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Related to the difficulty in accounting for the high power-output during shortening, it is also difficult to account for the rapid repriming of the working stroke after a rapid length step, that is, the fact that the amplitude of the tension relaxation upon a rapid release recovers appreciably faster than tension after a priming release step.
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The latter model explains the basic steady-state properties of muscle (such as the force-velocity relationship) whereas the Huxley and Simmons (1971) model accounts for the tension responses to rapid length changes imposed on a muscle cell.
A rapid yorker length delivery clattered into off stump and a slide from 42 for one to 93 all out had begun.
This supports the notion that DADA will also facilitate a rapid full length cloning effort after identification of interesting genes.
Our finding of a decrease in the frequency response at the highest velocity of stretch used (100 μm/msec) shows a limitation of the primary muscle spindle in coding for rapid length changes.
Thus, the tension response to temperature jumps seems to correspond to a slow phase of the tension relaxation in response to rapid length steps [ 225, 229, 230] and the overall rate of the tension response to length steps increases with temperature.
However, naturally regenerated trees displayed a better distribution of their roots around the stem and at depth, combined with more rapid length growth during the first years.
The stable cross-section and rapid length growth along the needles of β″ phase, and the radius growth of β′ phase during the temporal evolution were characterized well by the concomitant nucleation, growth and coarsening stages.
This "roll and lock" transition may both increase the effective attachment rate [ 75] and contribute to the translation of the thin filaments [ 71] as well as the tension recovery following rapid length steps [ 72, 74].
While suggestive of rapid length changes occurring at individual DGC AISs, theoretically, this population-level effect could also have been produced by the de novo appearance of a set of prox1+ DGCs with short AISs and/or the disappearance of prox1+ cells with long AISs.
Here, they no longer divide but continue to elongate, resulting in a rapid increase in length as a function of position.
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CEO of Professional Science Editing for Scientists @ prosciediting.com