Works Published in 2023

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Displaying all 4 works

Sorted by most recent date added to the index first, which may not be the same as publication date order.

2023 journal article

Rare variants in <i>CAPN2</i> increase risk for isolated hypoplastic left heart syndrome

HUMAN GENETICS AND GENOMICS ADVANCES, 4(4).

By: E. Blue*, J. White*, M. Dush n, W. Gordon*, B. Wyatt n, P. White*, C. Marvin*, E. Helle* ...

TL;DR: The findings show that iHLHS is typically not a Mendelian condition, demonstrate that CAPN2 variants increase risk of i HLHS, and identify a novel pathway involved in HLHS pathogenesis. (via Semantic Scholar)
UN Sustainable Development Goal Categories
3. Good Health and Well-being (Web of Science; OpenAlex)
Source: Web Of Science
Added: October 16, 2023

2023 journal article

Deep learning-based adaptive optics for light sheet fluorescence microscopy

BIOMEDICAL OPTICS EXPRESS, 14(6), 2905–2919.

TL;DR: It is shown that the application of correction using a deformable mirror greatly improves image quality and two conceptually different network architectures are compared; one that shares convolutional features and another that estimates each aberration independently. (via Semantic Scholar)
UN Sustainable Development Goal Categories
Source: Web Of Science
Added: July 24, 2023

2023 journal article

Bulk and mosaic deletions of Egfr reveal regionally defined gliogenesis in the developing mouse forebrain

ISCIENCE, 26(3).

By: X. Zhang n, G. Xiao n, C. Johnson n, Y. Cai n, Z. Horowitz n, C. Mennicke n, R. Coffey*, M. Haider* ...

TL;DR: Subtractive bulk ventral and dorsal forebrain deletions of Egfr uncovered significant and permanent decreases in oligodendrogenesis and myelination in the cortex and corpus callosum, and a regenerative population of gliogenic progenitors in the mouse forebrain may compensate for the missing EGFR-dependent dorsal glia in the bulk Egfr-deleted forebrain. (via Semantic Scholar)
Source: Web Of Science
Added: June 5, 2023

2023 journal article

COMBINe enables automated detection and classification of neurons and astrocytes in tissue-cleared mouse brains

CELL REPORTS METHODS, 3(4).

By: Y. Cai n, X. Zhang n, C. Li n, H. Ghashghaei n & A. Greenbaum n

MeSH headings : Animals; Mice; Astrocytes; Excipients; Microscopy, Fluorescence; Neurons; Prosencephalon
TL;DR: An automated workflow to map sparsely labeled neurons and astrocytes in genetically distinct mouse forebrains using mosaic analysis with double markers (MADM) is presented and the regional and subregional effects of MADM-based deletion of the epidermal growth factor receptor (EGFR) are quantitatively analyzed. (via Semantic Scholar)
Source: Web Of Science
Added: May 30, 2023

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