Muscle contraction is brought about by the interaction of the proteins actin and myosin. Xray diffraction is a useful tool for gaining information about this process. This thesis reports on the effect of sarcomere length on the X-ray diffraction patterns from active and rigor bony fish muscle. During contraction, sarcomere I.ength changes are known to slow the development of tension (Cecchi et al., 1991) and effect X-ray reflection intensities, (Elliott et al., 1963). Up until now the size of the contractile sarcomere length change in these muscles was unknown and its effect on the tension and X-ray intensities had been neglected (Harford and Squire, 1992). Previously, a time lag was observed between the intensity changes of . the first two...
Detailed structural analysis of muscles normally used to study myosin cross-bridge behavior (e.g., f...
AbstractStructural changes in frog skeletal muscle were studied using x-ray diffraction with a time ...
ABSTRACT Structural changes in frog skeletal muscle were studied using x-ray diffraction with a time...
Defining the structural changes involved in the myosin cross-bridge cycle on actin in active muscle ...
Defining the structural changes involved in the myosin cross-bridge cycle on actin in active muscle ...
Using data from fast time-resolved x-ray diffraction experiments on the synchrotrons at Daresbury an...
Defining the structural changes involved in the myosin cross-bridge cycle on actin in active muscle ...
Defining the structural changes involved in the myosin cross-bridge cycle on actin in active muscle ...
At a resting sarcomere length of approximately 2.2 µm bony fish muscles put into rigor in the ...
Using data from fast time-resolved x-ray diffraction experiments on the synchrotrons at Daresbury an...
The first noninvasive measurements of muscle sarcomere length were made by laser diffraction during ...
Some vertebrate muscles (e.g. those in bony fish) have a simple lattice A-band which is so well orde...
Some vertebrate muscles (e.g. those in bony fish) have a simple lattice A-band which is so well orde...
Some vertebrate muscles (e.g. those in bony fish) have a simple lattice A-band which is so well orde...
Detailed structural analysis of muscles normally used to study myosin cross-bridge behavior (e.g., f...
Detailed structural analysis of muscles normally used to study myosin cross-bridge behavior (e.g., f...
AbstractStructural changes in frog skeletal muscle were studied using x-ray diffraction with a time ...
ABSTRACT Structural changes in frog skeletal muscle were studied using x-ray diffraction with a time...
Defining the structural changes involved in the myosin cross-bridge cycle on actin in active muscle ...
Defining the structural changes involved in the myosin cross-bridge cycle on actin in active muscle ...
Using data from fast time-resolved x-ray diffraction experiments on the synchrotrons at Daresbury an...
Defining the structural changes involved in the myosin cross-bridge cycle on actin in active muscle ...
Defining the structural changes involved in the myosin cross-bridge cycle on actin in active muscle ...
At a resting sarcomere length of approximately 2.2 µm bony fish muscles put into rigor in the ...
Using data from fast time-resolved x-ray diffraction experiments on the synchrotrons at Daresbury an...
The first noninvasive measurements of muscle sarcomere length were made by laser diffraction during ...
Some vertebrate muscles (e.g. those in bony fish) have a simple lattice A-band which is so well orde...
Some vertebrate muscles (e.g. those in bony fish) have a simple lattice A-band which is so well orde...
Some vertebrate muscles (e.g. those in bony fish) have a simple lattice A-band which is so well orde...
Detailed structural analysis of muscles normally used to study myosin cross-bridge behavior (e.g., f...
Detailed structural analysis of muscles normally used to study myosin cross-bridge behavior (e.g., f...
AbstractStructural changes in frog skeletal muscle were studied using x-ray diffraction with a time ...
ABSTRACT Structural changes in frog skeletal muscle were studied using x-ray diffraction with a time...