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Quantitative X-ray phase contrast waveguide imaging of bacterial endospores

机译:细菌内生孢子的定量X射线相衬波导成像

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摘要

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 7.9 keV 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 65 nm was achieved at a maximum applied dose of below 5 × 105 Gy. Masses in the range of about ∼110–190 (20) fg for isolated endospores have been obtained.
机译:已经使用7.9 keV光子能量的硬X射线在苏云金芽胞杆菌和枯草芽孢杆菌的单个,未染色,未切片和冷冻干燥的细菌细胞水平上进行了基于波导的定量X射线相衬成像。已经以内生孢子的代谢休眠状态制备了细胞。通过使用改进的混合输入-输出算法通过迭代相位检索获得的定量相位图,可以在单个单个内生孢子的水平上确定质量和质量密度,但还包括大视野研究。另外,研究了基于对比度传递函数的直接重建,并比较了两种方法。根据视野和方法的不同,在最大施加剂量低于5×10 5 Gy时,分辨率可低至65 nm。分离出的内生孢子的质量约为110-190(20)fg。

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