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BACKGROUND/AIMS: Long-term administration of spironolactone is reported to reduce portal pressure in cirrhotic patients. We examined the effects of acute administration of canrenoate potassium, an aldosterone antagonist, on portal hemodynamics in compensated cirrhotic patients using noninvasive duplex Doppler ultrasonography. MATERIALS AND METHODS: Baseline values were obtained in the fasting state, and then 200mg of canrenoate potassium in 10ml of saline solution was intravenously administered to 22 patients, whereas 10ml of saline solution was administered as a placebo to 8 patients. RESULTS: The portal cross-sectional area, portal blood velocity and portal blood flow decreased by 5.3 +/- 9.2, 10.4 +/- 8.7% and 13.0 +/- 12.4%, respectively at the nadir 60min after administration and these decreases persisted until 120min. Placebo did not affect these parameters of portal hemodynamics. Eleven responders, who had a more than 10% drop in portal blood flow 60min after administration, had significantly higher levels of plasma aldosterone than 8 non responders who had less than 10% drop. The reduction rate of portal blood flow was closely correlated with plasma aldosterone level. CONCLUSIONS: These findings suggest that aldosterone antagonist directly causes a reduction in portal blood flow, probably through inhibition of aldosterone-induced vasoconstrictive action.  相似文献   
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Using focused high-energy microbeams of carbon- and oxygen-ions and a high speed, wide bandwidth measurement system, we found a strong dependence of the collected charge and the transient current waveform on the position of ion incidences. Single-event charge is collected by a diffusion mechanism even when the ion strikes a position about 3 4 μm away from the lateral boundary of the p+n-junction area.  相似文献   
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Single ion hit system has been installed in heavy ion microbeam system in JAERI Takasaki for analysis of single event phenomenon in semiconductor devices. The detection and control of a single ion injection to a target have been achieved by combining a beam pulsing system with a gated detection system. The microscopic observation of a track detector hit by a single ion periodically, shows the controls of the hit positions and numbers of incident ions are successful.  相似文献   
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In bulk chiral crystals, 3D structures of magnetic skyrmions form topologically protected skyrmion strings (SkS) that have shown potential as magnonic nano-waveguides for information transfer. Although SkS stability is expected to be enhanced in nanostructures of skyrmion-hosting materials, experimental observation and detection of SkS in nanostructures under an applied in-plane magnetic field is difficult. Here, temperature-dependent magnetic field-driven creation and annihilation of SkS in B20 FeGe nanostructures (nanowires and nanoplates) under in-plane magnetic field (H||) are shown and the mechanisms behind these transformations are explained. Unusual asymmetric and hysteretic magnetoresistance (MR) features are observed but previously unexplained during magnetic phase transitions within the SkS stability regime when H|| is along the nanostructure's long edge, which increase the sensitivity of MR detection. Lorentz transmission electron microscopy of the SkS and other magnetic textures under H|| in corroboration with the analysis of the anisotropic MR responses elucidates the field-driven creation and annihilation processes of SkS responsible for such hysteretic MR features and reveals an unexplored stability regime in nanostructures.  相似文献   
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The advent of ferromagnetism in 2D van der Waals (vdW) magnets has stimulated high interest in exploring topological magnetic textures, such as skyrmions for use in future skyrmion-based spintronic devices. To engineer skyrmions in vdW magnets by transforming Bloch-type magnetic bubbles into Néel-type skyrmions, a heavy metal/vdW magnetic thin film heterostructure has been made to induce interfacial Dzyaloshinskii–Moriya interaction (DMI). However, the unambiguous identification of the magnetic textures inherent to vdW magnets, for example, whether the magnetic twists (skyrmions/domain walls) are Néel- or Bloch-type, is unclear. Here we demonstrate that the magnetic twists can be tuned between Néel and Bloch-type in the vdW magnet Fe3GeTe2 (FGT) with/without interfacial DMI. We use an in-plane magnetic field to align the modulation wavevector q of the magnetizations in order to distinguish the Néel- or Bloch-type magnetic twists. We observe that q is perpendicular to the in-plane field in the heterostructure (Pt/oxidized-FGT/FGT/oxidized-FGT), while q aligns at a rotated angle with respect to the field direction in the FGT thin plate thinned from bulk. We find that the aligned domain wall twists hold fan-like modulations, coinciding qualitatively with our computational results.  相似文献   
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