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To reveal the compliance characteristics of the TFM, the static compliance analysis is conducted.
The results show that the differences among the various types of hinges is relevant in terms of both kinematic and compliance characteristics.
Using these dip-coated nanocomposite microvessels, we have shown that it is possible to mimic the hydraulic conductivity and pressure-responsive radial compliance characteristics of biological microvessels.
This study considers the compliance characteristics of vessels constructed from an inner layer of electrospun PVA-SbQ fibres incorporated in a PVA/Gelatin cryogel.
Flexure mechanisms, with the inherent advantages of selective compliance characteristics [3, 4], have been widely used in the field of precision engineering, such as scientific instruments, optical alignment devices, micro-/nano-positioning stages, precision manufacturing machines [5].
After verifying reproducible mechanical compliance characteristics of commercial hydrogel gradient substrates, substrates were functionalized with whole length fibronectin or collagen, both of which are found in skeletal structures and are relevant to cell-matrix signalling.
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A dual feedback control loop was proposed to improve the resonance caused by the belt-driven structure and stabilize the cycling speed in the cycle rehabilitated device; meanwhile, the impedance model constructed by the feedback control loop is presented to generate the compliance characteristic for stably and gently controlling the speed response affected by reactive torque.
The PCCO algorithm is based on the windkessel model by Otto Frank [ 28], including three major individual properties: aortic/arterial compliance, characteristic impedance, and peripheral vascular resistance.
We also calculated the effective arterial elastance (Ea), an integrative parameter that incorporates both the steady and pulsatile components of arterial load, including resistance, compliance, characteristic impedance, and cardiac cycle time intervals [ 14, 18, 19].
However, because of the oscillatory nature of arterial pressure and blood flow, this approximation provides not a full characterization of the whole arterial impedance but just a gross oversimplification, ignoring other components such as arterial compliance, characteristic impedance or arterial wave propagation-reflection phenomena [ 2, 3].
This relation provides a more comprehensive description of the arterial load faced by the ejecting ventricle, since it incorporates other components of the arterial system, including total arterial compliance, characteristic impedance or the effects of arterial wave reflections, as well as the ratio of mean pressure to mean flow [ 3, 7, 25].
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