CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Osteopenia

  • Effects of a structured weight-bearing exercise program on bone metabolism among breast cancer survivors: a feasibility trial. 📎

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    Abstract Title:

    Effects of a structured weight-bearing exercise program on bone metabolism among breast cancer survivors: a feasibility trial.

    Abstract Source:

    Clin Breast Cancer. 2010 Jun;10(3):224-9. PMID: 20497921

    Abstract Author(s):

    Luke J Peppone, Karen M Mustian, Michelle C Janelsins, Oxana G Palesh, Randy N Rosier, Kenneth M Piazza, Jason Q Purnell, Tom V Darling, Gary R Morrow

    Article Affiliation:

    Department of Radiation Oncology, University of Rochester Medical Center, NY 14642, USA. This email address is being protected from spambots. You need JavaScript enabled to view it.<This email address is being protected from spambots. You need JavaScript enabled to view it.></This email address is being protected from spambots. You need JavaScript enabled to view it.>

    Abstract:

    PURPOSE: Treatments for breast cancer, specifically hormonal therapy, accelerate bone loss (BL) among breast cancer survivors, leading to osteoporosis and an increase in fracture risk. Tai Chi Chuan (TCC) is a moderate form of weight-bearing exercise, equivalent to walking, and it has been shown to improve aerobic capacity and strength among breast cancer survivors and might also be effective in slowing bone loss in breast cancer survivors. This pilot study compared the influence of TCC with that of standard support therapy (ST; exercise control) on BL biomarkers among breast cancer survivors. PATIENTS AND METHODS: Randomly assigned breast cancer survivors (N = 16; median age, 53 years;<30 months after treatment) completed 12 weeks (3 times per week, 60 minutes per session) of TCC or ST. Serum levels of N-telopeptides of type I collagen (NTx), a marker of bone resorption, and bone-specific alkaline phosphatase (BSAP), a marker of bone formation, were determined according to enzyme-linked immunosorbent assay at baseline and after the intervention. RESULTS: Using analysis of covariance, survivors in the TCC group experienced a greater increase in levels of bone formation (BSAP [microg/L]: before, 8.3; after, 10.2; change, 1.9 microg/L and 22.4%), compared with survivors in ST (BSAP [microg/L]: before, 7.6; after, 8.1; change, 0.5 microg/L [6.3%]). Survivors in the TCC group also experienced a significant decrease in bone resorption (NTx [nanomoles bone collagen equivalent; nmBCE]: before, 17.6; after, 11.1; change, -6.5 nmBCE; -36.9%), whereas women in the ST group did not (NTx [nmBCE]: before, 20.8; after, 18.8; change, -2.0 nmBCE; -9.6%). CONCLUSION: This pilot study suggests that weight-bearing exercise exerts positive effects on BL, through increased bone formation and decreased bone resorption. Further examinations of the influence of TCC on bone health are warranted.

  • Osteopenia

  • The effect of group exercise on postmenopausal osteoporosis and osteopenia

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    Abstract Title:

    [The effect of group exercise on postmenopausal osteoporosis and osteopenia].

    Abstract Source:

    Acta Orthop Traumatol Turc. 2009 Aug-Oct;43(4):343-50. PMID: 19809232

    Abstract Author(s):

    Erden Angin, Zafer Erden

    Article Affiliation:

    KKTC Mehmet Reis Physical Therapy and Rehabilitation Center, Nicosia, Cyprus.

    Abstract:

    OBJECTIVES: We investigated the effects of group exercise on bone mineral density (BMD), pain, and quality of life in postmenopausal women with osteoporosis and osteopenia.

    METHODS: The study included 16 osteoporotic (mean age 55.2 years) and 17 osteopenic (mean age 55.4 years) postmenopausal women whose diagnoses were made by dual energy X-ray absorptiometry (DEXA) showing T-scores of less than -2.5 and in a range of -1 to -2.5, respectively. Subjects having orthopedic, neurological, respiratory, vascular, metabolic, or mental problems were excluded. Each group received the same group exercise program for one hour three times a week for 21 weeks, supervised by a physiotherapist, and including breathing, warm-up, stretching, strengthening, balance, stabilization, and cooling exercises. All participants were evaluated before and after the exercise program by a visual analog scale for pain severity, by DEXA for BMD, and by QUALEFFO-41 (Quality of Life Questionnaire of the European Foundation for Osteoporosis) for quality of life.

    RESULTS: The two groups were similar with respect to age, height, and body mass index (p>0.05), but osteopenic women had a higher body weight (p<0.05). After the exercise program, both groups exhibited significant improvements in T-score, pain score, BMD, and all parameters of the QUALEFFO-41 (p<0.05). The mean T-scores before and after exercise were -2.7 + or - 0.2 and -2.4 + or - 0.5 in osteoporotic women, and -1.8 + or - 0.5 and -1.4 + or - 0.5 in osteopenic women, respectively. Following exercise, 43.8% of osteoporotic women had a T-score showing osteopenia, and 23.5% of osteopenic women had a T-score falling within the normal range. The two groups did not differ significantly with respect to the differences between the mean improvements obtained after the exercise program (p>0.05).

    CONCLUSION: This pilot study demonstrates the effectiveness of physiotherapist-supervised group exercise programs in decreasing pain and increasing BMD and quality of life of both osteoporotic and osteopenic women.

  • Whole Body Vibration Treatments in Postmenopausal Women Can Improve Bone Mineral Density: Results of a Stimulus Focussed Meta-Analysis. 📎

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    Abstract Title:

    Whole Body Vibration Treatments in Postmenopausal Women Can Improve Bone Mineral Density: Results of a Stimulus Focussed Meta-Analysis.

    Abstract Source:

    PLoS One. 2016 ;11(12):e0166774. Epub 2016 Dec 1. PMID: 27907000

    Abstract Author(s):

    Antonio Fratini, Tecla Bonci, Anthony M J Bull

    Article Affiliation:

    Antonio Fratini

    Abstract:

    Whole body vibration treatment is a non-pharmacological intervention intended to stimulate muscular response and increase bone mineral density, particularly for postmenopausal women. The literature related to this topic is controversial, heterogeneous, and unclear despite the prospect of a major clinical effect.The aim of this study was to identify and systematically review the literature to assess the effect of whole body vibration treatments on bone mineral density (BMD) in postmenopausal women with a specific focus on the experimental factors that influence the stimulus. Nine studies fulfilled the inclusion criteria, including 527 postmenopausal women and different vibration delivery designs. Cumulative dose, amplitudes and frequency of treatments as well as subject posture during treatment vary widely among studies. Some of the studies included an associated exercise training regime. Both randomized and controlled clinical trials were included. Whole body vibration was shown to produce significant BMD improvements on the hip and spine when compared to no intervention. Conversely, treatment associated with exercise training resulted in negligible outcomes when compared to exercise training or to placebo. Moreover, side-alternating platforms were more effective in improving BMD values than synchronous platforms and mechanical oscillations of magnitude higher than 3 g and/or frequency lower than 25 Hz were also found to be effective. Treatments with a cumulative dose over 1000 minutes in the follow-up period were correlated to positive outcomes.Our conclusion is that whole body vibration treatments in elderly women can reduce BMD decline.However, many factors (e.g., amplitude, frequency and subject posture) affect the capacity of the vibrations to propagate to the target site; the adequate level of stimulation required to produce these effects has not yet been defined. Further biomechanical analyses to predict the propagation of the vibration waves along the body and assess the stimulation levels are required.

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