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result(s) for
"Gustavo, Cointry"
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Differences in the relation between bone mineral content and lean body mass according to gender and reproductive status by age ranges
by
Salmerón, Jorge
,
Clark, Patricia
,
Velázquez-Cruz, Rafael
in
Absorptiometry
,
Body mass
,
Bone mass
2019
The present study aims: (1) to explore the influence of lean mass (LM) on bone mineral content (BMC), (2) to investigate the pubertal influences on the BMC–LM relation, and (3) to perform Z-score charts of BMC–LM relation, stratified by gender and reproductive status categorized by age ranges. A cross-sectional analysis was conducted using 4001 healthy subjects between 7 and 90 years participating in the Health Workers Cohort Study. Of these, 720 participants were ≤ 19 years, 2417 were women ≥ 20 years, and 864 were men ≥ 20 years. Using Dual X-ray absorptiometry (DXA), we measured BMC and LM. Participants’ pubertal development was assessed according to Tanner’s stage scale. To describe BMC–LM relation, simple correlation coefficients were computed. To produce best-fit equations, an ANOVA test was conducted. Z-score graphs for the BMC–LM relation were obtained. In general, the BMC–LM correlations were linear and highly significant. For boys, curves were virtually parallel, with similar intercepts and a progressive displacement of values toward the upper-right region of the graph, for each Tanner subgroup. For girls, curves for Tanner 1-2 and 4-5 stages were parallel; but, in girls Tanner 4-5, the intercepts were significantly higher by about +300–400 g of BMC (P < 0.001). For postmenopausal women, the curve was parallel to that for the premenopausal but showed a lower intercept (P < 0.001). We provide DXA reference data on a well-characterized cohort of 4001 healthy subjects. These reference curves provide a reference value for the assessment and monitoring of bone health in all age groups included in the present study.
Journal Article
Assessing isometric ankle abductor strength with a novel device: Reliability and electromyographic validation
2026
Assessing ankle abductor (ABD) strength is clinically relevant because the peroneal muscles are key contributors to lateral ankle stability. However, no previous study has examined whether isolated ABD strength can be measured reliably and reflects peroneal muscle function. This study evaluated the intra-session test–retest reliability of a novel device for isometric ABD strength assessment and examined construct validity using surface electromyography (EMG). Two independent samples were included: n = 24 for test–retest reliability and n = 15 for EMG construct validity. Strength testing was performed using a custom-built, examiner-independent device that standardized positioning and stabilization while applying resistance through a load cell. Participants executed maximal isometric ABD efforts. Reliability was assessed using ICC (2,1), SEM, coefficient of variation, and minimal detectable change (MDC95) values. EMG activity of the peroneus longus, peroneus brevis, and tibialis anterior was recorded during ankle ABD to examine muscle-specific activation patterns across force levels (30%, 50%, and 70% of maximal voluntary force). The device showed good-to-excellent reliability, with ICC values from 0.82 to 0.94 and acceptable SEM and MDC95. The most stable results were obtained using the highest value across five or six attempts. EMG analyses demonstrated a clear graded, force-dependent activation pattern in the peroneal muscles, whereas tibialis anterior activity showed greater variability and a less consistent response. These findings indicate that the device provides consistent ABD strength measurements and elicits muscle-specific activation patterns consistent with peroneal function, supporting clinical assessment of lateral ankle stabilizers and guiding rehabilitation.
Journal Article
Reference charts for the relationships between dual-energy X-ray absorptiometry-assessed bone mineral content and lean mass in 3,063 healthy men and premenopausal and postmenopausal women
by
Cure-Ramírez, Pablo
,
Capozza, Ricardo F.
,
Cointry, Gustavo R.
in
Absorptiometry, Photon - methods
,
Adult
,
Aged
2005
Correlations between dual-energy X-ray absorptiometry (DXA)-assessed bone mineral content and lean mass (BMC-LM curves), and between BMC/LM ratio and age ([BMC/LM]-age curves), were analyzed in the whole body (WB), the upper limbs (ULs) and the lower limbs (LLs) of 3,063 healthy Hispanic adults. Groups of 472 men aged 25-87 years, 1,035 premenopausal (pre-MP) women aged 27-54 years, and 1,556 post-menopausal (post-MP) women aged 48-93 years were studied with a GE-Lunar DPX-Plus device. BMC-LM curves confirmed previous observations that BMC and LM masses always correlate linearly, with similar slopes within each region, but differing in intercepts according to gender and hormonal status. Multiple regression tests showed little or no independent interaction of body weight or height with those relationships. [BMC/LM]-age curves were flat in men but showed the positive influence of estrogens throughout the age range in women. Z-scored graphs of all the corresponding relationships were compiled, showing the confidence intervals for means +/-1, +/-2, and +/-3 SDs of the data (+/-1, +/-2, +/-3 z-scores) along BMC-LM and [BMC/LM]-age curves. These charts are proposed as references for assessing how well bone mass (as assessed by BMC) and muscle mass (assumed proportional to LM) follow the natural anthropometric/biomechanical proportionality in Hispanic men and women within the age range studied, employing similar devices. Charts for LLs, showing the lowest variance amongst the studied correlations and approaching the origin as an exclusive feature, could provide the most accurate reference curves. Differences between data from ULs and LLs may provide information about any eventual interaction of body-weight bearing with the general results. The proposed analysis may provide useful information for approaching a differential diagnosis between disuse-related and other types of osteopenias employing only DXA.
Journal Article
Biomechanical impact of aluminum accumulation on the pre- and post-yield behavior of rat cortical bone
by
Negri, Armando Luis
,
Cointry, Gustavo Roberto
,
Capozza, Ricardo Francisco
in
Aluminum - metabolism
,
Aluminum - pharmacology
,
Animals
2005
In order to analyze the effects on whole-bone behavior of aluminum accumulation, 14 rats, aged 90 days, received i.p. doses of 27 mg/day of elemental Al, as Al(OH)3, during 26 weeks, while 14 rats remained as controls. Their femur diaphyses were studied tomographically by peripheral quantitative computed tomography (pQCT) and mechanically tested in bending. The load/deformation curves obtained allowed distinction between effects observed during the linearly elastic (Hookean) and nonlinear (non-Hookean, or plastic) behaviors of bones before and after the yield point, respectively. Treatment reduced the cortical bone mineralization (volumetric bone mineral density [BMD], -2%; P < 0.01), with a negative impact on the bending stiffness (Young's elastic modulus) and the yield stress of cortical bone (-18% and -13%; P < 0.05). Despite the absence of any cortical mass increase (cross-sectional area), improved spatial distribution of cortical tissue concerning anterior-posterior bending stress (cross-sectional moment of inertia, 10%; P < 0.05) occurred through a modulation of modeling drifts. Up to the yield point, neither the structural strength (load supported), the strain, nor the structural stiffness (load/deformation ratio) of the diaphyses were affected. This suggests an adaptive response of bone geometry to the impairment of bone material stiffness. However, Al intoxication significantly reduced the ultimate load and the post-yield fraction of that load (-6% and -27%; P < 0.05). This suggests that the proposed, adaptive response could have improved bone design so as to make it adequate for maintaining a normal pre-yield diaphyseal stiffness and strength according to the bone mechanostat theory, but not so as to provide complete protection of the diaphyseal post-yield (and ultimate) strength. Although a relative inhibition of bone formation could not be discarded, an Al-induced impairment of the bone ability to resist loads beyond the yield point could have caused the unusual disparity observed between effects on bone (elastic) stiffness and (ultimate) strength. In addition, to explain the unusual finding, these results suggest that little-studied microstructural factors (spatial arrangement of elements within the mineralized tissue) affecting the post-yield behavior of cortical bone, regardless of bone mineralization in these and other conditions, ought to be further investigated in specifically designed studies as a novel, promising resource in skeletal research.
Journal Article
Relationship between physical activity, lean body mass, and bone mass in the Mexican adult population
by
Salmerón, Jorge
,
Clark, Patricia
,
Muñoz-Aguirre, Paloma
in
Aerobics
,
Arthritis
,
Body composition
2021
SummaryWe evaluated the association between leisure-time physical activity (LTPA), bone mineral content (BMC), and lean mass (LM) in whole body (wb) and limbs of the Mexican adult population. Our results demonstrate that some types of LTPA with relatively high/medium impact on bones such as football, basketball, tennis, and weightlifting improve BMC and LM.PurposeTo evaluate the effect of different kinds of leisure-time physical activity (LTPA) on bone mass values and its association with lean mass (LM) in the whole body (wb) and limbs of a large sample of Mexican men and premenopausal (pre-MP) women.MethodsWe conducted a cross-sectional analysis of data from the Health Workers Cohort Study. Bone mineral content (BMC, kg), bone area (cm2), and LM (kg) were measured with DXA. The LTPA level and the “sedentary” condition were determined using a validated questionnaire adapted for the Mexican population. One-way ANOVA tests evaluated the differences in weight, height, body mass index, and wb, lower limb (ll) and upper limb (ul) BMC and LM between the active (those who engaged in LTPA) and sedentary group. Relationships between BMC and LM values were analyzed. Slopes of the curves and Z scores of LTPA groups with respect to the sedentary group were compared.ResultsIn men, both wb-BMC and ll-BMC were significantly higher in the groups performing basketball, football, tennis, weightlifting, and running, and all wb-LM, ll-LM, and ul-LM were higher in running, weightlifting, football, and basketball groups with respect to the sedentary group. Both the Z scores and the slopes of BMC-vs-LM relationships were higher than the controls, but only in the ll of male basketball and football players.ConclusionOur findings demonstrate that some types of LTPA with relatively high/medium impact on bones, such as football, basketball, tennis, and weightlifting, improve both BMC and LM compared to sedentary individuals. Finally, this relationship is stronger for the bones found in the legs and it seems that women are less sensitive to this effect, possibly due to hormonal, dietary, and pharmacological reasons.
Journal Article
Novel experimental effects on bone material properties and the pre- and postyield behavior of bones may be independent of bone mineralization
by
Daniele, Stella M.
,
Fracalossi, Néstor M.
,
Capozza, Ricardo F.
in
Alendronic acid
,
Aluminum
,
Animals
2005
In this article, we summarize the results of six different tomographic/biomechanical rat studies involving hypophysectomy (Hx), ovariectomy, treatment with rhGH, olpadronate, alendronate, and toxic doses of aluminum and the development of a genetic diabetes in the eSS strain. All these conditions induced some interesting and rarely reported effects on postyield bone strength. These effects were generally related neither to the degree of mineralization or the elastic modulus of the bone tissue nor to the preyield behavior of the bones. In two particular cases (Hx, eSS), the elastic modulus of bone tissue varied independently of its degree of mineralization. These results suggest the involvement of some microstructural factor(s) of bone tissue resistance to crack progression (a postyield feature of bone behavior), rather than to crack initiation (the yield-determining factor) in the corresponding mechanism. Changes in collagen or crystal structure may play that role. These changes are relevant to the mechanism of fracture production during plastic deformation, a feature of bone strength that might be independent from mineralization. Therefore, these changes might help to explain some effects of novel treatments on bone strength unrelated to bone mineralization. This questions the belief that the remaining bone mass in metabolic osteopenias is biologically and mechanically normal.
Journal Article
Absorptiometric assessment of muscle-bone relationships in humans: reference, validation, and application studies
by
Fracalossi, Néstor M.
,
Capozza, Ricardo F.
,
Feldman, Sara
in
Absorptiometry, Photon
,
Body mass index
,
Body weight
2005
This report summarizes some preliminary absorptiometric (DXA, QCT/pQCT) studies from our laboratory, supporting the following assumptions. 1. In Homo sapiens at all ages, natural proportionality between DXA-assessed bone mineral mass (bone mineral content, BMC) and muscle mass (lean mass, LM) of the whole body or limbs is specific for ethnicity, gender, and reproductive status, but not for body weight, height, or body mass index. 2. This proportionality is sensitive to many kinds of endocrine-metabolic perturbations. 3. Percentilized or Z-scored charts of the BMC/LM correlations as determined in large samples of healthy individuals can provide a diagnostic reference for evaluating proportionality in different conditions. 4. Employing exclusively DXA, this methodology can be applied to discriminate between \"disuse-related\" and \"metabolic\" osteopenias based on the finding of normal or low BMC/LM percentiles or Z-scores respectively, with important therapeutic and monitoring implications.
Journal Article
Analysis of the structure and strength of bones in celiac disease patients
2003
The aim of this study was to gain insight into the pathogenesis of bone mass loss and weakening affecting patients with celiac disease, according to the new concepts of bone structure/strength and muscle/bone interrelationships.
We studied serum variables and tomographic indicators of bone structure and strength and regional muscle masses in a series of patients at diagnosis and after 1 yr on a gluten-free diet and in gender- and age-matched controls.
At diagnosis, serum levels of calcium and vitamin D were low, and indicators of parathyroid hormone activity and bone formation and resorption were increased. All these parameters were normalized by treatment. Peripheral quantitative CT scans of the distal radius revealed that cortical bone was generally more affected than trabecular bone. The cross-sectional area (CSA) and the volumetric mineral content and density of cortical bone (indicators of cortical tissue mass and mechanical quality), and moments of inertia (CSMI, indicator of the bone architectural design) were in the lower end of normal range in men, and below that in 50% of women. In men, the CSMI/CSA ratio (indicator of the architectural efficiency of distribution of the available cortical tissue) was lower than expected and remained unchanged after treatment. In women, the baseline ratio was normal, but both the ratio and the CSMI were low at diagnosis and normalized after treatment. Both baseline values and the treatment-induced changes of cortical and trabecular bone in the radius and the axis (L3) correlated inversely with serum parathyroid hormone levels. Baseline values or changes in the mineral content of the vertebral bone correlated with the CSA of psoas and spine-extensor muscles. Multiple regression analyses showed that metabolic and mechanical parameters were independent determinants of different aspects of the vertebral bone weakening.
Our results show that bone weakening in celiac disease might result from both 1) a metabolic disturbances of bone remodeling affecting trabecular and cortical bone masses and the mechanical quality of the bone material, and 2) a reduction of muscle strength impairing the modeling-dependent optimization of bone architectural design and mass of cortical bone. Dietary treatment seems to correct almost exclusively the metabolically induced disturbances, which were predominant in women.
Journal Article
Analysis of The Structure and Strength of Bones in Celiac Disease Patients
by
Ferretti, José
,
Marino, Alicia
,
Mazure, Roberto
in
Adult
,
Biological and medical sciences
,
Bone and Bones - metabolism
2003
The aim of this study was to gain insight into the pathogenesis of bone mass loss and weakening affecting patients with celiac disease, according to the new concepts of bone structure/strength and muscle/bone interrelationships. We studied serum variables and tomographic indicators of bone structure and strength and regional muscle masses in a series of patients at diagnosis and after 1 yr on a gluten-free diet and in gender- and age-matched controls. At diagnosis, serum levels of calcium and vitamin D were low, and indicators of parathyroid hormone activity and bone formation and resorption were increased. All these parameters were normalized by treatment. Peripheral quantitative CT scans of the distal radius revealed that cortical bone was generally more affected than trabecular bone. The cross-sectional area (CSA) and the volumetric mineral content and density of cortical bone (indicators of cortical tissue mass and mechanical quality), and moments of inertia (CSMI, indicator of the bone architectural design) were in the lower end of normal range in men, and below that in 50% of women. In men, the CSMI/CSA ratio (indicator of the architectural efficiency of distribution of the available cortical tissue) was lower than expected and remained unchanged after treatment. In women, the baseline ratio was normal, but both the ratio and the CSMI were low at diagnosis and normalized after treatment. Both baseline values and the treatment-induced changes of cortical and trabecular bone in the radius and the axis (L3) correlated inversely with serum parathyroid hormone levels. Baseline values or changes in the mineral content of the vertebral bone correlated with the CSA of psoas and spine-extensor muscles. Multiple regression analyses showed that metabolic and mechanical parameters were independent determinants of different aspects of the vertebral bone weakening. Our results show that bone weakening in celiac disease might result from both 1) a metabolic disturbances of bone remodeling affecting trabecular and cortical bone masses and the mechanical quality of the bone material, and 2) a reduction of muscle strength impairing the modeling-dependent optimization of bone architectural design and mass of cortical bone. Dietary treatment seems to correct almost exclusively the metabolically induced disturbances, which were predominant in women.
Journal Article