New approaches for low phototoxicity imaging of living cells and tissues
Fluorescence microscopy is a powerful tool used in scientific and medical research, but it is inextricably linked to phototoxicity. Neglecting phototoxicity can lead to erroneous or inconclusive results. Recently, several reports have addressed this issue, but it is still underestimated by many rese...
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Veröffentlicht in: | BioEssays 2024-05, Vol.46 (5), p.e2300122-n/a |
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Sprache: | eng |
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Zusammenfassung: | Fluorescence microscopy is a powerful tool used in scientific and medical research, but it is inextricably linked to phototoxicity. Neglecting phototoxicity can lead to erroneous or inconclusive results. Recently, several reports have addressed this issue, but it is still underestimated by many researchers, even though it can lead to cell death. Phototoxicity can be reduced by appropriate microscopic techniques and carefully designed experiments. This review focuses on recent strategies to reduce phototoxicity in microscopic imaging of living cells and tissues. We describe digital image processing and new hardware solutions. We point out new modifications of microscopy methods and hope that this review will interest microscopy hardware engineers. Our aim is to underscore the challenges and potential solutions integral to the design of microscopy systems. Simultaneously, we intend to engage biologists, offering insight into the latest technological advancements in imaging that can enhance their understanding and practice.
Light microscopy is linked to phototoxicity, which can be detrimental or result in inconclusive findings on living specimens. This review focuses on the most recent techniques utilizing digital image processing and advancements in hardware that enable the acquisition of high‐quality images without subjecting living cells or tissues to phototoxicity. |
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ISSN: | 0265-9247 1521-1878 |
DOI: | 10.1002/bies.202300122 |