Photobleaching Correction

Photobleaching correction is a computational or experimental method that compensates for the gradual loss of fluorescence caused by irreversible photochemical damage to fluorophores during imaging. It typically estimates intensity decay over time from reference regions, mathematical models, or control measurements, then adjusts image sequences to distinguish bleaching-related signal loss from genuine biochemical or cellular changes. In fluorescence microscopy, this correction improves the quantitative analysis of protein localization, molecular interactions, and reaction dynamics, particularly in time-lapse experiments and fluorescence recovery after photobleaching. By preserving comparable signal levels across frames, it supports more reliable interpretation of spatial and temporal fluorescence measurements.

Photobleaching Correction - Related Videos

Research

JoVE EoE - Bacterial Pathogenesis and Host Interactions

Photobleaching Cyanobacterial Pigments for Imaging Growth-Regulating Proteins

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2026

Source: Zhan, Y., et al. Photobleaching Enables Super-resolution Imaging of the FtsZ Ring in the Cyanobacterium Prochlorococcus. J. Vis. Exp. (2018).This video demonstrates the procedure for photobleaching pigments in cyanobacterial cells using xenon light under cold conditions to improve the fluorescence imaging of growth-regulating proteins.

Measuring Diffusion Coefficients via Two-photon Fluorescence Recovery After Photobleaching

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Cited by 4 •

2010

In this article we will describe the procedure for measuring diffusion coefficients using multi-photon fluorescence recovery after photobleaching. We will begin by aligning the laser along the optical path to the sample and determining the proper experimental parameters, then continue generating and finally fitting fluorescence recovery curves.

Education

JoVE Core - Civil Engineering

Distance Corrections

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2025

To achieve precise distance measurements, especially in surveying and construction, certain corrections must be applied to account for potential sources of error like the standardization errors, temperature variations, and slope adjustments.Standardization error emerges when measurement equipment undergoes changes, such as wear, repairs, or weather impacts. To address this, surveyors compare the equipment’s readings to a standard. This process identifies any deviation that might lead to...

Photobleaching Assays (FRAP & FLIP) to Measure Chromatin Protein Dynamics in Living Embryonic Stem Cells

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Cited by 26 •

2011

We describe photobleaching methods including Fluorescence Recovery After Photobleaching (FRAP) and Fluorescence Loss In Photobleaching (FLIP) to monitor chromatin protein dynamics in embryonic stem (ES) cells. Chromatin protein dynamics, which is considered to be one of the means to study chromatin plasticity, is enhanced in pluripotent cells.

Research

JoVE Journal - Neuroscience
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Lateral Diffusion and Exocytosis of Membrane Proteins in Cultured Neurons Assessed using Fluorescence Recovery and Fluorescence-loss Photobleaching

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Cited by 16 •

2012

This report describes the use of live cell imaging and photobleach techniques to determine the surface expression, transport pathways and trafficking kinetics of exogenously expressed, pH-sensitive GFP-tagged proteins at the plasma membrane of neurons.

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