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Therefore, flexoelectricity which refers to the electromechanical coupling between electrical polarization and mechanical strain gradient, is expected to be dominant at the nanoscale.
We further introduce and demonstrate a new functionality of piezotoroidicity, which represents a new type of electromechanical coupling between ferrotoroidic ordering and mechanical excitation, emerging in ferroelectric nano-metamaterials.
The results also show that bending actuation of the Aquivion membrane with 40wt% EMI-Tf is much larger than that of Nafion, indicating that the shorter flexible side chains improve the electromechanical coupling between the excess ions and the membrane backbones, while not affecting the actuation speed.
Activation of the voltage-dependent dihydropyridine receptor (skeletal DHPR CaV1.1) triggered Ca2+ release from the SR via electromechanical coupling between DHPR and RyR1.
It is clear that the underlying nature of inverse gating in both eukaryotic (HCN) and prokaryotic (MVP) systems is not a consequence of altered voltage sensing; rather, it appears to be directly related to changes in the process of electromechanical coupling between voltage sensors and the gate.
Although the original reaction to ischemic assault and cell death is necessary to heal the wound and stabilize the ventricular wall, excessive scar formation acts as a barrier to proper electromechanical coupling between relatively healthy regions of the heart, thus compromising efficient and synchronous contraction.
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The electromechanical coupling due to the interactions between the motor and gear system are studied.
The electromechanical coupling is defined as the conversion between electrical energy and mechanical energy in piezoelectric materials.
No significant differences were observed between conduction patterns of electrically or mechanically induced ectopic excitation, including apparent epicardial conduction velocity (0.658 ± 0.076 m × s 1) and electromechanical coupling time, assessed as the delay between the peaks of Vm and CaT (20.2 ± 2.59 ms; see Online Supplement Figures II and III, and corresponding analyses).
A vibration amplitude attenuation of up to 27 dB is achieved when the absolute value is matched with the constant depending on the electromechanical coupling factor of the sheet, and the difference between the loss factors is 0.003.
Main feature of this design is the ability to reduce capacitive parasitic feedthrough between input and output signals while maintaining strong electromechanical coupling.
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