Purpose: The quality and precision of post-mortem MRI microscopy may vary depending on the embedding medium used. To investigate this, our study evaluated the impact of 5 widely used media on: (1) image quality, (2) contrast of high spatial resolution gradient-echo (T and T -weighted) MR images, (3) effective transverse relaxation rate (R ), and (4) quantitative susceptibility measurements (QSM) of post-mortem brain specimens.
Methods: Five formaldehyde-fixed brain slices were scanned using 7.0T MRI in: (1) formaldehyde solution (formalin), (2) phosphate-buffered saline (PBS), (3) deuterium oxide (D O), (4) perfluoropolyether (Galden), and (5) agarose gel. SNR and contrast-to-noise ratii (SNR/CNR) were calculated for cortex/white matter (WM) and basal ganglia/WM regions. In addition, median R and QSM values were extracted from caudate nucleus, putamen, globus pallidus, WM, and cortical regions.
Results: PBS, Galden, and agarose returned higher SNR/CNR compared to formalin and D O. Formalin fixation, and its use as embedding medium for scanning, increased tissue R . Imaging with agarose, D O, and Galden returned lower R values than PBS (and formalin). No major QSM offsets were observed, although spatial variance was increased (with respect to R behaviors) for formalin and agarose.
Conclusions: Embedding media affect gradient-echo image quality, R , and QSM in differing ways. In this study, PBS embedding was identified as the most stable experimental setup, although by a small margin. Agarose and Galden were preferred to formalin or D O embedding. Formalin significantly increased R causing noisier data and increased QSM variance.
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http://dx.doi.org/10.1002/mrm.27595 | DOI Listing |
JAMA Neurol
January 2025
Department of Neurology, UAB Heersink School of Medicine, University of Alabama at Birmingham, Birmingham.
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View Article and Find Full Text PDFInt J Biomed Imaging
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The quality of CT images obtained from hepatocellular carcinoma (HCC) patients is complex, affecting diagnostic accuracy, precision, and radiation dose assessment due to increased exposure risks. The study evaluated image quality qualitatively and quantitatively by comparing quality levels with an effective radiation dose to ensure acceptable quality accuracy. This study retrospectively reviewed 100 known HCC patients (Li-RADS-5) who underwent multidetector computed tomography (MDCT) multiphasic scans for follow-up of their health condition between January and October 2023.
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