Quantitative X-ray phase contrast waveguide imaging of bacterial endospores

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Abstract

Quantitative waveguide-based X-ray phase contrast imaging has been carried out on the level of single, unstained, unsliced and freeze-dried bacterial cells of Bacillus thuringiensis and Bacillus subtilis using hard X-rays of 7.9keV photon energy. The cells have been prepared in the metabolically dormant state of an endospore. The quantitative phase maps obtained by iterative phase retrieval using a modified hybrid input-output algorithm allow for mass and mass density determinations on the level of single individual endospores but include also large field of view investigations. Additionally, a direct reconstruction based on the contrast transfer function is investigated, and the two approaches are compared. Depending on the field of view and method, a resolution down to 65nm was achieved at a maximum applied dose of below 5 × 105Gy. Masses in the range of about ∼110-190(20)fg for isolated endospores have been obtained.

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Wilke, R. N., Hoppert, M., Krenkel, M., Bartels, M., & Salditt, T. (2015). Quantitative X-ray phase contrast waveguide imaging of bacterial endospores. In Journal of Applied Crystallography (Vol. 48, pp. 464–476). International Union of Crystallography. https://doi.org/10.1107/S1600576715003593

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