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HIGH-IMPACT DROP EXERCISE ALTERS MECHANICAL PROPERTIES IN OSTEOPENIC BONE

EXERCÍCIO DE QUEDA ALTERA AS PROPRIEDADES MECÂNICAS EM OSSO OSTEOPÊNICO

EL EJERCICIO DE CAÍDA ALTERA LAS PROPIEDADES MECÁNICAS EN HUESO OSTEOPÉNICO

ABSTRACT

Introduction:

Osteopenia is a reversible condition and precedes osteoporosis. Physical activity and mechanical loading appear to play an important role in the regulation of bone homeostasis, without the side effects of targeted drug therapy. However, there is controversy as to which type of stimulus promotes more effective adaptations with respect to mechanical properties of bones.

Objective:

To investigate the effects of high-impact drop training on bone structure after ovariectomy-induced osteopenia in 40 10-week-old female Wistar rats.

Methods:

Twenty female rats (prevention program) were randomly assigned into two groups (n=10): Ovariectomized sedentary (OVXs), and OVX trained (OVX+Dropt). OVX+Dropt animals began training 3 days after surgery. Another twenty female rats (treatment program) were randomly assigned to two other groups (n=10): Ovariectomized sedentary (OVXs), and OVX trained (OVX+Dropt). OVX+Dropt animals began training 60 days after surgery. The rats in the trained groups were dropped from 40 cm height 20 times/day, 5 days/week over a period of 12 weeks period. At the end, the biomechanical tests were analyzed.

Results:

The final load and stiffness of the left tibia in the trained groups were higher than in the sedentary groups (p<0.05).

Conclusions:

Dropping exercise induced favorable changes in bone mechanical properties. High-impact drop exercise is effective to prevent bone loss after ovariectomy even when osteopenia is already established.

Keywords:
bone diseases, metabolic; ovariectomy; exercise therapy

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