Ross C A, Ruggiero D A, Joh T H, Park D H, Reis D J
J Comp Neurol. 1984 Sep 10;228(2):168-85. doi: 10.1002/cne.902280204.
Anterograde, retrograde, and combined axonal transport methods were used to describe the descending efferent projections of a region of rostral ventrolateral medullary reticular formation important in cardiovascular control. We have termed this region, which contains C1 adrenaline-synthesizing neurons, the nucleus reticularis rostroventrolateralis (RVL). Efferent projections from the RVL innervate all segmental levels of the thoracic intermediolateral and intermediomedial columns as shown using retrograde transport of lectin-conjugated horseradish peroxidase (HRP) or fast blue dye, and anterograde transport of either HRP or labeled amino acids. The projection is highly specific in that there are no projections to thoracic dorsal or ventral horns. This innervation corresponds to the distribution of preganglionic sympathetic neurons in the intermediolateral column. In particular, terminals surround neurons projecting to the adrenal medulla, as demonstrated by combined anterograde and retrograde transport methods at the light level. Terminals containing phenylethanolamine-N-methyl transferase (PNMT) were mapped using immunocytochemical techniques. PNMT-labeled terminals were present at all levels of thoracic intermediolateral column, in a distribution similar to that of the descending projections from the RVL. We have previously shown using double label techniques (Ross et al., '81-'83), that many of the spinal projections of the RVL originate from C1 neurons. These data support our suggestion that certain bulbospinal neurons within the RVL, in particular the C1 neurons, are crucial for tonic vasomotor control.
运用顺行、逆行和联合轴突运输方法,描述了延髓头端腹外侧网状结构中一个在心血管控制方面很重要的区域的下行传出投射。我们将这个包含C1肾上腺素合成神经元的区域称为延髓头端腹外侧网状核(RVL)。如使用凝集素结合辣根过氧化物酶(HRP)或快蓝染料的逆行运输,以及HRP或标记氨基酸的顺行运输所示,RVL的传出投射支配胸段中间外侧柱和中间内侧柱的所有节段水平。这种投射具有高度特异性,因为没有向胸段背角或腹角的投射。这种神经支配与中间外侧柱中节前交感神经元的分布相对应。特别是,在光镜水平通过联合顺行和逆行运输方法证明,终末围绕着投射至肾上腺髓质的神经元。使用免疫细胞化学技术绘制了含有苯乙醇胺 - N - 甲基转移酶(PNMT)的终末分布图。PNMT标记的终末存在于胸段中间外侧柱的所有水平,其分布与RVL的下行投射相似。我们之前使用双重标记技术(Ross等人,1981 - 1983年)表明,RVL的许多脊髓投射起源于C1神经元。这些数据支持了我们的观点,即RVL内的某些延髓脊髓神经元,特别是C1神经元,对紧张性血管运动控制至关重要。