Localizer Images

Localizer images are preliminary medical images used to identify anatomy, position a patient, and define the region examined during a diagnostic imaging study. Acquired before detailed scans, they provide a rapid overview that helps technologists select the imaging range, align the patient, and plan the direction and extent of subsequent image acquisition. In computed tomography, a localizer commonly uses a low-dose projection to guide slice selection, while related planning images support magnetic resonance and other modalities. By improving scan targeting and reducing unnecessary coverage, localizer images contribute to efficient examinations, consistent image quality, and reduced exposure when applicable.

Localizer Images - Related Videos

Research

JoVE Journal - Biology

Imaging Local Ca2+ Signals in Cultured Mammalian Cells

0 Views •

Cited by 17 •

2015

Here we present techniques for imaging local IP3-mediated Ca2+ events using fluorescence microscopy in intact mammalian cells loaded with Ca2+ indicators together with an algorithm that automates identification and analysis of these events.

How to Measure Cortical Folding from MR Images: a Step-by-Step Tutorial to Compute Local Gyrification Index

0 Views •

Cited by 168 •

2012

Measuring gyrification (cortical folding) at any age represents a window into early brain development. Hence, we previously developed an algorithm to measure local gyrification at thousands of points over the hemisphere1. In this paper, we detail the computation of this local gyrification index.

Quantitative Localization of a Golgi Protein by Imaging Its Center of Fluorescence Mass

0 Views •

Cited by 17 •

2017

The precise localization of Golgi residents is essential for understanding the cellular functions of the Golgi. However, conventional optical microscopy is unable to resolve the sub-Golgi structure. Here we describe the protocol for a conventional microscopy based super-resolution method to quantitatively determine the sub-Golgi localization of a protein.

In Vivo Fluorescence Imaging to Localize Antibodies in a Mouse Tumor Xenograft Model

0 Views •

2025

The video demonstrates a fluorescence imaging method for in vivo antibody localization in a mouse tumor xenograft model. It involves the injection of tumor cells in a mouse to generate solid xenografts beneath the skin. Subsequent injection of fluorescent antibodies confirms specific localization through enhanced fluorescence signals within the tumor xenograft.

Using Digital Image Correlation to Characterize Local Strains on Vascular Tissue Specimens

0 Views •

Cited by 19 •

2016

We describe the use of digital image correlation to characterize the local surface strain field on vascular tissue samples subjected to uniaxial tensile testing. These measurements facilitate precise quantification of the sample mechanical response and the generation of constitutive stress-strain relations.

View All Results

FAQs

Related Topics