4.4 Article

Does the early phase of aging affect the morphology of biceps brachii and torque and total work of elbow flexors in healthy volunteers?

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ASSOC BRAS DIVULG CIENTIFICA
DOI: 10.1590/1414-431X2023e12202

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Arm; Biopsy; Humans; Muscle strength dynamometer; Torque

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This cross-sectional study investigated the morphological adaptations and performance of the biceps brachii muscle and elbow flexors in healthy individuals in the early phase of aging. The results showed that there were no significant differences in fiber diameter between age groups for both sexes. The proportion of oxidative fibers decreased in men and increased in women with age. Peak torque and total work did not change over the analyzed decades of life.
Upper and lower limbs can be affected by several diseases and changes related to current life habits, such as the sedentarism, technological advances, and even eating habits. This cross-sectional study investigated morphological adaptations of the biceps brachii muscle and the performance of the elbow flexors in healthy individuals in the early phase of aging. Thirty-two volunteers were separated according to age range (3rd, 4th, and 5th decades of life) and sex. Smaller diameters and subtypes of fibers were evaluated using muscle biopsies, and peak torque and total work were assessed using an isokinetic dynamometer. The variables were compared considering sex and decade, using mixed-effects linear models. The smaller diameter of all fiber types did not differ significantly between age groups for either sex. The proportion of oxidative fibers was reduced in male participants in the 4th (-20%) and 5th (-6%) decades of life compared to the 3rd decade, and there was an increase in the number of oxidative fibers in women from the 4th (+14%) to the 5th decade of life. There were no significant changes in the peak torque and total work between the analyzed age groups. The early phase of aging starts with alterations in the proportion of fibers, with a decrease in oxidative fibers in men and an increase in oxidative fibers in women. Smaller diameter, torque, and total work did not change over these decades of life.

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