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Updated: May 8, 2026

Non-invasive Imaging and Analysis of Cerebral Ischemia in Living Rats Using Positron Emission Tomography with 18F-FDG
Published on: December 28, 2014
Comparison of magnetic resonance imaging in live vs. post mortem rat brains
Ipek Oguz1, Richard Yaxley, Francois Budin
1University of North Carolina at Chapel Hill, Department of Psychiatry, Chapel Hill, North Carolina, USA. ipek@cs.unc.edu
Abstract:
Magnetic Resonance Imaging (MRI) is an increasingly popular technique for examining neurobiology in rodents because it is both noninvasive and nondestructive. MRI scans can be acquired from either live or post mortem specimens. In vivo scans have a key advantage in that subjects can be scanned at multiple time-points in longitudinal studies. However, repeated exposure to anesthesia and stress may confound studies. In contrast, post mortem scans offer improved image quality and increased signal-to-noise ratio (SNR) due to several key advantages: First, the images are not disrupted by motion and pulsation artifacts. Second, they allow the brain tissue to be perfused with contrast agents, enhancing tissue contrast. Third, they allow longer image acquisition times, yielding higher resolution and/or improved SNR. Fourth, they allow assessment of groups of animals at the same age without scheduling complications. Despite these advantages, researchers are often skeptical of post mortem MRI scans because of uncertainty about whether the fixation process alters the MRI measurements. To address these concerns, we present a thorough comparative study of in vivo and post mortem MRI scans in healthy male Wistar rats at three age points throughout adolescence (postnatal days 28 through 80). For each subject, an in vivo scan was acquired, followed by perfusion and two post mortem scans at two different MRI facilities. The goal was to assess robustness of measurements, to detect any changes in volumetric measurements after fixation, and to investigate any differential bias that may exist between image acquisition techniques. We present this volumetric analysis for comparison of 22 anatomical structures between in vivo and post mortem scans. No significant changes in volumetric measurements were detected; however, as hypothesized, the image quality is dramatically improved in post mortem scans. These findings illustrate the validity and utility of using post mortem scans in volumetric neurobiological studies.
Insights
Post mortem Magnetic Resonance Imaging (MRI) provides superior image quality for neurobiology studies in rats compared to live scans, without altering volumetric measurements. This validates its use in research.
Area of Science:
- Neuroimaging
- Comparative Anatomy
- Rodent Models
Background:
- Magnetic Resonance Imaging (MRI) is a valuable noninvasive tool for neurobiology research in rodents.
- Both in vivo (live) and post mortem (ex vivo) MRI scans can be acquired, each with distinct advantages and limitations.
- Concerns exist regarding potential alterations in MRI measurements due to post mortem fixation processes.
Purpose of the Study:
- To quantitatively compare volumetric measurements of 22 anatomical structures between in vivo and post mortem MRI scans in Wistar rats.
- To assess the robustness of MRI measurements after tissue fixation and perfusion.
- To evaluate image quality differences and potential biases between live and post mortem imaging techniques.
Main Methods:
- Healthy male Wistar rats (postnatal days 28-80) underwent in vivo MRI scans.
- Following perfusion, post mortem MRI scans were acquired from the same subjects at two different facilities.
- Volumetric analysis was performed on 22 specific brain structures for both imaging modalities.
Main Results:
- No significant changes in volumetric measurements were detected between in vivo and post mortem MRI scans.
- Image quality, including signal-to-noise ratio (SNR) and resolution, was significantly improved in post mortem scans.
- Post mortem MRI scans were free from motion and pulsation artifacts, and allowed for enhanced contrast with perfusion agents.
Conclusions:
- Post mortem MRI is a valid and reliable technique for volumetric neurobiological studies in rodents.
- The fixation process does not significantly alter volumetric measurements, contrary to common concerns.
- The enhanced image quality and reduced artifacts make post mortem MRI a highly advantageous method for detailed brain analysis.

