Literature DB >> 12222815

A shape analysis framework for neuromorphometry.

Luciano da Fontoura Costa1, Edson Tadeu Monteiro Manoel, Fabien Faucereau, Jamel Chelly, Jaap van Pelt, Ger Ramakers.   

Abstract

This paper addresses in an integrated and systematic fashion the relatively overlooked but increasingly important issue of measuring and characterizing the geometrical properties of nerve cells and structures, an area often called neuromorphology. After discussing the main motivation for such an endeavour, a comprehensive mathematical framework for characterizing neural shapes, capable of expressing variations over time, is presented and used to underline the main issues in neuromorphology. Three particularly powerful and versatile families of neuromorphological approaches, including differential measures, symmetry axes/skeletons, and complexity, are presented and their respective potentials for applications in neuroscience are identified. Examples of applications of such measures are provided based on experimental investigations related to automated dendrogram extraction, mental retardation characterization, and axon growth analysis.

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Year:  2002        PMID: 12222815

Source DB:  PubMed          Journal:  Network        ISSN: 0954-898X            Impact factor:   1.273


  15 in total

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8.  MDL constrained 3-D grayscale skeletonization algorithm for automated extraction of dendrites and spines from fluorescence confocal images.

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9.  NETMORPH: a framework for the stochastic generation of large scale neuronal networks with realistic neuron morphologies.

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10.  Classification of HIV-1-mediated neuronal dendritic and synaptic damage using multiple criteria linear programming.

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