The dynamic characteristics of the low force myosin cross-bridges were determined in fully calcium-activated skinned rabbit psoas muscle fibers shortening under constant loads (0.04–0.7 x full isometric tension Po). The shortening was interrupted at various times by a ramp stretch (duration, 10 ms; amplitude, up to 1.8% fiber length) and the resulting tension response was recorded. Except for the earlier period of velocity transients, the tension response showed nonlinear dependence on stretch amplitude; i.e., the magnitude of the tension response started to rise disproportionately as the stretch exceeded a critical amplitude, as in the presence of inorganic phosphate (Pi). This result, as well as the result of stiffness measurement, sugges...
Understanding the mechanism of force generation or shortening in muscle requires knowledge of the re...
ABSTRACT The relation between the chemical and mechanical steps of the myosin-actin ATPase reaction ...
Understanding the mechanism of force generation or shortening in muscle requires knowledge of the re...
The dynamic characteristics of the low force myosin cross-bridges were determined in fully calcium-a...
AbstractTo characterize the kinetics of cross-bridge attachment to actin during unloaded contraction...
When skeletal muscles are activated and mechanically shortened, the force that is produced by the mu...
Inorganic phosphate (Pi) decreases the isometric tension of skinned skeletal muscle fibers, presumab...
Investigations were conducted into the biochemical and mechanical states of cross-bridges during iso...
Inorganic phosphate (Pi) decreases the isometric tension of skinned skeletal muscle fibers, presumab...
The actin-myosin lattice spacing of rabbit psoas fibers was osmotically compressed with a dextran T-...
ABSTRACT Investigations were conducted into the biochemical and mechanical states of cross-bridges d...
Recently we reported preliminary mechanical experiments on freshly skinned rabbit psoas fibers that ...
<div><p>When skeletal muscles are activated and mechanically shortened, the force that is produced b...
AbstractThe relation between the chemical and mechanical steps of the myosin-actin ATPase reaction t...
AbstractActive glycerinated rabbit psoas fibers were stretched at constant velocity (0.1–3.0 lengths...
Understanding the mechanism of force generation or shortening in muscle requires knowledge of the re...
ABSTRACT The relation between the chemical and mechanical steps of the myosin-actin ATPase reaction ...
Understanding the mechanism of force generation or shortening in muscle requires knowledge of the re...
The dynamic characteristics of the low force myosin cross-bridges were determined in fully calcium-a...
AbstractTo characterize the kinetics of cross-bridge attachment to actin during unloaded contraction...
When skeletal muscles are activated and mechanically shortened, the force that is produced by the mu...
Inorganic phosphate (Pi) decreases the isometric tension of skinned skeletal muscle fibers, presumab...
Investigations were conducted into the biochemical and mechanical states of cross-bridges during iso...
Inorganic phosphate (Pi) decreases the isometric tension of skinned skeletal muscle fibers, presumab...
The actin-myosin lattice spacing of rabbit psoas fibers was osmotically compressed with a dextran T-...
ABSTRACT Investigations were conducted into the biochemical and mechanical states of cross-bridges d...
Recently we reported preliminary mechanical experiments on freshly skinned rabbit psoas fibers that ...
<div><p>When skeletal muscles are activated and mechanically shortened, the force that is produced b...
AbstractThe relation between the chemical and mechanical steps of the myosin-actin ATPase reaction t...
AbstractActive glycerinated rabbit psoas fibers were stretched at constant velocity (0.1–3.0 lengths...
Understanding the mechanism of force generation or shortening in muscle requires knowledge of the re...
ABSTRACT The relation between the chemical and mechanical steps of the myosin-actin ATPase reaction ...
Understanding the mechanism of force generation or shortening in muscle requires knowledge of the re...