DocumentCode
3440333
Title
Towards automatic reconstruction of axonal structures in volumetric microscopy images depicting only active synapses
Author
Sokoll, Stefan ; Beelitz, H. ; Heine, Martin ; Tonnies, Klaus
Author_Institution
Res. Group Mol. Physiol., Leibniz Inst. for Neurobiol., Magdeburg, Germany
fYear
2012
fDate
15-18 Oct. 2012
Firstpage
426
Lastpage
431
Abstract
We propose an algorithm for the three-dimensional (3D) reconstruction of axonal structures to allow for the correlation of axonal structure, individual synaptic activity and single molecule tracking. In contrast to related works, only active synapses are stained in our acquisitions and the axonal structure is only visible by autofluorescence. We tackle this problem by detection of the medial axis line in the two-dimensional (2D) intensity projection of the 3D image and reconstruction of the 3D structure by axial interpolation between connected active synapses. Due to the noncontinuous staining, the detection of the medial axis line cannot rely on a global tree like structure. Instead, we compute an initial skeleton by global segmentation and expand it by iteratively adding line segments that are locally optimal according to the model knowledge of an axon. We evaluate our algorithm against a ground truth computed from co-transfection of surface molecules that result in reliable continuous staining of the axonal structure.
Keywords
image reconstruction; image segmentation; interpolation; medical image processing; microscopy; neurophysiology; 2D intensity projection; 3D image; 3D reconstruction; 3D structure reconstruction; active synapse; autofluorescence; automatic axonal structure reconstruction; axial interpolation; axonal structure correlation; global segmentation; medial axis line detection; molecule tracking; synaptic activity; volumetric microscopy image; Image reconstruction; Image segmentation; Interpolation; Nerve fibers; Reliability; Signal to noise ratio; 3D axonal reconstruction; Locally optimal path finding; Synaptic activity; Volumetric fluorescent microscopy;
fLanguage
English
Publisher
ieee
Conference_Titel
Image Processing Theory, Tools and Applications (IPTA), 2012 3rd International Conference on
Conference_Location
Istanbul
ISSN
2154-5111
Print_ISBN
978-1-4673-2585-1
Type
conf
DOI
10.1109/IPTA.2012.6469549
Filename
6469549
Link To Document