Correlations among bone strength, muscle mass, and physical activity suggest that these traits may be modulated by each other and/or by common genetic and/or environmental mechanisms. This study used structural equation modeling (SEM) to explore the extent to which select genetic loci manifest their pleiotropic effects through functional adaptations commonly referred to as Wolff's law. Quantitative trait locus (QTL) analysis was used to identify regions of chromosomes that simultaneously influenced skeletal mechanics, muscle mass, and/or activity-related behaviors in young and aged B6XD2 second-generation (F2) mice of both sexes. SEM was used to further study relationships among select QTLs, bone mechanics, muscle mass, and measures of acti...
Experimental evolutionary studies are excellent approaches to study the coadaptation of the musculos...
Bone is an exquisitely evolved connective tissue that serves structural and metabolic roles in the b...
Differences in skeletal mechanical adaptation between C3H/HeJ (C3H) and C57BL/6J (B6) mouse strains ...
QTL analyses identified several chromosomal regions influencing skeletal phenotypes of the femur and...
Little is known about interactions between muscle and bone during the removal and application of mec...
Little is known about interactions between muscle and bone during the removal and application of mec...
Background In recent years it has become increasingly apparent that physical inactivity can predispo...
Genetic makeup of an individual is a strong determinant of the morphologic and mechanical properties...
The aim of this study was to compare three methods of adjusting skeletal data for body size and exam...
The aim of this study was to compare three methods of adjusting skeletal data for body size and exam...
Osteoporosis, characterized by low levels of bone mineral density (BMD), is a prevalent medical cond...
UNLABELLED: Quantitative genetic analyses of bone data for 710 inter-related individuals 8-85 yr of ...
Bone strength is influenced by many properties intrinsic to bone, including its mass, geometry, and ...
The analysis of mutant growth phenotypes with Mendelian properties has been successful at identify...
The findings that sex-specific effects on femoral structure and peak bone mineral density (BMD) are ...
Experimental evolutionary studies are excellent approaches to study the coadaptation of the musculos...
Bone is an exquisitely evolved connective tissue that serves structural and metabolic roles in the b...
Differences in skeletal mechanical adaptation between C3H/HeJ (C3H) and C57BL/6J (B6) mouse strains ...
QTL analyses identified several chromosomal regions influencing skeletal phenotypes of the femur and...
Little is known about interactions between muscle and bone during the removal and application of mec...
Little is known about interactions between muscle and bone during the removal and application of mec...
Background In recent years it has become increasingly apparent that physical inactivity can predispo...
Genetic makeup of an individual is a strong determinant of the morphologic and mechanical properties...
The aim of this study was to compare three methods of adjusting skeletal data for body size and exam...
The aim of this study was to compare three methods of adjusting skeletal data for body size and exam...
Osteoporosis, characterized by low levels of bone mineral density (BMD), is a prevalent medical cond...
UNLABELLED: Quantitative genetic analyses of bone data for 710 inter-related individuals 8-85 yr of ...
Bone strength is influenced by many properties intrinsic to bone, including its mass, geometry, and ...
The analysis of mutant growth phenotypes with Mendelian properties has been successful at identify...
The findings that sex-specific effects on femoral structure and peak bone mineral density (BMD) are ...
Experimental evolutionary studies are excellent approaches to study the coadaptation of the musculos...
Bone is an exquisitely evolved connective tissue that serves structural and metabolic roles in the b...
Differences in skeletal mechanical adaptation between C3H/HeJ (C3H) and C57BL/6J (B6) mouse strains ...