Brightfield Illumination Selection

Brightfield illumination selection is the process of choosing and adjusting transmitted-light conditions to produce clear, informative images of biological specimens. In brightfield microscopy, light passes through the sample and is modified by differences in absorption, thickness, and refractive index before reaching the objective and camera; illumination settings therefore influence contrast, brightness, and resolution. Selecting an appropriate light intensity, condenser position, aperture, and specimen preparation helps distinguish cells, tissues, and microorganisms while limiting glare and uneven background lighting. These choices support routine observation, imaging, and quantitative analysis in cell biology, histology, microbiology, and other areas of biological research.

Brightfield Illumination Selection - Related Videos

Research

JoVE EoE - Bacterial Growth and Techniques

Phototaxis Assay of Filamentous Cyanobacteria Using Focused Light Illumination

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2025

Source: Weber, N. et. al., Natural Transformation, Protein Expression, and Cryoconservation of the Filamentous Cyanobacterium Phormidium lacuna. J. Vis. Exp. (2022)This video demonstrates a focused LED-based assay for studying phototaxis in filamentous cyanobacteria. The bacteria migrate toward the light source, forming a dense accumulation at the illuminated center, which is visualized and quantified through pixel intensity analysis of the captured image.

Research

JoVE Journal - Developmental Biology
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Capturing Tissue Repair in Zebrafish Larvae with Time-lapse Brightfield Stereomicroscopy

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Cited by 27 •

2015

We present a protocol for capturing the dynamics of zebrafish larval tail fin regeneration on a whole-tissue scale using brightfield-based stereomicroscopy. This technique enables capturing the regeneration dynamics with single cell resolution. This methodology can be adapted to any stereomicroscope equipped with a CCD camera and time-lapse software.

Highly Resolved Intravital Striped-illumination Microscopy of Germinal Centers

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2014

High-resolution intravital imaging with enhanced contrast up to 120 µm depth in lymph nodes of adult mice is achieved by spatially modulating the excitation pattern of a multi-focal two-photon microscope. In 100 µm depth we measured resolutions of 487 nm (lateral) and 551 nm (axial), thus circumventing scattering and diffraction limits.

Quantifying Liver Size in Larval Zebrafish Using Brightfield Microscopy

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Cited by 8 •

2020

Here we demonstrate a method for quantifying liver size in larval zebrafish, providing a way to assess the effects of genetic and pharmacologic manipulations on liver growth and development.

Education

JoVE Lab Manual - Biology

Natural Selection - Concepts

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2019

Fitness Widespread variation of phenotypes in natural populations provides the raw material for evolution, which is the change in the inherited traits of populations over successive generations. Natural selection is one of the main mechanisms of evolution and requires variable traits to be heritable and associated with differential survival and/or reproductive success. Phenotypes that correlate with greater success will have more offspring that survive to reproduce in the next generation, and...

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