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1.
Chinese Medical Journal ; (24): 772-781, 2019.
Article in English | WPRIM | ID: wpr-772209

ABSTRACT

BACKGROUND@#Areal bone mineral density (aBMD) applied for osteoporosis diagnosis unavoidably results in the missingdiagnosis in patients with large bones and misdiagnosis in those with small bones. Therefore, we try to find a new adjusted index of bone mineral content (BMC) to make up shortcomings of aBMD in osteoporosis diagnosis.@*METHODS@#In this multi-center epidemiological study, BMC and aBMD of lumbar spines (n = 5510) and proximal femurs (n = 4710) were measured with dual energy X-ray absorptiometry (DXA). We analyzed the correlation between the bone mass and body weight in all subjects including four age groups (50 years). And then the body weight was used for standardizing BMC (named wBMC) and applied for the epidemiological analysis of osteoporosis.@*RESULTS@#The correlation of body weight and BMC is 0.839 to 0.931 of lumbar vertebra 1-4 (L1-4), and 0.71 to 0.95 of femoral neck in different age groups. When aBMD was applied for diagnosing osteoporosis, the prevalence was 7.55%, 16.39%, and 25.83% in patients with a high, intermediate, and low body weight respectively. However, the prevalence was 21.8%, 18.03%, and 11.64% by wBMC applied for diagnosing osteoporosis. Moreover, the prevalence of osteoporosis increased by 3.76% by wBMC with the body weight increased by 5 kg. The prevalence decreased by 1.94% when the body weight decreased by 5 kg.@*CONCLUSIONS@#wBMC can reduce the missed diagnosis in patients with large body weight and reduce misdiagnosis in those with small body weight. Including children, wBMC may be feasible for osteoporosis diagnosis individuals at any age.


Subject(s)
Adult , Female , Humans , Middle Aged , Young Adult , Absorptiometry, Photon , Age Factors , Body Weight , Physiology , Bone Density , Physiology , Femur Neck , Diagnostic Imaging , Metabolism , Lumbar Vertebrae , Diagnostic Imaging , Metabolism , Osteoporosis , Diagnostic Imaging , Metabolism , Prevalence
2.
Chinese Journal of Integrated Traditional and Western Medicine ; (12): 261-264, 2003.
Article in Chinese | WPRIM | ID: wpr-304190

ABSTRACT

<p><b>OBJECTIVE</b>To explore the correlation between bone mineral density and Syndrome type of TCM in patients with chronic obstructive pulmonary disease (COPD) for providing the base of clinical integrative traditional Chinese and western medical therapy for the disease through the Syndrome typing and determination of changes in bone metabolism and bone density.</p><p><b>METHODS</b>Bone mineral density (BMD) of lumbar vertebrae 2-4, femoral neck, Ward's triangle and trochanter in 27 COPD male patients, 25 male control subjects and 25 healthy persons were determined using dual energy X-ray absorptiometry, patient's Syndrome type, their blood levels of total protein, albumin, alkaline phosphatase, bone glaprotein, hydroxyproline, calcium, phosphate, urine levels of calcium/creatine and phosphorous/creatine as well as arterial blood gas were also determined.</p><p><b>RESULTS</b>The BMD in COPD patients accompanied with respiratory failure or with course > 10 years was higher than that in COPD patients without respiratory failure or with course < or = 10 years, BMD in COPD patients of Fei-Pi-Shen type was lower than that in those of Fei-Pi, but the urine hydroxyprdine in the former was higher than that in the latter (all P < 0.05).</p><p><b>CONCLUSION</b>(1) COPD is a risk factor for osteoporosis; (2) Shen Deficiency is the key and nucleus of secondary osteoporosis to COPD; (3) It is inferred that early regulation of Shen may be facilitated to prevent osteoporosis in COPD patients.</p>


Subject(s)
Aged , Humans , Male , Middle Aged , Bone Density , Diagnosis, Differential , Kidney , Medicine, Chinese Traditional , Osteoporosis , Diagnosis , Pulmonary Disease, Chronic Obstructive , Diagnosis , Yang Deficiency , Diagnosis
3.
Acta Academiae Medicinae Sinicae ; (6): 262-266, 2003.
Article in Chinese | WPRIM | ID: wpr-350112

ABSTRACT

<p><b>OBJECTIVE</b>To design and manufacture a reliable spine phantom used in the cross calibration and quality control of dual X-ray absorptiometry (DXA).</p><p><b>METHODS</b>A hydroxyapatite quality control phantom was designed and made through three steps: solid water, bone phantom material and integration, then evaluated the phantom on four different types of DXA machines made by LUNAR company.</p><p><b>RESULTS</b>Among the four DXA densitometers, the Expert fan beam densitometer had the biggest accuracy errors of bone mineral density (BMD), bone mineral content(BMC) and area values while the other three one narrow fan beam (Prodigy) and two pencil beam densitometers-had small errors. Of the three indexes measured by all the machines, BMD error was the smallest (-15.4%-11.5%), with the Prodigy's BMD was most outstanding. BMD errors at the higher density ends were small, tend to be positive values while the errors at the lower ends were big, tend to be negative. In cross calibration, giving consideration to the differences between the both ends, it is better to use the regression equation to correct. The base line of precision error derived by scanning the phantom once a day for consecutive 25 days was better than that derived by scanning the phantom 25 times consecutively on the same day. As to precision error, the coefficient of variation (CV) of scanning-25 times-a day was the smallest (0.0043) while the CV of 12 adults measurements was the biggest (0.0078).</p><p><b>CONCLUSIONS</b>This phantom can be used in the quality control and cross-calibration of different types of DXA machines.</p>


Subject(s)
Adolescent , Adult , Female , Humans , Male , Middle Aged , Absorptiometry, Photon , Biocompatible Materials , Bone Density , Calibration , Durapatite , Models, Anatomic , Spine
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