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The effects of elk ( Cervus elaphus ), pronghorn ( Antilocapra americana ), and mule deer ( Odocoileus hemionus ) browsing on shrubs in big sagebrush ( Artemisia tridentata ) communities were monitored over a 31-year period in Yellowstone National Park. Ungulates were restricting Wyoming big sagebrush (spp. wyomingensis ) heights, size, and recruitment on the lower-elevation stratum only, while no such suppression was observed on the high-elevation stratum. Parallel increases in mountain big sagebrush (spp. vaseyana ) densities and cover occurred over the study period on both browsed and unbrowsed sites at the higher-elevation stratum, although big sagebrush, green rabbitbrush ( Chrysothamnus viscidiflorus ), and horsebrush ( Tetradymia canescens ) were slightly taller and crown sizes were slightly larger on unbrowsed than browsed sites. Wyoming big sagebrush utilization (percent leader use) was eight times higher ( ̄ x = 87 ± 7.2% by pronghorns, mule deer, and elk) on the low-elevation winter ranges stratum (the Boundary Line Area [BLA] portion of the winter range), while mostly mountain big sagebrush with leader use averaged only 11 ± 4.1% (nearly all by elk) on the high-elevation range stratum. In addition, annual aboveground biomass production of big sagebrush did not differ between browsed and unbrowsed study sites on the high-elevation stratum of the winter range. Population turnover was higher on browsed plots versus unbrowsed plots. No difference was observed in percent dieback of big sagebrush adult plants between browsed and unbrowsed plots at the higher stratum. Browsing did not influence the number of leaves or seedstalks per plant ( P > .05), but leaves averaged 45% longer and seedstalks 42% longer on browsed big sagebrush. Ungulate browsing, however, apparently suppressed production, germination, and survival of Wyoming big sagebrush on the low-elevation stratum. Numbers of Wyoming big sagebrush declined 43% and cover declined 29%, 1957-1990, on browsed sites on the BLA. Annual biomass production on browsed sites at the low-elevation stratum was only 6-35% that of unbrowsed sites, and big sagebrush recruitment was less on browsed sites. Percent leader use of big sagebrush did not differ between the period of ungulate reductions, 1962-1969, and the 1980s on the lower stratum ( ̄ x = 87% leader use), but utilization was less on higher portions of the winter range during the period of elk reductions ( ̄ x = 2%) than during the 1980s following cessation of elk controls ( ̄ x = 11%).  相似文献   
63.
应用雅可比椭圆函数及均值方法计算求解受到简谐外激扰的强非线性杜芬振荡系统+aυ+γυ3=ε(-βυ+FcosΩT)的稳态周期响应。首先利用雅可比椭圆函数给出无扰动系统的周期解。然后,采用对无扰动系统周期解进行扰动的方法,求扰动系统的周期解。在这个过程中,采用均值方法对问题进行了简化。并通过对所得解的讨论与分析,最终得到原问题的稳态周期响应。实例验证的结果表明,我们所介绍的方法是成功的。并可应用于求解其它强非线性系统的周期响应。  相似文献   
64.
Résumé Les cinétiques de l'hydrolyse du sulfate de nitrocatéchol par la sulfatase A sont très anormaux parce qu'il n'y a aucune relation linéaire entre la vitesse de la réaction et la concentration de l'enzyme. La réaction tient trois phases: dans la première, la vitesse décroît rapidement, dans la deuxième, elle diminue de plus en plus tandis qu'elle s'accroît dans la troisième. La réaction est très sensible à la composition du mélange réactionel, et l'addition des produits de la réaction, particulièrement le sulfate inorganique, augmente la vitesse de l'hydrolyse. En utilisant comme substrat lep-nitrophénylsulfate, ces irrégularités ne sont pas constatées.Une interprétation de ces résultats est présentée!  相似文献   
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Measuring intense rotation and dissipation in turbulent flows   总被引:1,自引:0,他引:1  
Turbulent flows are highly intermittent--for example, they exhibit intense bursts of vorticity and strain. Kolmogorov theory describes such behaviour in the form of energy cascades from large to small spatial and temporal scales, where energy is dissipated as heat. But the causes of high intermittency in turbulence, which show non-gaussian statistics, are not well understood. Such intermittency can be important, for example, for enhancing the mixing of chemicals, by producing sharp drops in local pressure that can induce cavitation (damaging mechanical components and biological organisms), and by causing intense vortices in atmospheric flows. Here we present observations of the three components of velocity and all nine velocity gradients within a small volume, which allow us to determine simultaneously the dissipation (a measure of strain) and enstrophy (a measure of rotational energy) of a turbulent flow. Combining the statistics of all measurements and the evolution of individual bursts, we find that a typical sequence for intense events begins with rapid strain growth, followed by rising vorticity and a final sudden decline in stretching. We suggest two mechanisms which can produce these characteristics, depending whether they are due to the advection of coherent structures through our observed volume or caused locally.  相似文献   
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In cells, actin polymerization at the plasma membrane is induced by the recruitment of proteins such as the Arp2/3 complex, and the zyxin/VASP complex. The physical mechanism of force generation by actin polymerization has been described theoretically using various approaches, but lacks support from experimental data. By the use of reconstituted motility medium, we find that the Wiskott Aldrich syndrome protein (WASP) subdomain, known as VCA, is sufficient to induce actin polymerization and movement when grafted on microspheres. Changes in the surface density of VCA protein or in the microsphere diameter markedly affect the velocity regime, shifting from a continuous to a jerky movement resembling that of the mutated 'hopping' Listeria. These results highlight how simple physical parameters such as surface geometry and protein density directly affect spatially controlled actin polymerization, and play a fundamental role in actin-dependent movement.  相似文献   
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Decimal Lakh     
Roy S 《Nature》1970,228(5271):589
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