CRC Handbook of Engineering in Medicine and BiologyDavid G. Fleming, Barry N. Feinberg |
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Page 124
... constant perturbation , 108 i.e. , constant darkness . This return does not happen . The free run in darkness is usually not 24 hr and the discrepancy cannot be accounted for by the constant temperature condition since the Q10 under ...
... constant perturbation , 108 i.e. , constant darkness . This return does not happen . The free run in darkness is usually not 24 hr and the discrepancy cannot be accounted for by the constant temperature condition since the Q10 under ...
Page 127
... constant dark and at constant 20 ° C . The bottom 3 populations were kept in constant dark , but were exposed to a single 12 - hr high - temperature pulse ( 12 hr at 28 ° C ) ; the pulses were started at successive 8 - hr intervals ...
... constant dark and at constant 20 ° C . The bottom 3 populations were kept in constant dark , but were exposed to a single 12 - hr high - temperature pulse ( 12 hr at 28 ° C ) ; the pulses were started at successive 8 - hr intervals ...
Page 168
... constant n X n matrices , n = dim X , with piecewise constant controls u ( t ) , is CC - controllable if , and only if , the Lie algebra ging ( n , R ) generated by A , ... , Am is the algebra of an analytic group G in G¤ ( n , R ) ...
... constant n X n matrices , n = dim X , with piecewise constant controls u ( t ) , is CC - controllable if , and only if , the Lie algebra ging ( n , R ) generated by A , ... , Am is the algebra of an analytic group G in G¤ ( n , R ) ...
Contents
Philosophical Historical and Theoretical Considerations of Regulation and Control | 1 |
The Use of Physical Models and Engineering Concepts in Attempts to Understand | 41 |
Shortrange Intercellular Communication Biochemical Oscillations and Circadian Rhythms | 55 |
Copyright | |
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activity analysis appears applications articular cartilage assumed behavior biological blood bone cell characteristics circadian clinical complex component considered constant continuous curve cycle determined developed devices direct disease display dynamical effect electrical Electronics Engineering equations example field Figure flow fluid frequency function given glucose heart increase initial input joint lead light limit linear linear system load lubrication material mathematical measurements mechanism membrane microprocessor normal Note obtained occur operation organism oscillations output parameters patient period perturbation phase physical physiological possible potential pressure problem produce properties pulse record reference region regulation relative represent resistance response shown signal simple single specific stable steady structure subjects surface synovial synovial fluid temperature theory tissue transducer unit usually variables York