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Deanne Taylor

Philadelphia University · CA
Area of research
Molecular Biology · Pediatrics, Perinatology and Child Health
Research interest
Research interests include Prenatal Screening and Diagnostics, Gene expression and cancer classification, Spaceflight effects on biology, and Single-cell and spatial transcriptomics.
h-index
41
citations
7,375
works
261
NIH funding
primary concept
Biology
email

Recent publications

Aging and putative frailty biomarkers are altered by spaceflight
Scientific Reports 2024cited by 30position: middledoi
Astronaut omics and the impact of space on the human body at scale
Nature Communications 2024cited by 29position: middledoi
Spatially resolved multiomics on the neuronal effects induced by spaceflight in mice
Nature Communications 2024cited by 24position: middledoi
A Framework for the Interoperability of Cloud Platforms: Towards FAIR Data in SAFE Environments
Scientific Data 2024cited by 16position: middledoi
Lethal COVID-19 associates with RAAS-induced inflammation for multiple organ damage including mediastinal lymph nodes
Proceedings of the National Academy of Sciences 2024cited by 15position: middledoi
Core mitochondrial genes are down-regulated during SARS-CoV-2 infection of rodent and human hosts
Science Translational Medicine 2023cited by 179position: middledoi
Toxicology knowledge graph for structural birth defects
Communications Medicine 2023cited by 22position: middledoi
System-wide transcriptome damage and tissue identity loss in COVID-19 patients
Cell Reports Medicine 2022cited by 50position: middledoi
The interplay between lncRNAs, RNA-binding proteins and viral genome during SARS-CoV-2 infection reveals strong connections with regulatory events involved in RNA metabolism and immune response
Theranostics 2022cited by 30position: middledoi
A roadmap for the Human Developmental Cell Atlas
Nature 2021cited by 189position: middledoi
What Every Reader Should Know About Studies Using Electronic Health Record Data but May Be Afraid to Ask
Journal of Medical Internet Research 2021cited by 116position: middledoi
Role of miR-2392 in driving SARS-CoV-2 infection
Cell Reports 2021cited by 96position: middledoi
NASA GeneLab RNA-seq consensus pipeline: Standardized processing of short-read RNA-seq data
iScience 2021cited by 48position: middledoi
Fundamental Biological Features of Spaceflight: Advancing the Field to Enable Deep-Space Exploration
Cell 2020cited by 456position: middledoi
Comprehensive Multi-omics Analysis Reveals Mitochondrial Stress as a Central Biological Hub for Spaceflight Impact
Cell 2020cited by 393position: middledoi
A New Era for Space Life Science: International Standards for Space Omics Processing
Patterns 2020cited by 56position: middledoi
A Recurrent Missense Variant in AP2M1 Impairs Clathrin-Mediated Endocytosis and Causes Developmental and Epileptic Encephalopathy
The American Journal of Human Genetics 2019cited by 132position: middledoi
The Pediatric Cell Atlas: Defining the Growth Phase of Human Development at Single-Cell Resolution
Developmental Cell 2019cited by 68position: firstdoi
The Genomics Research and Innovation Network: creating an interoperable, federated, genomics learning system
Genetics in Medicine 2019cited by 45position: middledoi
Limits of Spatial Resolution of Phase Encoding Dimensions in MRI of Metals
The Journal of Physical Chemistry Letters 2019cited by 1position: middledoi
Visualizing electromagnetic fields in metals by MRI
AIP Advances 2017cited by 3position: lastdoi
Publisher’s Note: “Visualizing electromagnetic fields in metals by MRI” [AIP Advances 7, 025310 (2017)]
AIP Advances 2017cited by 0position: lastdoi
Rare copy number variants and congenital heart defects in the 22q11.2 deletion syndrome
Human Genetics 2016cited by 57position: middledoi
Visualizing Electromagnetic Vacuum by MRI
Preprints.org 2016cited by 1position: lastdoi
Visualizing Electromagnetic Vacuum by MRI
Preprints.org 2016cited by 1position: lastdoi
Visualizing Electromagnetic Vacuum by MRI
Preprints.org 2016cited by 1position: lastdoi
Blastocyst biopsy with comprehensive chromosome screening and fresh embryo transfer significantly increases in vitro fertilization implantation and delivery rates: a randomized controlled trial
Fertility and Sterility 2013cited by 581position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

· 5 papers (2016–2017)Annadanesh Shellikeri · Ministry of Manpower5 papers (2016–2017) · 5 papers (2016–2017)Stefania Giacomello · Carnegie Department of Plant Biology3 papers (2020–2024)Sylvain V. Costes · Wayne State University3 papers (2020–2024)S. Chandrashekar · Florida State University3 papers (2016–2017)Christopher E. Mason · Cornell University3 papers (2020–2024) · 2 papers (2020–2024) · 2 papers (2020–2024)Jonathan M. Galazka · University of California, Berkeley2 papers (2020–2024)Masafumi Muratani · University of Tsukuba2 papers (2020–2024)Nathaniel J. Szewczyk · University of Nottingham2 papers (2020–2024)Lindsay Rutter · Iowa State University2 papers (2020–2024)Daniela Bezdan · Cornell University2 papers (2020–2024)S. Chandrashekar · Florida State University2 papers (2016–2016)Henry Cope · University of Nottingham2 papers (2020–2024) · 2 papers (2022–2024)Richard Barker · Purdue University West Lafayette2 papers (2020–2024)Douglas C. Wallace · University of Technology2 papers (2022–2024)Amanda Saravia-Butler · Ames Research Center2 papers (2022–2024)