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下丘脑外侧神经元:渗透压敏感性及激活大细胞神经分泌神经元的影响。

Lateral hypothalamic neurones: osmosensitivity and the influence of activating magnocellular neurosecretory neurones.

作者信息

Leng G

出版信息

J Physiol. 1982 May;326:35-48. doi: 10.1113/jphysiol.1982.sp014175.

Abstract
  1. The activity of single cells in the supraoptic nucleus and the lateral hypothalamus of urethane-anaesthetized rats was studied during electrical stimulation of the neural stalk.2. Neurones activated antidromically from the neural stalk were either unaffected or, rarely, slightly affected by single shocks or by brief trains of shocks presented at an intensity just below that necessary for antidromic invasion. Thus there does not appear to be a strong synaptic coupling between rat supraoptic neurones.3. In contrast, many lateral hypothalamic neurones, and particularly those in the perinuclear zone, were strongly affected by neural stalk stimulation, being either orthodromically excited or inhibited. Thus, rat magnocellular neurosecretory neurones appear to project, directly or indirectly, to the lateral hypothalamus.4. Thirty-one lateral hypothalamic neurones were studied following an I.P. injection of 1 ml. 1.5 M-NaCl. Eighteen neurones responded to this osmotic stimulus with a change of at least 1 spike/sec in mean firing rate.5. Fifteen of the thirty-one neurones were strongly affected by neural stalk stimulation (eight inhibited, seven excited). Ten of these fifteen neurones were affected in the same way by osmotic stimulation. The remaining sixteen out of thirty-one neurones were unresponsive to neural stalk stimulation, and of these, ten were also unresponsive to osmotic stimulation. Thus most lateral hypothalamic neurones responded in a similar way to neural stalk stimulation and to systemic osmotic stimulation.6. Thus the osmosensitivity of some neurones in the lateral hypothalamus may be mediated by synaptic input arising from the magnocellular neurosecretory neurones. However, the osmosensitivity of some lateral hypothalamic neurones cannot be explained in this way, and probably derives from osmoreceptors other than the magnocellular neurones.
摘要
  1. 在对氨基甲酸乙酯麻醉的大鼠神经柄进行电刺激期间,研究了视上核和下丘脑外侧单个细胞的活动。

  2. 从神经柄逆向激活的神经元,对单个电刺激或强度略低于逆向冲动传入所需强度的短串电刺激,要么没有影响,要么很少受到轻微影响。因此,大鼠视上神经元之间似乎不存在强突触耦合。

  3. 相比之下,许多下丘脑外侧神经元,尤其是核周区的神经元,受到神经柄刺激的强烈影响,表现为顺向兴奋或抑制。因此,大鼠大细胞神经分泌神经元似乎直接或间接地投射到下丘脑外侧。

  4. 在腹腔注射1毫升1.5M氯化钠后,对31个下丘脑外侧神经元进行了研究。18个神经元对这种渗透刺激的反应是平均放电频率至少改变1个脉冲/秒。

  5. 31个神经元中有15个受到神经柄刺激的强烈影响(8个被抑制,7个被兴奋)。这15个神经元中有10个对渗透刺激的反应方式相同。31个神经元中其余16个对神经柄刺激无反应,其中10个对渗透刺激也无反应。因此,大多数下丘脑外侧神经元对神经柄刺激和全身渗透刺激的反应方式相似。

  6. 因此,下丘脑外侧一些神经元的渗透压敏感性可能由大细胞神经分泌神经元产生的突触输入介导。然而,可以用这种方式解释一些下丘脑外侧神经元的渗透压敏感性,其可能源于除大细胞神经元以外的渗透压感受器。

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