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Titlebook: Quantitative Neuroanatomy in Transmitter Research; Proceedings of an In Luigi F. Agnati,Kjell Fuxe Conference proceedings 1985 The Wenner-G

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Morphometrical and Microdensitometrical Studies on Monoaminergic and Peptidergic Neurons in the Aginoradiography using computer assisted morphometry and microdensitomotry (Agnati et al. 1984). The results indicated the existence of heterogeneities in the degenerative patterns taking place in transmitter-identified nerve cells and receptors in relation to aging. It was . discovered that the meso-st
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Topographic Distribution of Catecholaminergic Neurons in the Rat Medulla Oblongata Using Quantitativrain. A number of studies on the catecholamine (CA) neurons followed, (2,4–8,12–19,,24,) resulting in the demonstration of the existence of the following populations of CA neurons: adrenaline containing neurons — C cell groups (Hokfelt, Fuxe et al, 1974), noradrenaline containing neurons — A cell gr
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Development of Quantitative Methods for the Evaluation of the Entity of Coexistence of Neuroactive Sverlap method and the occlusion method (Agnati et al. 1982, Agnati et al. 1983, Fuxe et al. 1982, 1983, Agnati et al. 1984). In the overlap method the image analyzer can record the position and the perimeter of each nerve cell body visualized by means of the antiserum anti A in a Cartesian plan. Usi
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Principles for the Construction of the Software for Image Analysis of Transmitter-Identified NeuronsIn the present paper we describe this quantitative approach with special reference to the software package developed on an assembled image analyzer based on a stand alone general purpose microcomputer. The hardware configuration is shown together with the basic and specific software used for recepto
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Quantitative Studies of Rodent and Primate Neocortex: Central Monoamine and Peptide Neuronsr functional insight. It has been our view that the most meaningful analysis of transmitter actions at the cellular level rely on an accurate determination as to the origin and targets of a specific transmitter containing system (Bloom, 1975). As a result, we have frequently resorted to detailed man
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Image Analysis of Catecholamine Fluorescence and Immunofluorescence in Studies on Blood Vessel Innertitative methods have contributed valuable data on sympathetic nerves. These have generally involved either counting fluorescent nerve profiles in the light microscope, or making visual estimates of nerve density or fluorescence intensity (see for example, Malmfors, 1965; Dahlström et al., 1966; Bev
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