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Bandura Albert; O'Leary Ann; Taylor C. Barr; Gauthier Janel; Gossard Denis 《Canadian Metallurgical Quarterly》1987,53(3):563
In this experiment, we tested for opioid and nonopioid mechanisms of pain control through cognitive means and the relation of opioid involvement to perceived coping efficacy. Subjects were taught cognitive methods of pain control, were administered a placebo, or received no intervention. Their pain tolerance was then measured at periodic intervals after they were administered either a saline solution or naloxone, an opiate antagonist that blocks the effects of endogenous opiates. Training in cognitive control strengthened perceived self-efficacy both to withstand and to reduce pain; placebo medication enhanced perceived efficacy to withstand pain but not reductive efficacy; and neither form of perceived self-efficacy changed without any intervention. Regardless of condition, the stronger the perceived self-efficacy to withstand pain, the longer subjects endured mounting pain stimulation. The findings provide evidence that attenuation of the impact of pain stimulation through cognitive control is mediated by both opioid and nonopioid mechanisms. (PsycINFO Database Record (c) 2010 APA, all rights reserved) 相似文献
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A method is presented for explicitly representing dimensions, tolerances, and geometric features in solid models. The method combines CSG and boundary representations in a graph structure called an object graph. Dimensions are represented by a relative position operator. The method can automatically translate changes in dimensional values into corresponding changes in geometry and topology. The representation provides an important foundation for higher-level application programs to automate tolerance analysis and synthesis. The implementation of a prototype interactive polyhedral modeler based on this representation is presented 相似文献
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A. Vidan R. M. Westervelt M. Stopa M. Hanson A. C. Gossard 《Journal of Superconductivity》2005,18(2):223-227
We have fabricated artificial molecules consisting of three coupled quantum dots defined in the two-dimensional electron gas of a GaAs/AlGaAs heterostructure using lithographically patterned gates and trenches. The three dots are arranged in a ring structure, where each dot is coupled to the other two dots. We find that, when tuned to the Coulomb blockade regime, the triple quantum dot device acts as a charge rectifier: an electron enters the third dot where it is trapped, producing a jamming effect where no other electron may enter the first dot. Triple quantum dots coupled in a ring will allow for the study of new molecular phases using artificial molecules and may also serve as building blocks of two-dimensional arrays for quantum computation. 相似文献
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Molecular beam epitaxy is the most widely currently used technique for the growth of semiconductor microstructures. Multilayers with thicknesses and smoothness controlled near the monolayer level are being produced, including, recently, quantum wells with special shapes, quantum wells to which electric fields may be applied, new structures with enhanced carrier mobilities, structures for tunneling injection of carriers, and possible structures for achievement of quantum wires and dots. New crystal systems and new growth techniques are extending the range of accessible microstructures. 相似文献