DocumentCode :
1406159
Title :
Three-Dimensional Motor Neuron Morphology Estimation in the Drosophila Ventral Nerve Cord
Author :
Tsechpenakis, Gavriil ; Mukherjee, Prateep ; Kim, Michael D. ; Chiba, Akira
Author_Institution :
Comput. & Inf. Sci. Dept., Indiana Univ.-Purdue Univ. Indianapolis, Indianapolis, IN, USA
Volume :
59
Issue :
5
fYear :
2012
fDate :
5/1/2012 12:00:00 AM
Firstpage :
1253
Lastpage :
1263
Abstract :
Type-specific dendritic arborization patterns dictate synaptic connectivity and are fundamental determinants of neuronal function. We exploit the morphological stereotypy and relative simplicity of the Drosophila nervous system to model the diverse neuronal morphologies of individual motor neurons (MNs) and understand underlying principles of synaptic connectivity in a motor circuit. Our computational approach aims at the reconstruction of the neuron morphology, namely the robust segmentation of the neuron volumes from their surroundings with the simultaneous partitioning into their compartments, namely the soma, axon, and dendrites. We use the idea of cosegmentation, where every image along the z -axis (depth) is segmented using information from “neighboring” depths. We use 3-D Haar-like features to model appearance. Because soma and axon are determined by their distinctive shapes, we define an implicit shape representation of the 2-D segmentation sets to drive cosegmentation and achieve the desired partitioning. We validate our method using image stacks depicting single neurons labeled with green fluorescent protein (GFP) and serially imaged with laser scanning confocal microscopy.
Keywords :
biomedical optical imaging; fluorescence; image reconstruction; image segmentation; medical image processing; neurophysiology; proteins; 3-D Haar-like features; Drosophila ventral nerve cord; axon; dendrites; green fluorescent protein; image stacks; laser scanning confocal microscopy; morphological stereotypy; motor circuit; neuron morphology reconstruction; robust segmentation; soma; synaptic connectivity; three-dimensional motor neuron morphology estimation; type-specific dendritic arborization patterns; Estimation; Image segmentation; Manganese; Morphology; Nerve fibers; Shape; 3-D Haar features; Drosophila; cosegmentation; neuron compartment-based labeling; neuron morphology; Algorithms; Animals; Central Nervous System; Computer Simulation; Drosophila; Image Processing, Computer-Assisted; Models, Neurological; Motor Neurons;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2011.2181166
Filename :
6111458
Link To Document :
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