1. Exploring Neural Cell Dynamics with Digital Holographic Microscopy.
- Author
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Marquet, P., Depeursinge, C., and Magistretti, P.J.
- Subjects
NEURAL cell adhesion molecule ,DIGITAL holographic microscopy ,NEUROBIOLOGY ,CELL membranes ,DENDRITIC cells - Abstract
In this review, we summarize how the new concept of digital optics applied to the field of holographic microscopy has allowed the development of a reliable and flexible digital holographic quantitative phase microscopy (DH-QPM) technique at the nanoscale particularly suitable for cell imaging. Particular emphasis is placed on the original biological information provided by the quantitative phase signal. We present the most relevant DH-QPM applications in the field of cell biology, including automated cell counts, recognition, classification, three-dimensional tracking, discrimination between physiological and pathophysiological states, and the study of cell membrane fluctuations at the nanoscale. In the last part, original results show how DH-QPM can address two important issues in the field of neurobiology, namely, multiple-site optical recording of neuronal activity and noninvasive visualization of dendritic spine dynamics resulting from a full digital holographic microscopy tomographic approach. [ABSTRACT FROM AUTHOR]
- Published
- 2013
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