正交时,大多数头基音细胞放电。头节距细胞发射与大鼠的位置,定向方向及其身体定向无关(即,无论大鼠四肢站立还是站立,只要大鼠将头朝上,该细胞就会放电。根据AHV电池的发射速度是与角头速度成正比还是增加,将其分为快或慢AHV电池。这些数据表明,LMN神经元在水平和垂直平面上编码头部的方向和角运动,并支持LMN在处理以自我为中心和以同心为中心的空间信息中起重要作用的假设。

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