Updating the lamellar hypothesis of hippocampal organization

被引:57
作者
Sloviter, Robert S. [1 ]
Lomo, Terje [2 ]
机构
[1] Morehouse Sch Med, Dept Neurobiol, Atlanta, GA 30310 USA
[2] Univ Oslo, Inst Basic Med Sci, Dept Physiol, Oslo, Norway
关键词
hippocampus; hippocampal formation; dentate gyrus; entorhinal cortex; lamellar organization; lateral inhibition; mossy cells; inhibitory interneurons; SOMATOSTATIN-LIKE IMMUNOREACTIVITY; CONTROL INHIBITORY INTERNEURONS; MAJOR POSTSYNAPTIC TARGETS; DENTATE GRANULE CELLS; CA3 PYRAMIDAL CELLS; MOSSY FIBER SYSTEM; ENTORHINAL CORTEX; RAT HIPPOCAMPUS; PERFORANT PATH; NEURONAL TRANSMISSION;
D O I
10.3389/fncir.2012.00102
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Andersen et al. (1971) proposed that excitatory activity in the entorhinal cortex propagates topographically to the dentate gyrus, and on through a "trisynaptic circuit" lying within transverse hippocampal "slices" or "lamellae." In this way, a relatively simple structure might mediate complex functions in a manner analogous to the way independent piano keys can produce a nearly infinite variety of unique outputs. The lamellar hypothesis derives primary support from the "lamellar" distribution of dentate granule cell axons (the mossy fibers), which innervate dentate hilar neurons and area CA3 pyramidal cells and interneurons within the confines of a thin transverse hippocampal segment. Following the initial formulation of the lamellar hypothesis, anatomical studies revealed that unlike granule cells, hilar mossy cells, CA3 pyramidal cells, and Layer II entorhinal cells all form axonal projections that are more divergent along the longitudinal axis than the clearly "lamellar" mossy fiber pathway. The existence of pathways with "translamellar" distribution patterns has been interpreted, incorrectly in our view, as justifying outright rejection of the lamellar hypothesis (Amaral and Witter, 1989). We suggest that the functional implications of longitudinally projecting axons depend not on whether they exist, but on what they do. The observation that focal granule cell layer discharges normally inhibit, rather than excite, distant granule cells suggests that longitudinal axons in the dentate gyrus may mediate "lateral" inhibition and define lamellar function, rather than undermine it. In this review, we attempt a reconsideration of the evidence that most directly impacts the physiological concept of hippocampal lamellar organization.
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页数:16
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