Results 161 to 170 of about 1,156,956 (356)
EFTUD2 Regulates Cortical Morphogenesis via Modulation of Caspase‐3 and Aifm1 Splicing Pathways
EFTUD2, a spliceosomal GTPase linked to MFDM, regulates cortical development through apoptotic control. Conditional Eftud2 knockout in murine neural stem cells induces microcephaly and cortical disorganization, while pathogenic variants drive neuronal loss.
Liping Chen+12 more
wiley +1 more source
Combined Military Hospital Quetta/National University of Medical Sciences (NUMS) Pakistan
M. Ijaz Khan+6 more
openalex +2 more sources
Current Progress and Challenges of Electromagnetic Wave Absorbing Materials at High Temperature
This review explains three dielectric loss mechanisms of electromagnetic wave absorbing materials under high temperatures and the high temperature testing technology is explained. The research progress of carbon‐based, ceramic‐based and metamaterial‐based electromagnetic wave absorbers is analyzed.
Zhixiao Wang+5 more
wiley +1 more source
Patrick Luiz Sullivan De Oliveira
doaj +2 more sources
A. N. Kirpichnikov - a historian of military science in mediaeval rus
Vladimir Lapshin
openalex +1 more source
This study investigates plasma metabolomic biomarkers for rheumatoid arthritis (RA) development using longitudinal data from 209 RA patients and 56 individuals at risk. It also reveals metabolic signatures linked to severity, age, sex, and anti‐citrullinated protein autoantibody in RA.
Chenxi Zhu+21 more
wiley +1 more source
Toward a history of the space shuttle. An annotated bibliography [PDF]
This selective, annotated bibliography discusses those works judged to be most essential for researchers writing scholarly studies on the Space Shuttle's history.
Gillette, Aaron K., Launius, Roger D.
core +1 more source
This study presents a microwave‐activated composite integrating expanded graphite with α‐MnO2 nanowires, engineered to synergistically optimize dielectric and magnetic properties. The innovative microwave‐driven process enables rapid structural transformation, yielding ultrathin, scalable electromagnetic wave‐absorbing films.
Junyu Lu+6 more
wiley +1 more source