Flatbed Scanner

A flatbed scanner is an imaging device that converts a flat, physical object into a digital image, making visual records easier to store, analyze, and share. It illuminates the object while a moving sensor, typically a charge-coupled device or contact image sensor, measures reflected or transmitted light line by line and assigns color or grayscale values to individual pixels. In biology, flatbed scanners can digitize specimen records, anatomical illustrations, culture plates, gels, and other two-dimensional materials for documentation and image-based measurement. These scans support archiving, quantitative comparisons, teaching, and reproducible research when image resolution, lighting, and sample placement remain consistent.

Flatbed Scanner - Related Videos

Research

JoVE Journal - Biology
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Using Flatbed Scanners to Collect High-resolution Time-lapsed Images of the Arabidopsis Root Gravitropic Response

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Cited by 6 •

2014

This protocol describes a process for rapid collection of images of Arabidopsis seedlings responding to a gravity stimulus using commercially-available flatbed scanners. The method allows for inexpensive, high-volume capture of high-resolution images amenable for downstream analysis algorithms.

Research

JoVE Journal - Engineering

Frequency Mixing Magnetic Detection Scanner for Imaging Magnetic Particles in Planar Samples

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Cited by 5 •

2016

A scanner for imaging magnetic particles in planar samples was developed using the planar frequency mixing magnetic detection technique. The magnetic intermodulation product response from the nonlinear nonhysteretic magnetization of the particles is recorded upon a two-frequency excitation. It can be used to take 2D images of thin biological samples.

Multi-Tracer Studies of Brain Oxygen and Glucose Metabolism Using a Time-of-Flight Positron Emission Tomography-Computed Tomography Scanner

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Cited by 2 •

2024

Quantitative measurements of oxygen and glucose metabolism by PET are established technologies, but details of practical protocols are sparsely described in the literature. This paper presents a practical protocol successfully implemented on a state-of-the-art positron emission tomography-computed tomography scanner.

Imaging and Quantifying Swarm Avoidance Responses to Antibiotic Stress in Pseudomonas aeruginosa

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2025

Source: Bru, J., et.al. Time-lapse Imaging of Bacterial Swarms and the Collective Stress Response. J. Vis. Exp. (2020)This video demonstrates how to visualize and measure swarm avoidance behavior in Pseudomonas aeruginosa using a swarming agar plate assay. It shows the setup for time-lapse imaging under controlled conditions and explains how antibiotic-induced stress signals redirect bacterial movement, which is quantified through image analysis.

Tissue Immunostaining for Imaging Mass Cytometry

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2026

Source:Jake Griner1, Arwen Wedgeworth2, Brenton Puckett2, Kacey Idouchi1, Slivia Guglietta2, Carsten Krieg11Department of Pathology and Laboratory Medicine, Medical University of South Carolina.2Department of Regenerative Medicine and Cell Biology, Medical University of South Carolina.The video describes the preparation of a tissue sample for imaging mass cytometry. The tissue is first processed to unmask the antigen epitopes, permeabilize the cells, and block non-specific antibody binding...

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