Optimization of negative stage bias potential for faster imaging in large-scale electron microscopy.
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ABSTRACT: Large-scale electron microscopy (EM) allows analysis of both tissues and macromolecules in a semi-automated manner, but acquisition rate forms a bottleneck. We reasoned that a negative bias potential may be used to enhance signal collection, allowing shorter dwell times and thus increasing imaging speed. Negative bias potential has previously been used to tune penetration depth in block-face imaging. However, optimization of negative bias potential for application in thin section imaging will be needed prior to routine use and application in large-scale EM. Here, we present negative bias potential optimized through a combination of simulations and empirical measurements. We find that the use of a negative bias potential generally results in improvement of image quality and signal-to-noise
SUBMITTER: Lane R
PROVIDER: S-EPMC7973379 | biostudies-literature | 2021
REPOSITORIES: biostudies-literature
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