56 research outputs found

    Laser-induced-fluorescence measurement of thermal conductivity in warm dense matter generated by pulsed-power discharge

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    Thermal conductivity in warm dense matter is one of the interests for thermonuclear fusion scenarios. Alternative inertial confinement fusion, which is a fast ignition with applied magnetic field [1], has been considered to improve the coupling efficiency. The target behavior of the fast ignition with applied magnetic field depends on the anisotropic thermal conductivity. The magnetic confinement fusion (MCF) [2] Up to now, the heat load on the divertor in previous MCF systems has been unreached parameter. Thus, to predict properties of the divertor under these heat loads, several experiments have been performed using several methods[3-6]. To predict the performance of the tungsten divertor in MCF, we should analyze not only metallurgical properties but also thermophysical properties of ablated tungsten..

    Laser-induced-fluorescence measurement of thermal conductivity in warm dense matter generated by pulsed-power discharge

    Get PDF
    Thermal conductivity in warm dense matter is one of the interests for thermonuclear fusion scenarios. Alternative inertial confinement fusion, which is a fast ignition with applied magnetic field [1], has been considered to improve the coupling efficiency. The target behavior of the fast ignition with applied magnetic field depends on the anisotropic thermal conductivity. The magnetic confinement fusion (MCF) [2] Up to now, the heat load on the divertor in previous MCF systems has been unreached parameter. Thus, to predict properties of the divertor under these heat loads, several experiments have been performed using several methods[3-6]. To predict the performance of the tungsten divertor in MCF, we should analyze not only metallurgical properties but also thermophysical properties of ablated tungsten..

    OCT with a Visible Broadband Light Source Applied to High-Resolution Nondestructive Inspection for Semiconductor Optical Devices

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    Optical coherence tomography with a visible broadband light source (vis-OCT) was developed for high-resolution and nondestructive measurements of semiconductor optical devices. Although a near-infrared (NIR) light source should be used for medical OCT to obtain deep penetration of biological samples, a visible broadband light source is available as a low-coherence light source for industrial products. Vis-OCT provides higher axial resolution than NIR-OCT, because the axial resolution of an OCT image is proportional to the square of the center wavelength of the light source. We developed vis-OCT with an axial resolution of less than 1 μm in air and obtained cross-sectional profiles and images of ridge-type waveguides having heights and widths of several μm. Additionally, we performed cross-sectional measurements and imaging of a stacked semiconductor thin layer. The measured values were similar to those measured by scanning electron microscopy, and the effectiveness of vis-OCT for nondestructive inspection of semiconductor optical devices was demonstrated

    Identification of candidate molecular targets of the novel antineoplastic antimitotic NP-10

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    We previously reported the identification of a novel antimitotic agent with carbazole and benzohydrazide structures: N′-[(9-ethyl-9H-carbazol-3-yl)methylene]-2-iodobenzohydrazide (code number NP-10). However, the mechanism(s) underlying the cancer cell-selective inhibition of mitotic progression by NP-10 remains unclear. Here, we identified NP-10-interacting proteins by affinity purification from HeLa cell lysates using NP-10-immobilized beads followed by mass spectrometry. The results showed that several mitosis-associated factors specifically bind to active NP-10, but not to an inactive NP-10 derivative. Among them, NUP155 and importin β may be involved in NP-10-mediated mitotic arrest. Because NP-10 did not show antitumor activity in vivo in a previous study, we synthesized 19 NP-10 derivatives to identify more effective NP-10-related compounds. HMI83-2, an NP-10-related compound with a Cl moiety, inhibited HCT116 cell tumor formation in nude mice without significant loss of body weight, suggesting that HMI83-2 is a promising lead compound for the development of novel antimitotic agents

    Extensive Atrophic Gastritis Increases Intraduodenal Hydrogen Gas

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    Objective. Gastric acid plays an important part in the prevention of bacterial colonization of the gastrointestinal tract. If these bacteria have an ability of hydrogen (H2) fermentation, intraluminal H2 gas might be detected. We attempted to measure the intraluminal H2 concentrations to determine the bacterial overgrowth in the gastrointestinal tract. Patients and methods. Studies were performed in 647 consecutive patients undergoing upper endoscopy. At the time of endoscopic examination, we intubated the stomach and the descending part of the duodenum without inflation by air, and 20 mL of intraluminal gas samples of both sites was collected through the biopsy channel. Intraluminal H2 concentrations were measured by gas chromatography. Results. Intragastric and intraduodenal H2 gas was detected in 566 (87.5%) and 524 (81.0%) patients, respectively. The mean values of intragastric and intraduodenal H2 gas were 8.5 ± 15.9 and 13.2 ± 58.0 ppm, respectively. The intraduodenal H2 level was increased with the progression of atrophic gastritis, whereas the intragastric H2 level was the highest in patients without atrophic gastritis. Conclusions. The intraduodenal hydrogen levels were increased with the progression of atrophic gastritis. It is likely that the influence of hypochlorhydria on bacterial overgrowth in the proximal small intestine is more pronounced, compared to that in the stomach

    Temperature dependence of electronic optical absorption in (NMe4+· TCNQ-·)2TCNQ

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    The temperature dependence of the linearly polarized optical absorption spectrum has been measured in single crystals of (NMe4+·TCNQ−·)2TCNQ, where NMe4 and TCNQ are tetramethylammonium and tetracyanoqui nodi methane, respectively, in the temperature range between −100 and +150 ℃. In addition to intense TCNQ−· dimer bands, strongly temperature-dependent satellite bands appear at around 1.3 eV and 1.9 eV. The singular behavior of the intensity and peak position of the 1.3 eV band shows that a second order phase transition takes place at 126 ℃. The origin of this band is discussed in relation to the mechanism of the phase transition

    Hepatic Arterial Infusion Therapy with Cisplatin using Protein Binding Inhibition : Pharmacokinetics and Antineoplastic Effects of Cisplatin Combined with L-Cysteine in Rats

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    Cisplatin の蛋白結合には共有結合が関与しており、L-cysteine はcisplatin の共有結合を低下させる。そこで、この蛋白結合阻害を利用してcisplatin の肝動注療法の応用性について検討を行った。実験では、Donryu系雄性ラットにおけるL-cysteine 併用時におけるcisplatin の体内動態と抗腫瘍効果の影響について検討した。その結果、L-cysteine 併用においてcisplatin のtotal とfree 濃度に有意な差はみられなかった。また肝癌ラットを使用したin vivo 実験系において、L-cysteine を併用したcisplatin の肝動注はcisplatin のみの投与に比べ、腫瘍増殖率が抑えられる傾向であることを示した。さらに肝組織中における腫瘍部と非腫瘍部におけるcisplatin 濃度において、L-cysteine 併用により腫瘍部と非腫瘍部に有意な差を認めることができた (p<0.01)。以上の結果より、L-cysteine の併用はcisplatin の肝動注療法へ応用できると考えられる。Covalent binding is involved in the protein binding of cisplatin. L-cysteine reduces the covalent binding of cisplatin. We investigated hepatic arterial infusion therapy with cisplatin using protein binding inhibition. In the present experiment, the pharmacokinetics and antineoplastic effects of cisplatin combined with L-cysteine in male Donryu rats were investigated. As a result, no significant difference was noted in the total and free concentrations of cisplatin combined with L-cysteine. In an in vivo experiment using rats with liver cancer, the hepatic arterial infusion of cisplatin combined with L-cysteine showed that it was the tendency that tumor growth rate was inhibited in comparison with administration only for cisplatin. In addition, concentrations of cisplatin increased significantly between tumor and non-tumor regions in liver tissue when combined with L-cysteine (p<0.01). Thus, L-cysteine can be combined with cisplatin for hepatic arterial infusion therapy

    Electronic properties of Cs2TCNQ3 crystals grown under magnetic field

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    The influence of magnetic field on the crystallization process has been examined in Cs2TCNQ3 (TCNQ = tetracyaniquinodimethane), a strongly Coulomb-correlated organic semiconductor. The crystal structure is unaffected by the magnetic field, while the electric, magnetic and optical properties change markedly if the magnetic field higher than a threshold (~ 4 T) is applied during the crystal growth. The high-field crystals exhibit a very weak but distinct spontaneous magnetization with the exceedingly high Curie temperature of ~ 420 K. The infrared and visible spectroscopy data show that this novel ferromagnetism concurs with the renormalization of the π* state of TCNQ radical anions, TCNQ-

    Cost Analysis of Sirolimus-Eluting Stents in the Japanese Health Insurance System

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