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- W2018048144 abstract "Serial sections of the cat's thalamus were incubated with a purified antiserum raised against gamma-aminobutyric acid conjugated to bovine serum albumin by distilled glutaraldehyde. This serum has been extensively characterized and appears to react selectively with fixed gamma-aminobutyric acid in brain tissue treated with glutaraldehyde. Adjoining sections were stained with thionin and served as invaluable guides for a correct evaluation of the immunolabelling pattern. In the neuropil the intensity of the immunostaining varies considerably between thalamic nuclei and even between nuclear subdivisions. The neuropil staining appears particularly dense in the nuclei parataenialis, periventricularis, centralis medialis, reuniens, rhomboideus, habenularis lateralis, centrum medianum, parafascicularis, subparafascicularis, submedius, dorsal and ventral parts of the lateral geniculate body, the dorsal part of the medial geniculate body, the posterior complex, suprageniculate nucleus, pulvinar and parts of the lateral posterior nucleus. The pulvinar/lateralis posterior complex shows a particularly well-differentiated staining pattern which closely matches Updyke's [ 93. Updyke B.V. A reevaluation of the functional organization and cytoarchitecture of the feline lateral posterior complex, with observations on adjoining cell groups. J. comp. Neurol. 1983; 219: 143-181 Crossref PubMed Google Scholar ) J. comp. Neurol.219 143–181] parcellation of this region. In several thalamic nuclei or subareas—and notably in those relay nuclei which are known to project upon non-primary sensory cortical areas—the immunostained neuropil is characterized by many puncta encircling an unstained profile. With few exceptions all thalamic nuclei displayed immunoreactive nerve cell bodies. Several examples were found of a mismatch between the number of such cells and the staining intensity of the neuropil. Thus the nuclei periventricularis, parafascicularis, subparafascicularis, parataenialis, limitans and centrum medianum although being very rich in neuropil staining have practically no immunostained perikarya. Rough estimates were made of the size and the proportion of gamma-aminobutyric acid labelled neurons in all major—and some minor—thalamic nuclei and their subdivisions. In some thalamic nuclei, notably the nuclei reticularis, anterior dorsalis, lateralis dorsalis, centralis lateralis, ventralis posterior and the dorsal lateral geniculate body, the population of immunoreactive neurons is distinctly heterogeneous with regard to soma size. The findings are discussed with regard to previous immunocytochemical studies of the distribution of gamma-aminobutyric acid and its synthesizing enzyme in the thalamus. Particular emphasis is put on the great species differences which appear to exist in this respect." @default.
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- W2018048144 date "1987-06-01" @default.
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- W2018048144 title "Gamma-aminobutyrate-like immunoreactivity in the thalamus of the cat" @default.
- W2018048144 cites W1566565863 @default.
- W2018048144 cites W1568880277 @default.
- W2018048144 cites W1571579185 @default.
- W2018048144 cites W1713357763 @default.
- W2018048144 cites W1766477380 @default.
- W2018048144 cites W1903480473 @default.
- W2018048144 cites W195559676 @default.
- W2018048144 cites W1969263710 @default.
- W2018048144 cites W1971866692 @default.
- W2018048144 cites W1973430742 @default.
- W2018048144 cites W1974350891 @default.
- W2018048144 cites W1977274382 @default.
- W2018048144 cites W1977412641 @default.
- W2018048144 cites W1979804092 @default.
- W2018048144 cites W1980689909 @default.
- W2018048144 cites W1981231804 @default.
- W2018048144 cites W1985190412 @default.
- W2018048144 cites W1987908885 @default.
- W2018048144 cites W2004066770 @default.
- W2018048144 cites W2004237971 @default.
- W2018048144 cites W2008303605 @default.
- W2018048144 cites W2009829869 @default.
- W2018048144 cites W2011832345 @default.
- W2018048144 cites W2014350119 @default.
- W2018048144 cites W2014857228 @default.
- W2018048144 cites W2016073050 @default.
- W2018048144 cites W2017855202 @default.
- W2018048144 cites W2019660990 @default.
- W2018048144 cites W2021200978 @default.
- W2018048144 cites W2021705823 @default.
- W2018048144 cites W2026077224 @default.
- W2018048144 cites W2028066020 @default.
- W2018048144 cites W2028728373 @default.
- W2018048144 cites W2031957090 @default.
- W2018048144 cites W2032218866 @default.
- W2018048144 cites W2032285322 @default.
- W2018048144 cites W2035409386 @default.
- W2018048144 cites W2038605882 @default.
- W2018048144 cites W2041159882 @default.
- W2018048144 cites W2042434369 @default.
- W2018048144 cites W2043017439 @default.
- W2018048144 cites W2043402599 @default.
- W2018048144 cites W2052690646 @default.
- W2018048144 cites W2052885565 @default.
- W2018048144 cites W2065617817 @default.
- W2018048144 cites W2067415866 @default.
- W2018048144 cites W2069398817 @default.
- W2018048144 cites W2080246940 @default.
- W2018048144 cites W2084900326 @default.
- W2018048144 cites W2086207981 @default.
- W2018048144 cites W2087438797 @default.
- W2018048144 cites W2087906786 @default.
- W2018048144 cites W2089957859 @default.
- W2018048144 cites W2091451094 @default.
- W2018048144 cites W2094861153 @default.
- W2018048144 cites W2114179542 @default.
- W2018048144 cites W2129333529 @default.
- W2018048144 cites W2158291926 @default.
- W2018048144 cites W2159026414 @default.
- W2018048144 cites W2162429788 @default.
- W2018048144 cites W2167153260 @default.
- W2018048144 cites W2222239144 @default.
- W2018048144 cites W2286615781 @default.
- W2018048144 cites W2330977039 @default.
- W2018048144 cites W2401708274 @default.
- W2018048144 cites W2413760876 @default.
- W2018048144 cites W2884454851 @default.
- W2018048144 cites W4299311003 @default.
- W2018048144 doi "https://doi.org/10.1016/0306-4522(87)90037-6" @default.
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