Groped for a novel stimulation method for the prevention of lumbar vertebral compression pressure bone fracture and verification using a bone density drop model mouse.

Kouji Yamada, Kazuhiro Nishii, Kazuyoshi Sakai, Toshio Teranishi, Mamoru Matsubara
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引用次数: 3

Abstract

Osteoporosis is leaving bones more fragile and susceptible to fracture. It has a massive impact, both physically and mentally, markedly diminishing quality of life. A new form of therapeutic exercise or physical therapy that mitigates the abrupt decrease in bone density in postmenopausal women must quickly be developed to avoid those problems. In this study, ovariectomy (OVX) mice were used as models to simulate the decrease in bone density observed in postmenopausal women. Physical therapy via a shaking stimulus, in the form of moving a platform that rotates in a roughly circular motion in the horizontal plane, was studied as a way to prevent the decrease in bone density of the lumbar vertebrae by analysis of bone histomorphometry, a feat that the stimulus from conventional therapeutic exercise and physical therapy have failed to achieve. Comparison of the stimulus/ovariectomized (+/+) group with the -/+ group indicated significant increases in ES (P < 0.01), N. Mu. Oc (P < 0.05), OV (P < 0.05), O. Th (P < 0.01), and L. Th (P < 0.01) in the +/+ group. If this finding is used clinically, we believe that it could lead to therapy that would prevent compression fractures of the lumbar vertebrae.

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探索一种预防腰椎压缩性骨折的新型刺激方法,并用骨密度下降模型小鼠进行验证。
骨质疏松症使骨骼更加脆弱,容易骨折。它对身体和精神都有巨大的影响,显著降低了生活质量。必须尽快开发一种新的治疗性运动或物理疗法,以减轻绝经后妇女骨密度的突然下降,以避免这些问题。本研究以卵巢切除(OVX)小鼠为模型,模拟绝经后妇女骨密度的下降。通过移动在水平面上以大致圆周运动旋转的平台的形式进行震动刺激的物理治疗,研究了通过骨组织形态学分析来防止腰椎骨密度降低的方法,这是传统治疗运动和物理治疗的刺激未能实现的壮举。刺激/去卵巢(+/+)组与-/+组比较,ES显著升高(P < 0.01);+/+组Oc (P < 0.05)、OV (P < 0.05)、O. Th (P < 0.01)、L. Th (P < 0.01)。如果这一发现在临床上使用,我们相信它可能会导致治疗,以防止腰椎压缩性骨折。
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Editorial: Suspension notice. Spatio-temporal distribution of eosinophils in the mouse uterus during peri-implantation period. Morphology of the lingual papillae of the bharal (Pseudois nayaur). The hepatic architecture of the coelacanth differs from that of the lungfish in portal triad formation. A novel device to prevent osteoporosis by promoting bone metabolism using a newly developed double-loading stimulation with vibration and shaking.
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