Results 201 to 210 of about 814,354 (242)
Vestibular Paroxysmia Coexisting With Meige Syndrome: A Case Report
ABSTRACT VP and MS are distinct clinical entities arising from the peripheral vestibular system and central extrapyramidal pathways, respectively. We report a rare case of a 69‐year‐old woman with coexistence of VP and MS. Individualized pharmacotherapy resolved vertigo and markedly improved blepharospasm.
Yanan Ding +6 more
wiley +1 more source
Atypical Age‐Related Patterns of Neural Signal Complexity in Autism Spectrum Disorder
Using multiscale entropy of resting‐state EEG, children with ASD show globally elevated EEG‐derived neural signal complexity across temporal scales compared with TD peers. These differences are most pronounced early in development and become more region‐ and scale‐specific with age, indicating atypical developmental organization of neural dynamics in ...
Junxia Han +6 more
wiley +1 more source
Causal Association Between Lifestyle Behavior and Potential Risk Factors With Blepharoptosis
ABSTRACT Background Blepharoptosis is among the most common disorders of eyelid malposition that may influence appearance and damage visual function, and both of these can have negative effects on the quality of life. Various types of blepharoptosis have been reported, including neurogenic, traumatic, congenital, mechanical, psychogenic, and myogenic ...
Shiqi Hui, Zhijia Hou, Dong‐mei Li
wiley +1 more source
Abstract Background The molecular mechanisms underlying adaptation to physical exertion and racing stress in horses remain incompletely understood. Peripheral blood transcriptomics offers a minimally invasive method to monitor systemic responses to exercise and identify biomarkers of adaptation or overload. Objectives To evaluate transcriptomic changes
Izabela Dąbrowska +4 more
wiley +1 more source
The regulation of stem cell fate and its application in neural regeneration
Regulating stem cell fate is crucial for neural regeneration. This review summarizes key physical, biological, and chemical strategies and their applications in repairing nerve injuries, providing new insights for regenerative medicine. Abstract Regulating the fate of stem cells (SCs) is a key technical problem in the field of regenerative medicine and
Yuexin He +3 more
wiley +1 more source
This comprehensive review highlights the transformative role of 3D printing and bioprinting technologies in the regeneration of female reproductive organs and the treatment of gynecological diseases. Unlike previous overviews that focus narrowly on isolated applications, this work provides an integrative analysis of recent clinical and preclinical ...
Chan Hum Park, In‐Sun Hong
wiley +1 more source
Involvement of DPY19L3 in Myogenic Differentiation of C2C12 Myoblasts [PDF]
DPY19L3 has been identified as a C-mannosyltransferase for thrombospondin type-1 repeat domain-containing proteins. In this study, we focused on the role of DPY19L3 in the myogenic differentiation of C2C12 mouse myoblast cells. We carried out DPY19L3 gene depletion using the CRISPR/Cas9 system.
Kazuki Miura, Siro Simizu
exaly +4 more sources
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Immunofluorescence analysis of myogenic differentiation
2022Skeletal muscle is a highly regenerative tissue that can efficiently recover from various damages caused by injuries and excessive exercises. In adult muscle, stem cells termed satellite cells are mitotically quiescent but activated upon muscle damages to enter the cell cycle as myogenic precursor cells or myoblasts. After several rounds of cell cycles,
Atsushi, Asakura, Nobuaki, Kikyo
openaire +2 more sources
Myostatin is an inhibitor of myogenic differentiation
American Journal of Physiology-Cell Physiology, 2002Myostatin (MSTN), a transforming growth factor (TGF)-β superfamily member, has been shown to negatively regulate muscle growth by inhibiting muscle precursor cell proliferation. Here, we stably transfected C2C12 cells with mouse MSTN cDNA to investigate its possible role in myoblast differentiation.
Ramón, Ríos +3 more
openaire +2 more sources
JAK-STAT pathway and myogenic differentiation [PDF]
Myogenic differentiation plays an important role in muscle regeneration and is regulated by two transcription factor families, MRFs and MEF2, which induce differentiation of myoblasts through expression of the muscle-specific gene, myogenin. In addition, many intracellular signaling pathways are also involved in myogenic differentiation, including p38 ...
Jang, You-Na, Baik, Eun Joo
exaly +3 more sources

