Flair Imaging

FLAIR imaging, or fluid-attenuated inversion recovery imaging, is an MRI technique that suppresses the signal from cerebrospinal fluid (CSF) to make abnormalities near fluid-filled spaces more visible. It uses an inversion-recovery pulse sequence with a carefully selected inversion time that nulls the longitudinal magnetization of CSF before image acquisition, while many lesions retain detectable signal. In neuroscience, FLAIR imaging supports the assessment of white-matter lesions, brain edema, demyelination, stroke-related changes, and other pathology that may be obscured on conventional T2-weighted images. Its contrast improves lesion conspicuity and helps researchers and clinicians characterize structural changes in the brain.

Flair Imaging - Related Videos

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JoVE EoE - Neuroimaging

Magnetic Resonance Imaging of Perivascular Spaces in the Human Brain During a Small Vessel Stroke

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2025

Perivascular spaces (PVS) are fluid-filled spaces around the brain blood vessels involved in fluid drainage.To examine alterations in PVS during a small vessel stroke, perform magnetic resonance imaging (MRI) of the basal ganglia region in the patient’s brain.The imaging protocol includes the T2-weighted fast spin echo and fluid-attenuated inversion recovery (FLAIR) sequences.T2-weighted imaging enhances the contrast between cerebrospinal fluid (CSF)-filled PVS and surrounding tissue.FLAIR...

Fluid-Attenuated Inversion Recovery Magnetic Resonance Imaging to Visualize Multiple Sclerosis Lesions

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2025

Position the head of a patient with multiple sclerosis inside the radiofrequency or RF coil of an MRI machine.Begin fluid-attenuated inversion recovery or FLAIR imaging. Select a brain slice containing lesions near CSF-rich areas.The system generates a strong magnetic field, aligning protons in healthy and lesioned brain tissue and CSF along its direction, creating net magnetization.Apply an inversion RF pulse to flip the magnetization of all protons, aligning them opposite to the magnetic...

Research

JoVE Journal - Bioengineering
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Hybrid µCT-FMT imaging and image analysis

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Cited by 34 •

2015

We describe a protocol for hybrid imaging, combining fluorescence-mediated tomography (FMT) with micro computed tomography (µCT). After fusion and reconstruction, we perform interactive organ segmentation to extract quantitative measurements of the fluorescence distribution.

Research

JoVE Journal - Neuroscience
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Multiple-mouse Neuroanatomical Magnetic Resonance Imaging

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Cited by 59 •

2011

Magnetic resonance imaging (MRI) has become an increasingly popular tool for examining the phenotype of genetically altered mice. This article illustrates the methods necessary to achieve high-throughput phenotyping of genetically altered mice using multiple-mouse MRI.

Non-invasive In Vivo Fluorescence Optical Imaging of Inflammatory MMP Activity Using an Activatable Fluorescent Imaging Agent

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Cited by 4 •

2017

This paper explains the application of fluorescent imaging using an activatable optical imaging probe to visualize the in vivo activity of key matrix metalloproteinases in two different experimental models of inflammation.

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