Digital Microscope Camera

A digital microscope camera is an imaging device that converts magnified optical information from a microscope into digital images or video, enabling detailed observation, documentation, and analysis in medicine. Light passing through or reflecting from a specimen is focused by the microscope’s optics onto an electronic sensor, which transforms the signal into data displayed on a computer or monitor; software can support measurement, enhancement, and image storage. These cameras assist with examining stained tissue sections, blood smears, microorganisms, and cellular structures in pathology, hematology, microbiology, and medical education. Digital imaging also supports collaboration, longitudinal comparison, and computer-assisted analysis.

Digital Microscope Camera - Related Videos

Research

JoVE Journal - Engineering

Compact Lens-less Digital Holographic Microscope for MEMS Inspection and Characterization

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Cited by 5 •

2016

We present a compact reflection digital holographic system (CDHM) for inspection and characterization of MEMS devices. A lens-less design using a diverging input wave providing natural geometrical magnification is demonstrated. Both static and dynamic studies are presented.

Research

JoVE Journal - Biology
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Imaging of Estrogen Receptor-α in Rat Pial Arterioles using a Digital Immunofluorescent Microscope

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2011

The goal of this article is to demonstrate a method to optimize immunofluorescent detection of estrogen receptor-α (ERα) in rat pial arterial slices using a digital immunofluorescent microscope.

Research

JoVE Journal - Biology
Free Sample

Studying Cell Death Initiation Using a Digital Microscope

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2023

Here we present a protocol for studying the rate of programmed cell death initiation by continuously imaging inoculated leaves following cell death induction.

Major Components of the Light Microscope

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2008

The light microscope is a basic tool for the cell biologist, who should have a thorough understanding of how it works, how it should be aligned for different applications, and how it should be maintained as required to obtain maximum image-forming capacity and resolution. The components of the microscope are described in detail here.

Simultaneously Capturing Real-time Images in Two Emission Channels Using a Dual Camera Emission Splitting System: Applications to Cell Adhesion

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Cited by 4 •

2013

Dual camera emission splitting systems for two-color fluorescence microscopy generate real-time image sequences with exceptional optical and temporal resolution, a requirement of certain live cell assays including parallel plate flow chamber adhesion assays. When software is employed to merge images from simultaneously acquired emission channels, pseudocolored image sequences are produced.

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