Raster Scan Mapping

Raster scan mapping is an imaging and analysis method that measures a sample systematically across a two-dimensional grid to reveal how chemical or physical properties vary with position. A focused probe, beam, or detector moves in parallel lines over the surface, recording a signal at regular intervals; software then converts these measurements into a spatial map of intensity, composition, or another selected parameter. In chemistry, raster scan mapping can visualize elemental distributions, reaction products, surface features, or concentration gradients. The resulting maps help researchers identify heterogeneity, evaluate materials and interfaces, monitor chemical processes, and relate local composition to observed performance.

Raster Scan Mapping - Related Videos

Research

JoVE Journal - Bioengineering

Dual Raster-Scanning Photoacoustic Small-Animal Imager for Vascular Visualization

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Cited by 1 •

2020

A dual raster-scanning photoacoustic imager was designed, which integrated wide-field imaging and real-time imaging.

Mapping Inhibitory Neuronal Circuits by Laser Scanning Photostimulation

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Cited by 6 •

2011

This paper introduces an approach of combining laser scanning photostimulation with whole cell recordings in transgenic mice expressing GFP in limited inhibitory neuron populations. The technique allows for extensive mapping and quantitative analysis of local synaptic circuits of specific inhibitory cortical neurons.

Enhanced Communication of Tumor Margins Using 3D Scanning and Mapping

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Cited by 9 •

2023

A novel method for 3D scanning and virtual mapping of cancer resections is proposed with the goal of improving communication among the multidisciplinary cancer care team.

A Scanning Electron Microscopy-Compatible Optical Imaging Method for Mesoscopic All-Cell Brain Mapping

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2026

We introduced a novel imaging technique called Optical Multilayer Interference Tomography (OMLIT), which enables unbiased imaging of all cells in brain specimens at the mesoscale and can be seamlessly integrated into the imaging workflow of tape-based serial scanning electron microscopy on the same sample.

Mechanical Mapping of Spheroids Using Brillouin Spectroscopy

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2025

This article describes a protocol for mechanical characterisation of living spheroids within a 3D matrix using Brillouin micro-spectroscopy. This all-optical method enables spheroid visualisation with microscale resolution and quantitative mechanical properties. This approach has implications for mechanical phenotyping; for instance, determining pathological states of tumor spheroids within a 3D microenvironment.

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