GABA Rabbit Polyclonal References

GABA Rabbit Polyclonal, Conjugated (Cat. #AB-T10)

29 entries found for : ab-t10

GABA uptake and phenotypic characteristics of the subcommissural ependymocytes of the semi-desertic rodent, Meriones shawi: correlation with serotoninergic innervation.

Laalaoui A, Chouaf L, Didier-Bazes M, Geffard M, Belin MF, Gamrani H (1996) GABA uptake and phenotypic characteristics of the subcommissural ependymocytes of the semi-desertic rodent, Meriones shawi: correlation with serotoninergic innervation. Cell Tissue Res 285(3):435-443. doi: 10.1007/s004410050660

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Neuritic GABAergic synapses in insect neurosecretory cells.

Dubreil V, Sinakevitch IG, Hue B, Geffard M (1994) Neuritic GABAergic synapses in insect neurosecretory cells. Neurosci Res 19:235-240. doi: 10.1016/0168-0102(94)90148-1

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Distribution of GABA immunoreactive systems in the forebrain and midbrain of the chameleon.

Bennis M, Calas A, Geffard M, Gamrani H (1991) Distribution of GABA immunoreactive systems in the forebrain and midbrain of the chameleon. Brain Res Bull 26:891-898. doi: 10.1016/0361-9230(91)90254-h

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Ultrastructural double-labelling study of dopamine terminals and GABA-containing neurons in rat anteromedial cerebral cortex.

Verney C, Alvarez C, Geffard M, Berger B (1990) Ultrastructural double-labelling study of dopamine terminals and GABA-containing neurons in rat anteromedial cerebral cortex. Eur J Neurosci 2:960-972. doi: 10.1111/j.1460-9568.1990.tb00008.x

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Expression of GABA-immunoreactivity by spinal motoneurons of some vertebrates.

Philippe E, Gaulin F, Delagrave C, Geffard M (1990) Expression of GABA-immunoreactivity by spinal motoneurons of some vertebrates. Neurosci Lett 116:12-16. doi: 10.1016/0304-3940(90)90378-m

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Immunohistochemical evidence for GABAergic cell bodies in the medial nucleus of the trapezoid body and in the lateral vestibular nucleus in the guinea pig brainstem.

Dupont J, Geffard M, Calas A, Aran JM (1990) Immunohistochemical evidence for GABAergic cell bodies in the medial nucleus of the trapezoid body and in the lateral vestibular nucleus in the guinea pig brainstem. Neurosci Lett 111:263-268. doi: 10.1016/0304-3940(90)90272-b

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Immunocytochemical and autoradiographic studies of the endocrine cells interacting with GABA in the rat stomach.

Gilon P, Mallefet J, De Vriend C, Pauwels S, Geffard M, Campistron G, Remacle C (1990) Immunocytochemical and autoradiographic studies of the endocrine cells interacting with GABA in the rat stomach. Histochem 93:645-654. doi: 10.1007/BF00272208

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Distribution of GABA-immunoreactive neurons in the forebrain of the goldfish, Carassius auratus.

Martinoli MG, Dubourg P, Geffard M, Calas A, Kah O (1990) Distribution of GABA-immunoreactive neurons in the forebrain of the goldfish, Carassius auratus. Cell Tissue Res 260:77-84. doi: 10.1007/BF00297492

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Initial GABAergic expression in embryonic amphibian neuroblasts after neural induction.

Pituello F, Kan P, Geffard M, Duprat A (1989) Initial GABAergic expression in embryonic amphibian neuroblasts after neural induction. Int J Dev Biol 33:445-453.

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Co-localization of tyrosine hydroxylase and GABA immunoreactivities in human cortical neurons.

Trottier S, Geffard M, Evrard B (1989) Co-localization of tyrosine hydroxylase and GABA immunoreactivities in human cortical neurons. Neurosci Lett 106:76-82. doi: 10.1016/0304-3940(89)90205-x

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Demonstration of GABAergic cell bodies in the suprachiasmatic nucleus: in situ hybridization of glutamic acid decarboxylase (GAD) mRNA and immunocytochemistry of GAD and GABA.

Okamura H, Berod A, Julien JF, Geffard M, Kitahama K, Mallet J, Bobillier P (1989) Demonstration of GABAergic cell bodies in the suprachiasmatic nucleus: in situ hybridization of glutamic acid decarboxylase (GAD) mRNA and immunocytochemistry of GAD and GABA. Neurosci Lett 102:131-136. doi: 10.1016/0304-3940(89)90067-0

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Simultaneous immunogold labeling of GABAergic terminals and vasopressin-containing neurons in the rat paraventricular nucleus.

Decavel C, Dubourg P, Leon-Henri B, Geffard M, Calas A (1989) Simultaneous immunogold labeling of GABAergic terminals and vasopressin-containing neurons in the rat paraventricular nucleus. Cell Tissue Res 255:77-80. doi: 10.1007/BF00229068

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[Cells presenting GABA immunoreactivity in the hypothalamus of the cat].

Kitahama K, Sallanon M, Okamura H, Geffard M, Jouvet M (1989) [Cells presenting GABA immunoreactivity in the hypothalamus of the cat]. C R Acad Sci 308(19):507-511.

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Immunocytochemical detection of GABAergic nerve cells in the human temporal cortex using a direct g-aminobutyric acid antiserum.

Schiffmann S, Campistron G, Tugendhaft P, Brotchi J, Flament-Durand J, Geffard M, Vanderhaeghen JJ (1988) Immunocytochemical detection of GABAergic nerve cells in the human temporal cortex using a direct g-aminobutyric acid antiserum. Brain Res 442:270-278. doi: 10.1016/0006-8993(88)91512-0

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Immunoelectron microscopy identifies several types of GABA-containing efferent synapses in the guinea-pig organ of corti.

Eybalin M, Parnaud C, Geffard M, Pujol R (1988) Immunoelectron microscopy identifies several types of GABA-containing efferent synapses in the guinea-pig organ of corti. Neuroscience 24:29-38. doi: 10.1016/0306-4522(88)90308-9

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Immunocytochemical localisation of GABA in endocrine cells of the rat entero-pancreatic system.

Gilon P, Campistron G, Geffard M, Remacle C (1988) Immunocytochemical localisation of GABA in endocrine cells of the rat entero-pancreatic system. Biol Cell 62:265-273.

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Central GABAergic innervation of the pituitary in goldfish: a radioautographic and immunocytochemical study at the electron microscope level.

Kah O, Dubourg P, Martinoli MG, Rabhi M, Gonnet F, Geffard M, Calas A (1987) Central GABAergic innervation of the pituitary in goldfish: a radioautographic and immunocytochemical study at the electron microscope level. General and Comparative Endocrinol 67:324-332. doi: 10.1016/0016-6480(87)90186-9

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Suppression of oscillatory activity in crustacean pyloric neurons: implication of GABAergic inputs.

Cazalets JR, Cournil I, Geffard M, Moulins M (1987) Suppression of oscillatory activity in crustacean pyloric neurons: implication of GABAergic inputs. J Neurosci 7:2884-2893. doi: 10.1523/JNEUROSCI.07-09-02884.1987

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Convergence of electrotonic club endings, GABA and serotoninergic terminals on second order neurons of the electrosensory pathway in mormyrid fish, Gnathonemus petersii and Brienomyrus niger (Teleostei).

Denizot JP, Clausse S, Elekes K, Geffard M, Grant K, Libouban S, Ravaille-Veron M, Szabo T (1987) Convergence of electrotonic club endings, GABA and serotoninergic terminals on second order neurons of the electrosensory pathway in mormyrid fish, Gnathonemus petersii and Brienomyrus niger (Teleostei). Cell Tissue Res 249:301-309. doi: 10.1007/BF00215512

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Immunocytochemical localization and morphology of GABA-containing neurons in the prefrontal and frontoparietal cortex of the rat.

Esclapez M, Campistron G, Trottier S (1987) Immunocytochemical localization and morphology of GABA-containing neurons in the prefrontal and frontoparietal cortex of the rat. Neurosci Lett 77:131-136. doi: 10.1016/0304-3940(87)90574-x

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Anatomical distribution and ultrastructural organization of the GABAergic system in the rat spinal cord. An immunocytochemical study using anti-GABA antibodies.

Magoul R, Onteniente B, Geffard M, Calas A (1987) Anatomical distribution and ultrastructural organization of the GABAergic system in the rat spinal cord. An immunocytochemical study using anti-GABA antibodies. Neuroscience 20:1001-1009. doi: 10.1016/0306-4522(87)90258-2

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Ultrastructural localization of GABA in the supraoptic nucleus and neural lobe.

Buijs RM, Van Vulpen EHS, Geffard M (1987) Ultrastructural localization of GABA in the supraoptic nucleus and neural lobe. Neuroscience 20:347-355. doi: 10.1016/0306-4522(87)90025-x

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Immunocytochemical approach of GABAergic innervation of the mouse spinal cord using antibodies to GABA.

Kaduri AJ, Magoul A, Lescaudron L, Campistron G, Calas A (1987) Immunocytochemical approach of GABAergic innervation of the mouse spinal cord using antibodies to GABA. J HirnForch 28(3):349-355.

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Immunocytochemical study of the GABAergic innervation of the mouse pituitary by use of antibodies against gamma-aminobutyric acid (GABA).

Rabhi M, Onteniente B, Kah O, Geffard M, Calas A (1987) Immunocytochemical study of the GABAergic innervation of the mouse pituitary by use of antibodies against gamma-aminobutyric acid (GABA). Cell Tissue Res 247:33-40. doi: 10.1007/BF00216544

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An ultrastructural study of GABA-immunoreactive neurons and terminals in the septum of the rat.

Onteniente B, Geffard M, Campistron G, Calas A (1987) An ultrastructural study of GABA-immunoreactive neurons and terminals in the septum of the rat. J Neurosci 7:48-54. doi: 10.1523/JNEUROSCI.07-01-00048.1987

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Effects of long term ethanol consumption on GABAergic neurons in the mouse hippocampus: a quantitative immunocytochemical study.

Lescaudron L, Seguela P, Geffard M, Verna A (1986) Effects of long term ethanol consumption on GABAergic neurons in the mouse hippocampus: a quantitative immunocytochemical study. Drug Alcohol Dep 18:377-384. doi: 10.1016/0376-8716(86)90102-x

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Gamma-aminobutyric acid immunoreactivity in the rat hippocampus. A light and electron microscopic study with anti-GABA-antibodies.

Gamrani H, Onteniente B, Seguela P, Geffard M, Calas A (1986) Gamma-aminobutyric acid immunoreactivity in the rat hippocampus. A light and electron microscopic study with anti-GABA-antibodies. Brain Res 364:30-38. doi: 10.1016/0006-8993(86)90984-4

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GABA immunoreactivity in the primary nuclei of the auditory central nervous system.

Peyret D, Geffard M, Aran JM (1986) GABA immunoreactivity in the primary nuclei of the auditory central nervous system. Hearing Res 23:115-121. doi: 10.1016/0378-5955(86)90008-0

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Decreases in the binding of (3H) GABA and (3H) muscimol to particulate fraction of rat brain produced by human sera: some speculations.

Geffard M, De Feudis FV, Varga V, Mandel P (1980) Decreases in the binding of (3H) GABA and (3H) muscimol to particulate fraction of rat brain produced by human sera: some speculations. Gen Pharmacol 11:425-428. doi: 10.1016/0306-3623(80)90027-0

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