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1.
In order to be able to simulate long time and large space scale properties of polymer melts one has to resort to coarse grained models, for example by subdividing all polymers into parts and restricting attention to the center of mass positions and velocities of these parts. The dynamics of these variables is governed by Langevin equations in which the free energy obtained by integrating the remaining variables provides the potential of the conservative forces. In general this leads to many particle interactions on the coarse-grained level. Methods suggested in the literature to represent these many particle interactions by effective two body interactions are reviewed and a new method, based on the Gibbs-Bogoliubov inequality, is proposed. The reason why none of these methods is able to reproduce the pressure of the underlying atomistic model is discussed. 相似文献
2.
目的:促进韦格纳肉芽肿的早期诊断和治疗,提高患者的生存率.方法:回顾性分析我院收治的1例韦格纳肉芽肿患者的发病诊治过程的临床资料并结合文献进行复习.结果:入院后行胸部CT、抗中性粒细胞胞浆抗体(ANCA)等检查,明确诊断后给予糖皮质激素、细胞毒类药物等治疗后短期缓解,5个月后死亡.结论:韦格纳肉芽肿的临床表现多种多样,诊断困难,实验室检查无特异性,临床上对于多系统受累的疾病应警惕此病,应结合患者临床表现及辅助检查做出早期诊断,及早治疗,从而提高患者的生存率. 相似文献
3.
Chemotaxonomic Screening of Seed Oils from the Family Saxifragaceae and Comparison with Data on Seed Oils from Grossulariaceae Obtained from Literature
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Seeds of 25 members of the family Saxifragaceae, 1 × Astilbe, 1 × Darmera, 1 × Leptarrhena, 1 × Tellima, 3 × Mitella, and 18 × Saxifraga were investigated regarding oil content, as well as composition and content of fatty acids and vitamin E active compounds. The results were compared with results obtained from literature for members of the genus Ribes belonging to the closely related family Grossulariaceae to find chemometric differences between the different genera and between members of the family Saxifragaceae and Grossulariaceae, respectively. Members of the family Saxifragaceae are dominated by high amounts of linoleic and α‐linolenic acid which together account for about 80% of the total fatty acids. While α‐linolenic acid is characteristic for members of the genus Saxifraga, in other genera, linoleic acid is predominant. In comparison to members of the family Saxifragaceae members of the family Grossulariaceae also contain γ‐linolenic acid and stearidonic acid which allow a significant differentiation between both families. By principle component analysis, members of both families were divided into three distinct groups, i) species with a high content of α‐linolenic acid (genus Saxifraga), ii) species with high amounts of γ‐linolenic acid and stearidonic acid (genus Ribes), and iii) species with higher amounts of linoleic acid (other members of the family Saxifragaceae). The composition of the vitamin E active compounds was characterized by a high content of γ‐tocopherol in most members of the family Saxifragaceae, but no chemotaxonomic relevance. 相似文献
4.
D. S. Butterworth 《Population Ecology》2000,42(1):29-35
The current criteria for listing species on CITES Appendices are summarized briefly. A précis is given of problems with these
criteria in a marine species context, as identified by an FAO ad hoc Expert Group meeting in November 1998. Three aspects
of the criteria that are of concern to the author are discussed briefly. These are the definition of a "decline," specifications
for taking account of uncertainty, and the desirability of using existing stock-recruitment data for marine fish species to
estimate the spawning biomass level at which critical depensation might occur. This last would provide guidance in specifying
resource levels at which there is a threat of extinction when reformulating the CITES criteria.
Received: May 6, 1999 / Accepted: December 11, 1999 相似文献
5.
6.
The time course of enzyme concentrations in metabolic pathways can be predicted on the basis of the optimality criterion of minimizing the time period in which an essential product is generated. This criterion is in line with the widely accepted view that high fitness requires high pathway flux. Here, based on Pontryagin's Maximum Principle, a method is developed to solve the corresponding constrained optimal control problem in an almost exclusively analytical way and, thus, to calculate optimal enzyme profiles, when linear, irreversible rate laws are assumed. Three different problem formulations are considered and the corresponding optimization results are derived. Besides the minimization of transition time, we consider an operation time in which 90% of the substrate has been converted into product. In that case, only the enzyme at the lower end of the pathway rather than all enzymes are active in the last phase. In all cases, biphasic or multiphasic time courses are obtained. The biological meaning of the results in terms of a consecutive just-in-time expression of metabolic genes is discussed. For the special case of two-enzyme systems, the role of the Golden section in the solution is outlined. 相似文献
7.
Jeschke JM 《Oecologia》2007,152(2):357-364
Are animals usually hungry and busily looking for food, or do they often meet their energetic and other needs in the 24 h of a day? Focusing on carnivores, I provide evidence for the latter scenario. I develop a model that predicts the minimum food abundance at which a carnivore reaches satiation and is released from time constraints. Literature data from five invertebrate and vertebrate species suggest that food abundances experienced in the field often exceed this threshold. A comparison of energetic demands to kill rates also suggests that carnivores often reach satiation: for the 16 bird and mammal species analyzed, this frequency is 88% (average across species). Because pressure of time would likely lead to trade-offs in time allocation and thus to a nonsatiating food consumption, these results suggest that carnivores are often released from time constraints. 相似文献
8.
Marine conservation programs in Oceania are increasingly turning to precautionary and adaptive management, particularly approaches
which emphasize local participation and customary management. Although the application of community-based natural resource
management is widespread in the region, the full integration of local knowledge and practices into the design, implementation,
and monitoring of community-based conservation programs has been limited. There is also little empirical data to show whether
or not community-based conservation projects are meeting their stated objectives. This paper summarizes an integrated method
for selecting Marine Protected Area (MPA) sites and presents empirical evidence that illustrates how an MPA that was largely
conceived using indigenous ecological knowledge and existing sea tenure governance (i.e., customary management practices),
as part of a regional precautionary and adaptive community-based management plan, is showing signs of biological and social
success. More generally, the paper shows how hybrid natural and social research approaches in tandem with customary management
for designing MPAs can protect coral reefs in Oceania. 相似文献
9.
Steel D 《Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences》2011,42(3):356-364
This essay examines the relationship between the precautionary principle and uncertainty factors used by toxicologists to estimate acceptable exposure levels for toxic chemicals from animal experiments. It shows that the adoption of uncertainty factors in the United States in the 1950s can be understood by reference to the precautionary principle, but not by cost-benefit analysis because of a lack of relevant quantitative data at that time. In addition, it argues that uncertainty factors continue to be relevant to efforts to implement the precautionary principle and that the precautionary principle should not be restricted to cases involving unquantifiable hazards. 相似文献
10.
Regulatory relations between biological molecules constitute complex network systems and realize diverse biological functions through the dynamics of molecular activities. However, we currently have very little understanding of the relationship between the structure of a regulatory network and its dynamical properties. In this paper we introduce a new method, named “linkage logic” to analyze the dynamics of network systems. By this method, we can restrict possible steady states of a given complex network system from the knowledge of regulatory linkages alone. The regulatory linkage simply specifies the list of variables that affect the dynamics of each variable. We formalize two aspects of the linkage logic: the “Principle of Compatibility” determines the upper limit of the diversity of possible steady states of the dynamics realized by a given network; the “Principle of Dependency” determines the possible combinations of states of the system. By combining these two aspects, (i) for a given network, we can identify a cluster of nodes that gives an alternative representation of the steady states of the whole system, (ii) we can reduce a given complex network into a simpler one without loss of the ability to generate the diversity of steady states, (iii) we can examine the consistency between the structure of network and observed set of steady states, and (iv) sometimes we can predict unknown states or unknown regulations from an observed set of steady states alone. We illustrate the method by several applications to an experimentally determined regulatory network for biological functions. 相似文献