Stitching of microscopic images for quantifying neuronal growth and spine plasticity
Pages 45 - 53
Abstract
In neurobiology, morphological change of neuronal structures such as dendrites and spines is important for understanding of brain functions or neuro-degenerative diseases. Especially, morphological changes of branching patterns of dendrites and volumetric spine structure is related to cognitive functions such as experienced-based learning, attention, and memory. To quantify their morphologies, we use confocal microscopy images which enables us to observe cellular structure with high resolution and three-dimensionally. However, the image resolution and field of view of microscopy is inversely proportional to the field of view (FOV) we cannot capture the whole structure of dendrite at on image. Therefore we combine partially obtained several images into a large image using image stitching techniques. To fine the overlapping region of adjacent images we use Fourier transform based phase correlation method. Then, we applied intensity blending algorithm to remove uneven intensity distribution and seam artifact at image boundaries which is coming from optical characteristics of microscopy. Finally, based on the integrated image we measure the morphology of dendrites from the center of cell to end of each branch. And geometrical characteristics of spine such as area, location, perimeter, and roundness, etc. are also quantified. Proposed method is fully automatic and provides accurate analysis of both local and global structural variations of neuron.
References
[1]
Hao, J., et al.: Interactive effects of age and estrogen on cognition and pyramidal neurons in monkey prefrontal cortex. PNAS, 104(27) (2007)
[2]
Kim, H., et al.: σ-catenin-induced dendritic morphogenesis. The Journal of Biological Chemistry 283(977-987) (2008)
[3]
Vollotton, P., et al.: Automated analysis of neurite branching in cultured cortical neurons using HCA-Vision. Cytometry 71A, 889-895 (2007)
[4]
Wearne, S.L., et al.: New techniques for imaging, digitization and analysis of three-dimensional neural morphology on multiple scales. Neuroscience 136, 661-680 (2005)
[5]
Emmenlauer, M., et al.: XuvTools: free, fast and reliable stitching of large 3D data-sets. Journal of Microscopy 233(1), 42-60 (2009)
[6]
Ideker, T., et al.: Globally optimal stitching of tiled 3D microscopic image acquisi-tions. Bioinformatics Advance Access 25(11), 1463-1465 (2009)
[7]
Brown, M., Lowe, D.G.: Automatic panoramic image stitching using invariant features. International Journal of Computer Vision 74(1), 59-73 (2002)
[8]
Bai, W., et al.: Automatic dendritic spine analysis in two-photon laser scanning microscopy images. Cytometry, 818-826 (2007)
[9]
Rittscher, J., Machiraju, R., Wong, S.T.C.: Microscopic image analysis for life science applications. Artech House, Norwood
[10]
Weaver, C.M., Hof, P.R., Wearne, S.L., Lindquist, W.B.: Automated algo-rithms for multiscale morphometry of neuronal dendrites. Neural Computation 16(7), 1353-1383 (2004)
[11]
Zito, K., Knott, G., Shepherd, G., Shenolikar, S., Svoboda, K.: Induction of spine growth and synapse formation by regulation of the spine actin cytoskeleton. Neuron 44(2), 321- 334 (2004)
[12]
Castleman, K.R.: Digital Image Processing. Prentice Hall, Englewood Cliffs (1995)
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Published In
November 2010
759 pages
ISBN:3642172881
Sponsors
- NASA: National Aeronatics and Space Administration
- DigitalPersona
- Intel: Intel
- Equinox Corporation
- HP invent
Publisher
Springer-Verlag
Berlin, Heidelberg
Publication History
Published: 29 November 2010
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