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Rosenblum, E. W.

Publications and source records attributed to Rosenblum, E. W..

2 recordsLinked to original sources

Multi-dimensional diffusion MRI at ultra-high gradient strength for mapping axonal architecture and microstructure in the primate brain

We present the most comprehensive sampling of the macaque and human brain with diffusion MRI to date. As part of the BRAIN CONNECTS center for Large-scale Imaging of Neural Circuits, we leverage ultra-high-gradient MRI systems, including the first-of-its-kind Connectome 2.0, for post-mortem acquisitions. Each sample is imaged for [~]250 hours at multiple spatial resolutions down to 0.25 mm isotropic for whole macaque brains and 0.4 mm isotropic for human hemispheres. Our optimized protocols allow us to sample both species across [~]50 diffusion shells varying in b-value, diffusion time, and echo time, reaching ultra-high b-values up to 64000 s/mm2 with high signal-to-noise ratio. We demonstrate that these multi-dimensional data resolve not only white matter connectional architecture but also cortical and subcortical cytoarchitectonic boundaries, at a level of detail previously inaccessible in whole-brain noninvasive imaging. As such, these data are an important resource for both technical development and basic and clinical neuroscience.

neuroscience↗

Tentorium cerebelli notch severity in the human brain: protocol, distribution and histopathology validation

The dura forms an impression, the tentorial notch (TN), on the surface of the entorhinal cortex (EC). To characterize the potential injury to the EC, we evaluated the entorhinal surface in 55 postmortem samples. We developed a semi-quantitative protocol to rate the TN severity and evaluated the impact of the TN on the surrounding tissue. We rated the penumbral injury as: none, moderate or severe. We demonstrate that 96% of the samples showed a TN; specifically mild (33%), moderate (47%) and severe (16%). TN severity correlated positively with penumbra scores (Kendalls coefficient = 0.65, 95% CI [0.535, 0.735]). We found no association between TN severity levels and Braak and Braak stages (Fischers exact P value = .862). We established a robust protocol for assessing the tentorial notch, addressing a gap in understanding anatomical factors that may contribute to EC vulnerability in Alzheimers disease.

neuroscience↗