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131.
E Levy J Cosnes J Loygue 《Comptes rendus des séances de l'Académie des sciences. Série D, Sciences naturelles》1979,288(5):509-511
The reinstillation of the digestive juice in the lower end of an enterostomy has a retrograde inhibitory effect on the upper digestive secretions (average inhibition of 30,2%) particularly on the intestinal juice during the digestive syndromes associated with one or several interruptions of the continuity of the bovel. It should be noted, however, that the observation has not been made on normal men, but rather on severely ill patients treated in the intensive care unit of a gastro-intestinal disease department. 相似文献
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The alternating- and direct-current (a.c. and d.c.) Josephson effects were first discovered in a system of two superconductors, the macroscopic wavefunctions of which are weakly coupled via a tunnelling barrier. In the a.c. Josephson effect, a constant chemical potential difference (voltage) is applied, which causes an oscillating current to flow through the barrier. Because the frequency is proportional to the chemical potential difference only, the a.c. Josephson effect serves as a voltage standard. In the d.c. Josephson effect, a small constant current is applied, resulting in a constant supercurrent flowing through the barrier. In a sense, the particles do not 'feel' the presence of the tall tunnelling barrier, and flow freely through it with no driving potential. Bose-Einstein condensates should also support Josephson effects; however, while plasma oscillations have been seen in a single Bose-Einstein condensate Josephson junction, the a.c. Josephson effect remains elusive. Here we observe the a.c. and d.c. Josephson effects in a single Bose-Einstein condensate Josephson junction. The d.c. Josephson effect has been observed previously only in superconducting systems; in our study, it is evident when we measure the chemical potential-current relation of the Bose-Einstein condensate Josephson junction. Our system constitutes a trapped-atom interferometer with continuous readout, which operates on the basis of the a.c. Josephson effect. In addition, the measured chemical potential-current relation shows that the device is suitable for use as an analogue of the superconducting quantum interference device, which would sense rotation. 相似文献