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Endogenous modulation of ACh release by somatostatin and the differential roles of Ca2+ channels

机译:生长抑素对ACh释放的内源性调节及Ca2 +通道的不同作用

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摘要

In cats, spinal and medullary input to the thalamic nucleus submedius (Sm) arises almost exclusively from neurons in the marginal zone. As a result, it has been proposed that Sm may be specifically involved in nociception. In the present study, we determined the locations of neurons in the spinal cord and caudal medulla that project to Sm in rats. Iontophoretic injections of Fluoro-Gold or pressure injections of Fast blue were made into Sm. In each of the 6 rats that received small injections of Fluoro-Gold into Sm, only a small number (mean = 90) of retrogradely labeled neurons were found throughout the 18 segments of the spinal cord examined. Surprisingly, almost no labeled neurons (less than 1%) were counted in the marginal zone of the spinal cord. The majority were located in the deep dorsal horn and intermediate zone/ventral horn. In contrast, many neurons were labeled in the marginal zone of nucleus caudalis. Injections of Fluoro-Gold into any of a number of nuclei near Sm also labeled only a small number of neurons in the spinal cord and almost no neurons in the marginal zone. Using identical injection parameters, we injected Fluoro-Gold into the ventrobasal complex or posterior thalamic group. Hundreds of neurons in the spinal cord, including many in the marginal zone, were labeled following these injections. These results indicate that the techniques used to inject Fluoro-Gold into Sm were capable of labeling many projection neurons, including those in the marginal zone. Larger pressure injections of Fast blue were also made into Sm of 3 rats. The distribution of labeled neurons in nucleus caudalis and the spinal cord was similar to that following iontophoretic injections of Fluoro-Gold. Again, few marginal zone neurons were labeled in the spinal cord in any of these rats. Therefore, our results indicate that few spinothalamic tract neurons appear to project to Sm or any of several adjacent nuclei, and virtually no marginal zone neurons in the spinal cord project to these areas.
机译:在猫中,丘脑中膜下核(Sm)的脊髓和髓质输入几乎完全来自边缘区的神经元。结果,已经提出Sm可以特别地参与伤害感受。在本研究中,我们确定了在大鼠脊髓和尾髓中神经元的位置,这些神经元投射到Sm。将氟金的离子电渗注射或耐久蓝的压力注射制成Sm。在向Sm注射少量氟金的6只大鼠中,在检查的18个脊髓节段中仅发现少量(平均= 90)逆行标记的神经元。令人惊讶的是,在脊髓的边缘区域几乎没有标记出的神经元(少于1%)被计数。大多数位于深背角和中间区/腹角。相反,许多神经元被标记在尾状核的边缘区域。向Sm附近的许多核中的任何核中注入氟金也仅标记了脊髓中的少量神经元,而在边缘区域中几乎没有神经元。使用相同的注射参数,我们将氟金注射到腹基底复合体或丘脑后组。注射后标记了脊髓中数百个神经元,包括边缘区域的许多神经元。这些结果表明,将氟金注入Sm的技术能够标记许多投射神经元,包括边缘区域的投射神经元。还对3只大鼠的Sm进行了较大压力的耐晒蓝注射。尾神经核和脊髓中标记神经元的分布类似于离子导入氟金后。同样,在这些大鼠中的任何脊髓中,几乎没有边缘区神经元被标记。因此,我们的结果表明,几乎没有脊髓丘脑束神经元投射到Sm或几个相邻核中的任何一个,并且脊髓中几乎没有边缘区神经元投射到这些区域。

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