Calcium (Ca2+) plays a pivotal role in almost all cellular processes and ensures the functionality of an organism. In skeletal muscle fibers, Ca(2+) is critically involved in the innervation of skeletal muscle fibers that results in the exertion of an action potential along the muscle fiber membrane, the prerequisite for skeletal muscle contraction. Furthermore and among others, Ca(2+) regulates also intracellular processes, such as myosin-actin cross bridging, protein synthesis, protein degradation and fiber type shifting by the control of Ca(2+)-sensitive proteases and transcription factors, as well as mitochondrial adaptations, plasticity and respiration. These data highlight the overwhelming significance of Ca(2+) ions for the integrity...
Item does not contain fulltextThe physiological process by which Ca2+ is released from the sarcoplas...
The use of skeletal muscles in daily activities and even during strenuous exercise resulting in fati...
Calcium is known to play a prominent regulatory role in skeletal muscle cells and is amongst others ...
Calcium (Ca2+) plays a pivotal role in almost all cellular processes and ensures the functionality o...
Calcium (Ca2+) plays a pivotal role in almost all cellular processes and ensures the functionality o...
Mechanotransduction is a process where cells sense their surroundings and convert the physical force...
Item does not contain fulltextChanges in intracellular Ca2+-concentration play an important role in ...
Skeletal muscle-specific stem cells are pivotal for tissue development and regeneration. Muscle plas...
The main task of skeletal muscle is contraction and relaxation for body movement and posture mainten...
Changes in intracellular Ca2+-concentration play an important role in the excitation-contraction-rel...
Calcium is the most ubiquitous second messenger. Its concentration inside the cell is tightly regula...
Skeletal muscle contraction relies on both high-fidelity calcium (Ca2+) signals and robust capacity ...
Calcium release during skeletal muscle excitation-contraction (EC) coupling occurs at the junctions ...
Store-operated Ca(2+) entry (SOCE) has been found to be a rapidly activated robust mechanism in skel...
A decrease in skeletal muscle contractile activity or its complete cessation (muscle unloading or di...
Item does not contain fulltextThe physiological process by which Ca2+ is released from the sarcoplas...
The use of skeletal muscles in daily activities and even during strenuous exercise resulting in fati...
Calcium is known to play a prominent regulatory role in skeletal muscle cells and is amongst others ...
Calcium (Ca2+) plays a pivotal role in almost all cellular processes and ensures the functionality o...
Calcium (Ca2+) plays a pivotal role in almost all cellular processes and ensures the functionality o...
Mechanotransduction is a process where cells sense their surroundings and convert the physical force...
Item does not contain fulltextChanges in intracellular Ca2+-concentration play an important role in ...
Skeletal muscle-specific stem cells are pivotal for tissue development and regeneration. Muscle plas...
The main task of skeletal muscle is contraction and relaxation for body movement and posture mainten...
Changes in intracellular Ca2+-concentration play an important role in the excitation-contraction-rel...
Calcium is the most ubiquitous second messenger. Its concentration inside the cell is tightly regula...
Skeletal muscle contraction relies on both high-fidelity calcium (Ca2+) signals and robust capacity ...
Calcium release during skeletal muscle excitation-contraction (EC) coupling occurs at the junctions ...
Store-operated Ca(2+) entry (SOCE) has been found to be a rapidly activated robust mechanism in skel...
A decrease in skeletal muscle contractile activity or its complete cessation (muscle unloading or di...
Item does not contain fulltextThe physiological process by which Ca2+ is released from the sarcoplas...
The use of skeletal muscles in daily activities and even during strenuous exercise resulting in fati...
Calcium is known to play a prominent regulatory role in skeletal muscle cells and is amongst others ...