All changes for the tissue musculoskeletal system (46)

Identifier Name Type Tissues Organism Gene Data Actions
DAA2591 Advanced glycation end products increases in aging human skeletal muscle Physiological muscle Human
DAA649 Bone mineral density in cortical ulna decreases Physiological ulna Human
DAA648 Bone mass decreases Physiological bone Human
DAA650 Bone density of total hip and femoral neck decreases Physiological bone Human
DAA653 Bone becomes more brittle, less flexible Physiological bone Human
DAA826 Weaker digestive tract muscle contractions Physiological alimentary system, smooth muscle Human
DAA644 Tendons' ability to elongate decreases Physiological tendon Human
DAA2599 Telomere shortening Physiological adipose tissue, skeletal muscle, skin, leukocyte Human
DAA656 Synovial fluid alterations Physiological synovium Human
DAA810 Respiratory muscle strength declines Physiological respiratory system, muscle Human
DAA2040 Reduced type II muscle fiber Physiological skeletal muscle Human
DAA668 Proteoglycan alterations in cartilage Physiological cartilage Human
DAA646 Osteoporosis: progressive loss of bone strength Physiological bone Human
DAA2026 Mutations in mitochondrial DNA accumulate Physiological heart, kidney, skeletal muscle, cerebral cortex, cerebellum Human
DAA1992 Muscle mass and strength loss Physiological skeletal muscle Human
DAA643 Muscle fiber energy metabolism declines Physiological skeletal muscle Human
DAA2592 Muscle characteristics change with aging Physiological muscle Human
DAA642 Muscle atrophy (sarcopenia) Physiological skeletal muscle Human
DAA652 Mineralization of bone tissue increases Physiological bone Human
DAA809 Loss of peripheral motor neurons Physiological respiratory system, muscle Human
DAA2045 Loss of muscle torque Physiological skeletal muscle Human
DAA672 Joint cushioning reduced Physiological joint Human
DAA674 Grip strength decreases Physiological musculoskeletal system Human
DAA654 Fractures are cleaner Physiological bone Human
DAA662 Fibril types in cartilage matrix are altered Physiological cartilage Human