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  TIRF microscopy evanescent field calibration using tilted fluorescent microtubules

Gell, C., Berndt, M., Enderlein, J., & Diez, S. (2009). TIRF microscopy evanescent field calibration using tilted fluorescent microtubules. Journal of Microscopy, 234(1), 38-46.

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 Creators:
Gell, Christopher1, Author           
Berndt, Michael1, Author           
Enderlein, Jörg, Author
Diez, Stefan1, Author           
Affiliations:
1Max Planck Institute of Molecular Cell Biology and Genetics, Max Planck Society, ou_2340692              

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 Abstract: Total internal reflection fluorescence microscopy has become a powerful tool to study the dynamics of sub-cellular structures and single molecules near substrate surfaces. However, the penetration depth of the evanescent field, that is, the distance at which the excitation intensity has exponentially decayed to 1/e, is often left undetermined. This presents a limit on the spatial information about the imaged structures. Here, we present a novel method to quantitatively characterize the illumination in total internal reflection fluorescence microscopy using tilted, fluorescently labelled, microtubules. We find that the evanescent field is well described by a single exponential function, with a penetration depth close to theoretically predicted values. The use of in vitro reconstituted microtubules as nanoscale probes results in a minimal perturbation of the evanescent field; excitation light scattering is eliminated and the refractive index of the sample environment is unchanged. The presented method has the potential to provide a generic tool for in situ calibration of the evanescent field.

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 Dates: 2009
 Publication Status: Issued
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 Identifiers: eDoc: 463142
Other: 1195
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Title: Journal of Microscopy
Source Genre: Journal
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Pages: - Volume / Issue: 234 (1) Sequence Number: - Start / End Page: 38 - 46 Identifier: -