Sitater (vår oversettelse)
"Som en ikke-invasiv fysisk terapi er lavfrekvente sinusformede elektromagnetiske felt bevist å fremme benvevsregenerering, selv om de spesifikke molekylære mekanismene fortsatt er ufullstendig forstått."
[original: "As a non-invasive physical therapy, low-frequency sinusoidal electromagnetic fields have been proven to promote bone tissue regeneration, although the specific molecular mechanisms remain incompletely understood."]
"In vitro-forsøkene viste at eksponering for LF-SEMF kan fremme osteogen differensiering av BMSC, med signifikant oppregulering av proteinuttrykket av YAP og β-katenin og økt uttrykk av osteogen-relaterte gener."
[original: "In vitro experiments demonstrated that exposure to LF-SEMF could facilitate the osteogenic differentiation of BMSCs, significantly upregulating the protein expression levels of YAP and β-catenin, and enhancing the expression of osteogenesis-related genes."]
"LF-SEMF fremmer differensieringen av benmargsstamceller til osteoblaster via YAP/β-katenin-signalveien."
[original: "LF-SEMF promotes the differentiation of bone marrow mesenchymal stem cells into osteoblasts through YAP/β-catenin signaling pathway."]
Low frequency sinusoidal electromagnetic field accelerating intervertebral fusion through YAP/β-catenin axis.
Chen et al. (2026) Stem Cell Research & Therapy Journal Level 1ⓘ
Archived copy for date/quote verification
🇨🇳 Chinese LF-SEMF study accelerates rat intervertebral fusion via YAP/β-catenin axis. Bone marrow stem cells differentiate to osteoblasts under LF-SEMF; scaffold + field combo boosts fusion. Source: Stem Cell Res Ther
categories)research, therapeutic