Kisvarday Z F, Cowey A, Smith A D, Somogyi P
1st Department of Anatomy, Semmelweis University Medical School, Budapest, Hungary.
J Neurosci. 1989 Feb;9(2):667-82. doi: 10.1523/JNEUROSCI.09-02-00667.1989.
The intrinsic excitatory amino acid pathways within the striate cortex of monkeys were studied by autoradiographic detection of retrogradely labeled somata following microinjections of D-3H-aspartate (D-3H-Asp) into different layers. The labeled amino acid was selectively accumulated by subpopulations of neurons and, to a small extent, by glial cells, the latter mainly in the supragranular layers. Immunocytochemical detection of neurons containing GABA showed that, apart from a few cells exclusively in layer I, GABAergic neurons do not accumulate D-3H-Asp. Several lines of evidence suggest that D-3H-Asp uptake occurred only at nerve terminals; thus, the pattern of perikaryal labeling allowed the delineation of interlaminar and lateral projections. Neurons in layer I probably project laterally, and layer I receives wide-ranging projections from layer IVB and layer V from cells up to 1300 microns laterally. Some neurons in layer II send a focused projection to lower layer VI. Some neurons in layers II/III project up to 1 mm laterally within their own layer, but relatively few neurons can be labeled in these projections. Similarly, in layers II/III few neurons can be retrogradely labeled from layers V and upper VI, and this projection is organized such that cells closer to the pia project deeper in layer V/VI. The connections of layer IVA could not be revealed separately because of the difficulty of confining injections to this thin sublamina. Neurons in layer IVB project up to 1300 microns within IVB itself. A small number of cells from IVB also project to layers III, IVC-alpha, V, and VI with much more restricted lateral spread. Neurons in upper IVC-alpha send axons to layer IVB with at least 600-800 microns lateral spread. Neurons in lower IVC-alpha/upper IVC-beta project to layer III with at least 300-500 microns lateral spread. The bottom 50-80 microns of layer IVC-beta contains neurons with a very focused projection, apparently exclusively to the layer III/IVA border region. Both layers IVC alpha and beta have rich connections within themselves, the beta sublayer having more restricted lateral connections. Some neurons in layer IVC-beta give a laterally restricted small input to layers IVC-alpha and IVB. Both IVC-alpha and -beta project to layers V and VI, and these projections are spread at least 400 microns laterally. Neurons in layer V project to all layers, but the projection to layers I-III and within layer V itself spread much further laterally than the projections to layers IV and VI.(ABSTRACT TRUNCATED AT 400 WORDS)
通过向猴纹状皮层的不同层微量注射D-3H-天冬氨酸(D-3H-Asp)后,利用放射自显影检测逆行标记的胞体,对其内在兴奋性氨基酸通路进行了研究。标记的氨基酸被神经元亚群选择性摄取,在较小程度上也被神经胶质细胞摄取,后者主要位于颗粒上层。对含γ-氨基丁酸(GABA)的神经元进行免疫细胞化学检测表明,除了仅在I层的少数细胞外,GABA能神经元不摄取D-3H-Asp。几条证据表明,D-3H-Asp仅在神经末梢摄取;因此,胞体标记模式有助于描绘层间和侧向投射。I层的神经元可能向外侧投射,I层从IVB层和V层接收广泛的投射,这些细胞向外可达1300微米。II层的一些神经元向VI层下部发出集中投射。II/III层的一些神经元在其自身层内向外侧投射达1毫米,但在这些投射中能被标记的神经元相对较少。同样,在II/III层,从V层和VI层上部很少能逆行标记到神经元,并且这种投射的组织方式是,靠近软脑膜的细胞向V/VI层深部投射。由于难以将注射局限于IVA层这个薄的亚层,所以无法单独揭示其连接。IVB层的神经元在IVB层内投射达1300微米。IVB层的少数细胞也投射到III层、IVC-α层、V层和VI层,但其侧向扩散范围更有限。IVC-α层上部的神经元将轴突发送到IVB层,侧向扩散至少600 - 800微米。IVC-α层下部/IVC-β层上部的神经元投射到III层,侧向扩散至少300 - 500微米。IVC-β层底部50 - 80微米包含具有非常集中投射的神经元,显然仅投射到III/IVA层边界区域。IVC-α层和β层自身内部都有丰富的连接,β亚层具有更有限的侧向连接。IVC-β层的一些神经元向IVC-α层和IVB层提供侧向受限的小输入。IVC-α层和β层都投射到V层和VI层,并且这些投射侧向扩散至少400微米。V层的神经元投射到所有层,但投射到I - III层和V层本身的侧向扩散比投射到IV层和VI层更远。(摘要截断于400字)