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Consequently, several large-flip-angle parallel transmission designs have recently been suggested.
Tailored radiofrequency pulses exploiting parallel transmission have been shown to mitigate these phenomena.
Nonetheless, parallel transmission with accelerated pulses can be severely impeded by hardware and/or system imperfections.
Parallel transmission lines are difficult to protect due to mutual coupling between circuits.
Finally, related electrostatic induction effects on human body under the parallel transmission lines are also analyzed.
Parallel transmission is a very promising method to tackle B1+ field inhomogeneities at ultrahigh field in magnetic resonant imaging (MRI).
All five DC motors without gearhead are placed on the ground by employing proper parallel transmission linkages for power transmission.
Teed connecting parallel transmission lines frequently subject a variety of technical problems in the view of protection engineering.
A new accurate fault location algorithm for parallel transmission line with a teed connection is introduced in this paper.
We propose the DCSPT method for available bandwidth estimation, based on dual carrier sensing with parallel transmission awareness.
This paper presents a new accurate fault location algorithm for parallel transmission lines based on the distributed parameter line model.
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