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Here, we report the results of a double-blind, prospective trial in postmenopausal women with low bone density to address the hypothesis that bone quality measured in terms of MRI-derived strength, microstructure, and adiposity is improved by daily application of low-intensity vibration, relative to placebo.
1 Αυγ 2023 · Vibration treatments play an important role in bone homeostasis by increasing osteoblast activity and decreasing osteoclast activity; this is supported in studies which simulate hypergravity effects on fish scales (Suzuki et al., 2007, 2009).
4 Νοε 2018 · Since Rubin et al. showed that low-magnitude high-frequency mechanical accelerations may produce a strong osteogenic response in animals [ 8] and humans [ 9 ], whole-body vibration (WBV) has become a topic of interest.
20 Οκτ 2020 · Low-magnitude, high-frequency vibration promotes the adhesion and the osteogenic differentiation of bone marrow-derived mesenchymal stem cells cultured on a hydroxyapatite-coated surface: the direct role of Wnt/catenin signaling pathway activation.
Due to the various levels of nutrients in the diet (such as protein, alkali, calcium, Vitamin K, and phytoestrogens) and major lifestyle factors (such as smoking and physical exercise), determining the impact of a vegetarian diet on bone health is very complex.
10 Ιουν 2020 · A primary component of exercise, mechanical signals, when applied in the form of low intensity vibration (LIV), increases mesenchymal stem cell (MSC) osteogenesis and proliferation.
These data indicate that in the growing skeleton, short daily periods of extremely small, high-frequency mechanical signals can inhibit trabecular bone resorption, site specifically attenuate the declining levels of bone formation, and maintain a high level of matrix quality.