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Summary Bone and muscle impairment, named osteoporosis and sarcopenia, may co-occur with age, and patients with both disorders might exhibit physical frailty. One-hundred sixty-three patients were included. 14.2% had both disorders and presented more frequent with previous fall, reduced daily activity level, walk/balance challenges, and need of walking aid, indicating overall frailty. Purpose In older adults, sarcopenia (muscle impairment) and physical frailty may accompany osteoporosis (bone brittleness), yet osteoporosis is typically assessed without evaluating these conditions, even though coexistence may contribute to exacerbated negative health outcomes. We aimed at evaluating the prevalence of sarcopenia and impaired muscle domains in osteoporotic patients and explore the risk of osteosarcopenia from markers of physical frailty. Methods In Copenhagen, Denmark, osteoporotic patients aged 65 + were assessed cross-sectionally in 2018–2019. Evaluations included muscle mass, strength, and function; bone mineral density; and self-reported physical activity, fall, balance challenges, dizziness, and the need of walking aid. Low bone mass, low-energy fracture, or treatment with anti-osteoporotic medication defined patient with osteoporosis, and sarcopenia was defined by low muscle strength and mass. Osteosarcopenia was defined from the coexistence of both conditions. Results One-hundred sixty-three patients with osteoporosis were included. Of those, 23 (14.2%) exhibited sarcopenia, hence osteosarcopenia. Hand-grip-strength, 30-s-chair-stand-test, relative-appendicular-lean-muscle-mass, and gait-speed were below cut-off levels in 21.0%, 30.9%, 28.8%, and 23.6% of the patients, respectively. Previous fall, activity level, walk and balance challenges, and need of walking aid were statistically (or borderline) significantly more often affected in the osteosarcopenic group compared with the solely osteoporotic. Logistic regression analysis, however, revealed that only the need for walking aid significantly increased the risk of an osteosarcopenia diagnosis (odds ratio 5.54, 95% CI (1.95–15.76), p < 0.01). Conclusions Sarcopenia and impaired muscle domains were frequent in osteoporotic patients, as were markers of physical frailty, indicating the need of thorough examination of osteoporotic patients.
Summary Bone and muscle impairment, named osteoporosis and sarcopenia, may co-occur with age, and patients with both disorders might exhibit physical frailty. One-hundred sixty-three patients were included. 14.2% had both disorders and presented more frequent with previous fall, reduced daily activity level, walk/balance challenges, and need of walking aid, indicating overall frailty. Purpose In older adults, sarcopenia (muscle impairment) and physical frailty may accompany osteoporosis (bone brittleness), yet osteoporosis is typically assessed without evaluating these conditions, even though coexistence may contribute to exacerbated negative health outcomes. We aimed at evaluating the prevalence of sarcopenia and impaired muscle domains in osteoporotic patients and explore the risk of osteosarcopenia from markers of physical frailty. Methods In Copenhagen, Denmark, osteoporotic patients aged 65 + were assessed cross-sectionally in 2018–2019. Evaluations included muscle mass, strength, and function; bone mineral density; and self-reported physical activity, fall, balance challenges, dizziness, and the need of walking aid. Low bone mass, low-energy fracture, or treatment with anti-osteoporotic medication defined patient with osteoporosis, and sarcopenia was defined by low muscle strength and mass. Osteosarcopenia was defined from the coexistence of both conditions. Results One-hundred sixty-three patients with osteoporosis were included. Of those, 23 (14.2%) exhibited sarcopenia, hence osteosarcopenia. Hand-grip-strength, 30-s-chair-stand-test, relative-appendicular-lean-muscle-mass, and gait-speed were below cut-off levels in 21.0%, 30.9%, 28.8%, and 23.6% of the patients, respectively. Previous fall, activity level, walk and balance challenges, and need of walking aid were statistically (or borderline) significantly more often affected in the osteosarcopenic group compared with the solely osteoporotic. Logistic regression analysis, however, revealed that only the need for walking aid significantly increased the risk of an osteosarcopenia diagnosis (odds ratio 5.54, 95% CI (1.95–15.76), p < 0.01). Conclusions Sarcopenia and impaired muscle domains were frequent in osteoporotic patients, as were markers of physical frailty, indicating the need of thorough examination of osteoporotic patients.
Background and aims This study set out to examine the stiffness of the gastrocnemius medialis (GM) and Achilles tendon across postmenopausal women with osteosarcopenia (OS), osteoporosis (OP), and normal bone mineral density. Furthermore, we explored the relationship between muscle-tendon stiffness and postural sway during a curve-tracking task in both sagittal (AP) and frontal (ML) planes. Methods Seventy-three women volunteered to participate in this study. The participants were classified into OS (T-score ≤ − 2.5 and muscle mass below 5.5 kg/m2), OP (T-score ≤ − 2.5), and healthy (T-score >-1) groups. The shear wave elastography was used to determine GM and Achilles tendon stiffness during rest and activation. The postural sway was recorded using a force plate during the performance-based curve tracking (CT) task. Results The stiffness of the GM and Achilles tendon was found to be significantly lower in the OS group compared to the OP and healthy groups (P < 0.05). In the CT task, the OS group exhibited a significant decrease in the mean absolute (P = 0.011) and RMS error (P = 0.022) in the ML direction compared to the OP group. Additionally, a positive correlation was found between the ML mean absolute error and both GM and Achilles’s stiffness during rest and activation (P < 0.05). Discussion and conclusion The OS group exhibited the lowest muscle-tendon stiffness. The GM and Achilles stiffness was positively correlated with poor performance-based balance, particularly in the ML direction. This may increase the risk of falls and subsequent hip fractures during simple daily weight- shifting activities in women with osteosarcopenia.
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