首页> 外文期刊>American Journal of Physiology >Integrative responses of neurons in nucleus tractus solitarius to visceral afferent stimulation and vestibular stimulation in vertical planes.
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Integrative responses of neurons in nucleus tractus solitarius to visceral afferent stimulation and vestibular stimulation in vertical planes.

机译:垂直平面中核泌瓜菌根神经元对垂直刺激和前庭刺激的整合反应。

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Anatomical studies have demonstrated that the vestibular nuclei project to nucleus tractus solitarius (NTS), but little is known about the effects of vestibular inputs on NTS neuronal activity. Furthermore, lesions of NTS abolish vomiting elicited by a variety of different triggering mechanisms, including vestibular stimulation, suggesting that emetic inputs may converge on the same NTS neurons. As such, an emetic stimulus that activates gastrointestinal (GI) receptors could alter the responses of NTS neurons to vestibular inputs. In the present study, we examined in decerebrate cats the responses of NTS neurons to rotations of the body in vertical planes before and after the intragastric administration of the emetic compound copper sulfate. The activity of more than one-third of NTS neurons was modulated by vertical vestibular stimulation, with most of the responsive cells having their firing rate altered by rotations in the head-up or head-down directions. These responses were aligned with head position in space, as opposed to the velocity of head movements. The activity of NTS neurons with baroreceptor, pulmonary, and GI inputs could be modulated by vertical plane rotations. However, injection of copper sulfate into the stomach did not alter the responses to vestibular stimulation of NTS neurons that received GI inputs, suggesting that the stimuli did not have additive effects. These findings show that the detection and processing of visceral inputs by NTS neurons can be altered in accordance with the direction of ongoing movements.
机译:解剖学研究表明,前庭核项目对核泌尿菌(NTS),但对于前庭输入对NTS神经元活性的影响几乎不了解。此外,通过各种不同的触发机制引发的NTS的病变废除,包括前庭刺激,表明催吐表意孔可能会聚在同一NTS神经元上。因此,激活胃肠道(GI)受体的辐射刺激可以改变NTS神经元对前庭投入的反应。在本研究中,我们在DeceRebrate Cats中检查了NTS神经元在胃肠硫酸铜的胃内施用之前和之后的垂直平面中的身体旋转的反应。通过垂直前庭刺激调节超过三分之一的NTS神经元的活性,其中大部分响应电池具有其烧制率通过抬头或向下方向上的旋转而改变。这些响应与空间中的头部位置对齐,而不是头部运动的速度。 NTS神经元具有鼓风肌,肺和GI输入的活性可以通过垂直平面旋转来调制。然而,将硫酸铜注射到胃中没有改变接受GI投入的NTS神经元前庭刺激的反应,这表明刺激没有添加效应。这些发现表明,可以根据正在进行的运动的方向改变NTS神经元的检测和处理NTS神经元。

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