DocumentCode :
1771801
Title :
Neurondynamics: A method for neurotransmitter vesicle movement characterization in neurons
Author :
Carpinteiro, Frederico A. ; Costa, Pedro M. ; Saenz Espinoza, Mario ; Silva, Ivo M. ; Cunha, Joao P. S.
Author_Institution :
Fac. of Eng., Univ. of Porto, Porto, Portugal
fYear :
2014
fDate :
April 29 2014-May 2 2014
Firstpage :
481
Lastpage :
484
Abstract :
Automated tracking of axonal neurotransmitter vesicles is a challenging problem in neuroscience. The present vesicle tracking is typically performed manually over confocal microscopy images. NeuronDynamics is a method designed to automate and speed-up the characterization of global vesicle movement in neurons while yielding high accuracy and precision results (similar or better than expert clinicians). For a set of fluorescent-marked vesicles “films”, Neuron-Dynamics performs a two stage approach: 1) Training: the system asks the user to mark a set of vesicles and the position of the cellular body; 2) Detection & tracking: based on the previous training, the system runs a Bayesian classifier over the image sequence to detect and classify vesicles and their movements (speed and direction). The obtained results were compared to another state-of-the-art method (FluoTracker), and were found greatly higher in accuracy, sensitivity, specificity and precision. Although NeuronDynamics is a semi-automated process, it is significantly faster than manual tracking and can be adapted to be used for similar approaches for other biological samples.
Keywords :
biomechanics; cell motility; cellular biophysics; fluorescence; image classification; image segmentation; image sequences; medical image processing; neurophysiology; patient diagnosis; FluoTracker method accuracy; FluoTracker method precision; FluoTracker method sensitivity; FluoTracker method specificity; FluoTracker-based neurotransmitter vesicle movement tracking; NeuronDynamics Bayesian classifier; NeuronDynamics detection; NeuronDynamics method accuracy; NeuronDynamics method precision; NeuronDynamics tracking; NeuronDynamics training; NeuronDynamics two-stage approach; NeuronDynamics-marked cellular body position; NeuronDynamics-marked vesicle set; automated global vesicle movement characterization; automated neurotransmitter vesicle tracking; axonal neurotransmitter vesicle tracking; confocal microscopy image; fluorescent-marked vesicle films; image classifier; image sequence; image-classified vesicle movement; image-detected vesicle movement; manual vesicle tracking; neuron vesicle movement; neuroscience problem; neurotransmitter vesicle movement characterization; semiautomated NeuronDynamics process; speedy global vesicle movement characterization; vesicle movement characterization method; vesicle movement direction; vesicle movement speed; Accuracy; Bayes methods; Image segmentation; Sensitivity; Tracking; Training; Videos;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Biomedical Imaging (ISBI), 2014 IEEE 11th International Symposium on
Conference_Location :
Beijing
Type :
conf
DOI :
10.1109/ISBI.2014.6867913
Filename :
6867913
Link To Document :
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