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1409篇 您的检索式:作者名="Mabuchi"
    题名 作者 年代 出处 被引量
1High strain rate superplasticity of rolled AZ91 magnesium alloy显示文摘The high strain rate superplastic deformation properties and characteristics of a rolled AZ91 magnesium alloy at temperatures ranging from 623 to 698 K(0.67Tm-0.76Tm) and high strain rates ranging from 10-3 to 1 s-1 were investigated.The rolled AZ91 magnesium alloy possesses excellent superplasticity with the maximum elongation of 455% at 623 K and a strain rate of 10-3 s-1,and its strain rate sensitivity m is high up to 0.64.The dominant deformation mechanism responsible for the high strain rate superplasticity is still grain boundary sliding(GBS),and the dislocation creep mechanism is considered as the main accommodation mechanism.WANG Qudong WEI Yinhong Y. Chino M. Mabuchi 2008Rare Metals2008,27,1:6
2Plasma brain natriuretic peptide level in older outpatients with heart failure is associated with physical frailty, especially with the slowness domain显示文摘ObjectiveTo 决定在血浆大脑 natriuretic 之间的协会在有心失败( HF )和物理脆弱以及与心血管的药的 106 个门诊病人变老的物理 frailty.MethodsTwo 的每个领域的病人的肽( BNP )水平60岁以上为 HF 被就医了或被给了一为 HF 的药方药被包括。物理脆弱用下列五个领域被估计:缓慢,软弱,疲劳,低活动,并且缩小,根据心血管的健康学习。病人们根据脆弱分数被划分成 nonfrailty 和脆弱组。血浆 BNP 水平被测量。6-min 散步测试被执行测量 endurance.ResultsPlasma BNP 在二个组之间是显著地不同的(脆弱组:158.0 ±214.7 pg/mL, nonfrailty 组:65.2 ±88.0 pg/mL, P <0.01 ) 。Multivariate 逻辑回归分析表明转变木头的血浆 BNP (木头 BNP ) 显著地与物理脆弱被联系(或:1.68, 95% CI:1.11-2.56 ) ,并且木头 BNP 显著地与缓慢领域被联系(走的速度 <1.0 m/s ) 物理脆弱(或:1.75, 95% CI:1.15-2.67 ) 。另外,木头 BNP 否定地被相关到 6 分钟的散步距离(6MWD )(ρ=− 0.37, P <0.01 ) ,当 6MWD 断然被相关到走速度时(ρ= 0.66, P <0.01 ).ConclusionsPlasma BNP 水平与物理脆弱有关,特别在缓慢领域。耐力可以在在血浆 BNP 水平和走的速度之间的协会干涉。Shu Nishiguchi Yuma Nozaki Masayuki Yamaji Kanako Oya Yuki Hikita Tomoki Aoyama Hiroshi Mabuchi 2016Journal of Geriatric Cardiology2016,13,7:5
3Variation in Texture and Lankford Value of 1070 Aluminum Sheet Rolled by Cone-shaped Roll显示文摘A rolling with cone-shaped roll, the diameter of which continuously varies along the axial direction, has been proposed as a new shear rolling for controlling the texture of an aluminum alloy sheet. In this study, variations in the texture and Lankford value of a 1070 aluminum sheet rolled by the cone-shaped roll were investigated. Rolling with the cone-shaped roll was found to impose intense shear strain at the edges of the specimen, specifically near the surface. The shear directions in the left and right portions of the specimen were opposite to each other. The surface and middle layer of the specimen rolled by the cone-shaped roll and the reference specimen were characterized by a shear texture and typical recrystallization texture components, respectively. Notably, the specimen rolled by the cone-shaped roll exhibited smaller texture intensity than the reference specimen, especially at the surface, and the shear texture-components were observed at relatively deeper positions. As a result of Lankford value measurements, the specimen rolled with the cone-shape roll exhibited a smaller planar anisotropy than the reference specimen and an average Lankford value close to unity, which are likely due to the texture modifications introduced during rolling with the cone-shaped roll.Yasumasa Chino Xinsheng Huang Kazutaka Suzuki Mamoru Mabuchi 2013Journal of Materials Science & Technology2013,29,2:2
4Review Processing and mechanical properties of fine-grained magnesium alloys显示文摘K. Kubota M. Mabuchi K. Higashi 1999Journal of Materials Science1999,,10:2
5Role of Mn Depletion inIntra-Granular Ferrite Transformation in Heat Affected Zoneof Welded Joints with Large Heat Input in Structural Steels显示文摘Mabuchi H Uemori R Fujioka M 1996ISIJ Int1996,36,11:2
6Novel equilibrium two phase Mg alloy with the long-period ordered structure显示文摘Yasumasa Chino Mamoru Mabuchi Shigehiro Hagiwara Hajime Iwasaki Atsushi Yamamoto Harushige Tsubakino 2004Scripta Materialia2004,,7:2
7A biosphere-atmosphere interaction model (BAIM) and its primary verifications using grassland data显示文摘Mabuchi K Sato Y Kida H 1997Meteorology and Geophysics(Japan)1997,47,3:2
8Processing of biocompatible porous Ti and Mg显示文摘WEN C E MABUCHI M Yamada Y 2001Scripta Materialia2001,45,10:1
9Microglial activation and matrix protease generation during focal cerebral ischemia显示文摘del Zoppo GJ Milner R Mabuchi T 2007Stroke2007,38,2:1
10Reduction of serum ubiquinol-lO and ubiquinone-10 levels by atorvastatin in hyperchol- esterolemic patients 显示文摘Mabuchi H Higashikata T Kawashiri M 2005Atheroscler Thromb2005,12,2:1
11A functional polymor-phism in the 5′UTR of GDF5is associated with susceptibility toosteoarthritis显示文摘Miyamoto Y Mabuchi A Shi D 2007Nat Genet2007,39,4:1
12Estrogen inhibits paclitaxel-induced apoptosis via the phosphorylation of apoptosis signal-regulating kinase 1 in human ovsrian cancer cell lines 显示文摘Mabuchi S Ohmichi M Kimura A 2004Endocrinology2004,145,:1
13Contribution of microglia/macrophages to expansion of infarction and response of oligodendrocytes after focal cerebral ischemia in rats显示文摘Mabuchi T Kitagawa K Ohtsuki T 2000Stroke2000,31,:1
14Review processing and mechanical properties of fine-grained magnesium alloys显示文摘Kubota K Mabuchi M Higashi K 1999Journal of Materials Science1999,34,:1
15Plasma cardiac natriuretic peptide as biochemical markers of recurrence of atrial fibrillation in patients with mild congestive heart failure 显示文摘Mabuchi N Tsutamoto T Maeda K 2000Jpa Cire J2000,64,10:1
16Processing of biocompatible porous Ti and Mg显示文摘WEN C E MABUCHI M YAMADA Y SHIMOJIMA K CHINO Y ASAHINA T 2001Scripta Materialia2001,45,10:1
17Review processing and mechanical properties of fine grained magnesium alloys 显示文摘Kubota K Mabuchi M 1999Journal of Materials Science1999,34,10:1
18Processing and mechanical properties of autogenous titanium implant materials 显示文摘WEN C E YAMADA ~ SHIMOJIMA K CHINO Y ASAHINA T MABUCHI M 2002Journal of Materials Science: Materials in Medicine2002,13,4:1
19Retinoid X receptor heterodimer variants and cardiovascular risk factors 显示文摘Nohara A Kobayashi J Mabuchi H 2009J Atheroscler Thromb2009,16,:1
20Microstruc- tural evolution and superplasticity of rolled Mg 9AI-IZn显示文摘MOHRI T MABUCHI M NAKAMURA M 2000Ma- terials Science and Engineering2000,290,:1
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