22 resultados para Hand, Sherman P.

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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囊瓣芹属Pternopetalum Franchet是伞形科Apiaceae/Umbelliferae芹亚科Apioideae芹族Apieae重要成员。全属包括约32个分类群(包括变种),分布于南朝鲜、日本、中国的西南部和邻近的喜马拉雅地区,中国西南部的横断山区是其多样性中心。典型的东亚特有格局和对东亚亚热带森林环境的偏爱是其东亚区系故有份子的特征。 基于19个标本馆标本材料、野外调查以及相应的实验证据,本博士论文从三个研究主题对囊瓣芹属展开了全面而系统的研究。一是通过标本观察和野外调查,利用标本管理系统BRAHMS和表型分析软件包DELTA系统,完成了囊瓣芹属的世界性分类修订;二是基于上述的分类方案,选择伞形科其它属的44个种作为参考性类群(Reference taxa),利用Winclada, NONA和MESQUITE软件包开展了分支系统学研究;三是基于坐标化的点分布数据,利用DIVA-GIS系统的生态位模型,进行潜在分布预测和生态地理分布特征的分析。研究的主要初步结论如下: 一、分类修订 根据对19个标本馆标本材料(包括85个模式采集)的考证,以及对云南、四川、贵州等地野外居群的观察,结合DELTA系统的表型分析,本研究确认囊瓣芹属包含14个种,提出了14个新异名,属下分为东亚囊瓣芹组Sect. I. Pteridophyllae H. Wolff和囊瓣芹组Sect. II. Pternopetalum H. Wolff两个组的分类方案。前者包括东亚囊瓣芹P. tanakae (Sav. & Franchet) Hand.-Mazz.、高山囊瓣芹P. subalpinum Hand.-Mazz.、洱源囊瓣芹P. molle (Franchet) Hand.-Mazz.等5个种;后者包括五匹青P. vulgare (Dunn) Hand.-Mazz.、囊瓣芹P. davidii Franchet和澜沧囊瓣芹P. delavayi (Franchet) Hand.-Mazz.等9个种。萼齿、花柱基、和花柱的形态是区别两个组比较好的形态学特征。叶的着生位置、最终末回裂片的形状(是否异形)、分裂回数以及伞形花序着生的位置和果棱表面的附属构造是种间识别有用的检索特征。 二、系统发育分析 根据如上的14个种的分类方案,另外选取了伞形科小芹属Sinocarum H. Wolff、丝瓣芹属Acronema Falc. ex Edgew.和鸭儿芹属Cryptotaenia L.等10个属共44种作为参考类群,基于63个广义形态学性状和58个种的形态学矩阵,利用最大简约法对囊瓣芹属进行了分支分析。结果表明,囊瓣芹属的14个种与日本特有单型的仙洞草Chamaele decumbens (Thunb.)Makino.形成一个单独分支,处于分支图的基部位置。表明囊瓣芹属与鸭儿芹属有较近的亲缘关系。长枝吸引可能是造成Chamaele Miq.与东亚囊瓣芹分支的非正常聚合的原因。囊瓣芹属可能是单系内群,但它与Chamaele Miq.属间关系需要进一步研究。属下形成以五匹青P. vulgare和东亚囊瓣芹P. tanakae为代表的两个主干演化线。分支进化(Cladogenesis)在两个主干演化线形成了形态和地理上对称分布的“种对”。根据形态特征的变异和地理分布,这些“种对”分为三种类型:1、形态上多变而地理上广布的类型,以东亚囊瓣芹P. tanakae和五匹青P. vulgare为代表;2、形态上稳定地理上狭域特有的类型,以薄叶囊瓣芹P. leptophyllum (Dunn)Hand.-Mazz. 和川鄂囊瓣芹P. rosthornii (Diels) Hand.-Mazz.为代表;3、形态上趋同而多变,地理分布上几乎完全重叠的类型,以洱源囊瓣芹P. molle和澜沧囊瓣芹P. delavayi为代表。 性状状态的分析显示,属下形态特征的趋异具有较强的同朔性。不等长的伞辐和花梗,以及囊状的花瓣基部三个形态学特征可以标识包括仙洞草在内的囊瓣芹分支。祖征状态的重建表明,东亚囊瓣芹分支相对保留了更多的祖征,是属下相对原始的类型;五匹青分支是后期生境需求的特化,适应潮湿和荫蔽环境的衍生类型。 三、生态地理分布 基于1128个坐标化的点分布数据和生态位模型,利用地理信息系统软件包DIVA-GIS对囊瓣芹属的物种多样性、现代地理分布、潜在分布进行了分析。结果表明,二郎山-峨眉山地区以及重庆金佛山及其临近地区是囊瓣芹属的两个主要的多样性中心。分布区内局部尺度上的异常性多样性(Diversity abnormalies)可能有两个来源:一是高的异质性生境条件下物种形成速率的差异;二是中国西南山地的“冰原岛峰效应”(Nunataks),比如峨眉山和金佛山,对属的早期演化线成员所起到的“避难所”(Refuge)的作用。 所预测的潜在分布范围与观察到的地理分布范围是一致的,说明对特化的气候忍耐性是限制囊瓣芹属物种地理分布的主要因素。温度和降水的季节性变化对囊瓣芹属代表中的地理分布限制作用比较大。亚热带-高山针阔常绿林是属下物种比较适宜的生境。属的地理分布可能形成于中新世以后,生态位的保守性是解释囊瓣芹属东亚本土就地分化和多样化的原因。属的分布范围的形成可能经历了一个早期南退西进的过程,后期分布范围变化可能主要是东西方向上的迁移和扩展。喜马拉雅—横断山—峨眉山/金佛山/神农架—日本、南朝鲜一线是囊瓣芹属多样化过程中分布范围东西延伸的重要通道。喜马拉雅—中国西南—日本朝鲜亚热带森林植被的完整性和连续性是囊瓣芹属演化和分布区形成的基本条件。

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InGaN p-i-n homojunction structures were grown by metal-organic chemical vapor deposition, and solar cells with different p-contact schemes were fabricated. X-ray diffraction measurements demonstrated that the epitaxial layers have a high crystalline quality. Solar cells with semitransparent p-contact exhibited a fill factor (FF) of 69.4%, an open-circuit voltage (V-oc) of 2.24 V and an external quantum efficiency (EQE) of 41.0%. On the other hand, devices with grid p-contact showed the corresponding values of 57.6%, 2.36 V, 47.9% and a higher power density. These results indicate that significant photo-responses can be achieved in InGaN p-i-n solar cells.

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We report fundamental changes of the radiative recombination in a wide range of n-type and p-type GaAs after diffusion with the group-I element Li. These optical properties are found to be a bulk property and closely related to the electrical conductivity of the samples. In the Li-doped samples the radiative recombination is characterized by emissions with excitation-dependent peak positions which shift to lower energies with increasing degree of compensation and concentration of Li. These properties are shown to be in qualitative agreement with fluctuations of the electrostatic potential in strongly compensated systems. For Li-diffusion temperatures above 700-800-degrees-C semi-insulating conditions with electrical resistivity exceeding 10(7) OMEGA cm are obtained for all conducting starting materials. In this heavy Li-doping regime, the simple model of fluctuating potentials is shown to be inadequate for explaining the. experimental observations unless the number of charged impurities is reduced through complexing with Li. For samples doped with low concentrations of Li, on the other hand, the photoluminescence properties are found to be characteristic of impurity-related emissions.

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China locates between the circum-Pacific and the Mediterranean-Himalayan seismic belt. The seismic activities in our country are very frequent and so are the collapses and slides of slope triggered by earthquakes. Many collapses and slides of slope take place mainly in the west of China with many earthquakes and mountains, especially in Sichuan and Yunnan Provinces. When a strong earthquake happening, the damage especially in mountains area caused by geological hazards it triggered such as rock collapses, landslides and debris flows is heavier than that it caused directly. A conclusion which the number of lives lost caused by geological hazards triggered by a strong earthquake in mountains area often accounts for a half even more of the total one induced by the strong earthquake can be made by consulting the statistical loss of several representative earthquakes. As a result, geological hazards such as collapses and slides of slope triggered by strong earthquakes attract wide attention for their great costs. Based on field geological investigation, engineering geological exploration and material data analysis, chief conclusions have been drawn after systematic research on formation mechanism, key inducing factors, dynamic characteristics of geological hazards such as collapses and slides of slope triggered by strong earthquakes by means of engineering geomechanics comprehensive analysis, finite difference numerical simulation test, in-lab dynamic triaxial shear test of rock, discrete element numerical simulation. Based on research on a great number of collapses and landslides triggered by Wenchuan and Xiaonanhai Earthquake, two-set methods, i.e. the method for original topography recovering based on factors such as lithology and elevation comparing and the method for reconstructing collapsing and sliding process of slope based on characteristics of seism tectonic zone, structural fissure, diameter spatial distribution of slope debris mass, propagation direction and mechanical property of seismic wave, have been gotten. What is more, types, formation mechanism and dynamic characteristics of collapses and slides of slope induced by strong earthquakes are discussed comprehensively. Firstly, collapsed and slided accumulative mass is in a state of heavily even more broken. Secondly, dynamic process of slope collapsing and sliding consists of almost four stages, i.e. broken, thrown, crushed and river blocked. Thirdly, classified according to failure forms, there are usually four types which are made up of collapsing, land sliding, land sliding-debris flowing and vibrating liquefaction. Finally, as for key inducing factors in slope collapsing and sliding, they often include characteristics of seism tectonic belts, structure and construction of rock mass, terrain and physiognomy, weathering degree of rock mass and mechanical functions of seismic waves. Based on microscopic study on initial fracturing of slope caused by seismic effect, combined with two change trends which include ratio of vertical vs. horizontal peak ground acceleration corresponding to epicentral distance and enlarging effect of peak ground acceleration along slope, key inducing factor of initial slope fracturing in various area with different epicentral distance is obtained. In near-field area, i.e. epicentral distance being less than 30 km, tensile strength of rock mass is a key intrinsic factor inducing initial fracturing of slope undergoing seismic effect whereas shear strength of rock mass is the one when epicentral distance is more than 30 km. In the latter circumstance, research by means of finite difference numerical simulation test and in-lab dynamic triaxial shear test of rock shows that initial fracture begins always in the place of slope shoulder. The fact that fracture strain and shear strength which are proportional to buried depth of rock mass in the place of slope shoulder are less than other place and peak ground acceleration is enlarged in the place causes prior failure at slope shoulder. Key extrinsic factors inducing dynamic fracture of slope at different distances to epicenter have been obtained through discrete element numerical simulation on the total process of collapsing and sliding of slope triggered by Wenchuan Earthquake. Research shows that combined action of P and S seismic waves is the key factor inducing collapsing and sliding of slope at a distance less than 64 km to initial epicenter along earthquake-triggering structure. What is more, vertical tensile action of P seismic wave plays a leading role near epicenter, whereas vertical shear action of S seismic wave plays a leading role gradually with epicentral distance increasing in this range. On the other hand, single action of P seismic wave becomes the key factor inducing collapsing and sliding of slope at a distance between 64 km and 216 km to initial epicenter. Horizontal tensile action of P seismic wave becomes the key factor gradually from combined action between vertical and horizontal tensile action of P seismic wave with epicentral distance increasing in this distance range. In addition, initial failure triggered by strong earthquakes begins almost in the place of slope shoulder. However, initial failure beginning from toe of slope relates probably with gradient and rock occurrence. Finally, starting time of initial failure in slope increases usually with epicentral distance. It is perhaps that the starting time increasing is a result of attenuating of seismic wave from epicenter along earthquake-triggering structure. It is of great theoretical and practical significance for us to construct towns and infrastructure in fragile geological environment along seism tectonic belts and conduct risk management on earthquake-triggered geological hazards by referring to above conclusions.

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The variation of surface compositions on amorphous Ni80.4W1.5P18.1 alloy by O-2 oxidation and H-2 reduction treatments have been studied by XPS, UPS and ISS. It shows that addition of tungsten in the amorphous Ni-P alloy leads to dramatic changes of the relating component distributions in the surface layers before and after these treatments. Oxidation of a Ni80.4W1.5P18.1 amorphous alloy in 1 bar of oxygen at 513 K caused a significant segregation of nickel in different oxide states at the surface. The subsequent reduction of the oxidized surface with I bar hydrogen at 553 K resulted in only a small portion of Ni and P being reduced into elemental states, while most of them was found to combine to form a kind of nickel phosphate compound. On the other hand, under the same conditions, the oxidation and reduction of a Ni80P20 alloy gave rise to metallic Ni and elemental P as the predominate species on the alloy surface. The addition of W in the amorphous alloy might act as nuclei for a favorable formation of the phosphate structure which was proposed to be an active species for hydrogen-relating catalytic reactions. (C) 1999 Elsevier Science B.V. All rights reserved.

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A two-dimensional axisymmetric numerical model is presented to study the influence of local magnetic fields on P-doped Si floating zone melting crystal growth in microgravity. The model is developed based on the finite difference method in a boundary-fitted curvilinear coordinate system. Extensive numerical simulations are carried out, and parameters studied include the curved growth interface shape and the magnetic field configurations. Computed results show that the local magnetic field is more effective in reducing the impurity concentration nonuniformity at the growth interface in comparison with the longitudinal magnetic field. Moreover, the curved growth interface causes more serious impurity concentration nonuniformity at the growth interface than the case with a planar growth interface.

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Leukocytes roll along the endothelium of postcapillary venules in response to inflammatory and thrombotic processes. The rolling under hydrodynamic shear forces is a first step in directing leukocytes out of the blood stream into sites of inflammation and is mediated by the selectins, a family of extended, modular, and calcium-dependent lectin receptors. The interactions between P-, E-or L-selectins and their count.

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An analytical solution for the three-dimensional scattering and diffraction of plane P-waves by a hemispherical alluvial valley with saturated soil deposits is developed by employing Fourier-Bessel series expansion technique. Unlike previous studies, in which the saturated soil deposits were simulated with the single-phase elastic theory, in this paper, they are simulated with Biot's dynamic theory for saturated porous media, and the half space is assumed as a single-phase elastic medium. The effects of the dimensionless frequency, the incidence angle of P-wave and the porosity of soil deposits on the surface displacement magnifications of the hemispherical alluvial valley are investigated. Numerical results show that the existence of a saturated hemispherical alluvial valley has much influence on the surface displacement magnifications. It is more reasonable to simulate soil deposits with Biot's dynamic theory when evaluating the displacement responses of a hemispherical alluvial valley with an incidence of P-waves.

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选择素(selectin)与配体相互作用在诸如炎症反应、肿瘤转移等生物学过程中具有重要作用;作用力影响受体-配体键解离.本文发展了基于光阱技术的新实验方法,用于考察P-选择素(P-selectin)与P-选择素糖蛋白配体-1(P-selectin Glycoprotein Ligand 1, PSGL-1)相互作用的解离过程.采用黏滞力法对光阱刚度系数进行标定,并通过分子在玻璃小球表面的功能化表征,研究力作用下P-selectin/PSGL-1键的解离,得到了在较低加载率(<25 pN/s)下键解离的断裂力分布,发现键的最可几断裂力随加载率而增加.实验结果在较低加载率下补充和验证了已有的结论.

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Kinetics and its regulation by extrinsic physical factors govern selectin-ligand interactions that mediate tethering and rolling of circulating cells on the vessel wall under hemodynamic forces. While the force regulation of off-rate for dissociation of selectin-ligand bonds has been extensively studied, much less is known about how transport impacts the on-rate for association of these bonds and their stability. We used atomic force microscopy (AFM) to quantify how the contact duration, loading rate, and approach velocity affected kinetic rates and strength of bonds of P-selectin interacting with P-selectin glycoprotein ligand I (PSGL-1). We found a saturable relationship between the contact time and the rupture force, a biphasic relationship between the adhesion probability and the retraction velocity, a piece-wise linear relationship between the rupture force and the logarithm of the loading rate, and a threshold relationship between the approach velocity and the rupture force. These results provide new insights into how physical factors regulate receptor-ligand interactions.

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以节理岩体等效刚度的概念为基础,讨论了离散元刚性块体模型中节理刚度的选取问题。采用面-面接触模型模拟了纵波在一维岩体中的传播,给出了纵波波形;研究了阻尼比、软弱夹层以及节理间是否可拉对波传播规律的影响。

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pan style="color: rgb(51, 51, 51); font-family: arial, helvetica, sans-serif; font-size: 13px; line-height: 22px; background-color: rgb(248, 248, 248);">Successive thicker P(3MeTh) layers are analysed by ex situ conventional and imaging ellipsometry. Thin films display a smooth surface, are compact and homogeneous while for a growth charge above 20 mC cm(-2) the polymer structure modifies to a still uniform but less dense layer. A two-layer model is used and a mathematical procedure is developed to obtain, simultaneously, from the experimental ellipsometric parameters, Delta and Psi, the thickness and the complex refractive index of P(3MeTh) films grown up to 80 mC cm(-2). Thicker polymer layers are disordered and present a high degree of surface roughness.&nbsp;pan>

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We present in this paper the application of B-P constitutive equations in finite element analysis of high velocity impact. The impact process carries out in so quick time that the heat-conducting can be neglected and meanwhile, the functions of temperature in equations need to be replaced by functions of plastic work. The material constants in the revised equations can be determined by comparison of the one-dimensional calculations with the experiments of Hopkinson bar. It can be seen from the comparison of the calculation with the experiment of a tungsten alloy projectile impacting a three-layer plate that the B-P constitutive equations in that the functions of temperature were replaced by the functions of plastic work can be used to analysis of high velocity impact.

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P-selectin, a 70-nm-long cellular adhesive molecule, possesses elastic and extensible properties when neutrophils roll over the activated endotheliam of blood vessel in inflammatory reaction. Transient formation and dissociation of P-selectin/ligand bond on applied force of blood flow induces the extension of P-selectin and relevant ligands. Steered molecular dynamics simulations were performed to stretch a single P-selectin construct consisting of a lectin (Lec) domain and an epithelial growth factor (EGF)-like domain, where P-selectin construct was forced to extend in water with pulling velocities of 0.005-0.05 nm/ps and with constant forces of 1000-2500 pN respectively. Resulting force-extension profiles exhibited a dual-peak pattern on various velocities, while both plateaus and shoulders appeared in the extension-time profiles on various forces. The force or extension profiles along stretching pathways were correlated to the conformational changes, suggesting that the structural collapses of P-selectin Lec/EGF domains were mainly attributed to the burst of hydrogen bonds within the major beta sheet of EGF domain and the disruptions of two hydrophobic cores of Lee domain. This work furthers the understanding of forced dissociation of P-selectin/ligand bond.

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Forced dissociation of selectin-ligand bonds is crucial to such biological processes as leukocyte recruitment, thrombosis formation, and tumor metastasis. Although the bond rupture has been well known at high loading rate r(f) (>= 10(2) pN/s), defined as the product of spring constant k and retract velocity v, how the low r(f) (< 10(2) pN/s) or the low k regulates the bond dissociation remains unclear. Here an optical trap assay was used to quantify the bond rupture at r(f) <= 20 pN/s with low k (similar to 10(-3)-10(-2) pN/nm) when P-selectin and P-selectin glycoprotein ligand 1 (PSGL-1) were respectively coupled onto two glass microbeads. Our data indicated that the bond rupture force f retained the similar values when r(f) increased up to 20 pN/s. It was also found that f varied with different combinations of k and v even at the same r(f). The most probable force, f