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排序方式: 共有5022条查询结果,搜索用时 31 毫秒
81.
PURPOSE: The Strong Heart Study is a study of cardiovascular disease and its risk factors among American Indian men and women aged 45-74 yr representative of 13 communities from Arizona (AZ), Oklahoma (OK), and North/South Dakota (N/SD). This investigation sought to characterize the amount and type of physical activity and to determine the association between activity and lipids in this population. METHODS: Total physical activity (occupational plus leisure) was assessed with a validated questionnaire. RESULTS: Men and women from OK (21 +/- 19 and 16 +/- 15 h.wk-1; respectively) and N/SD (23 +/- 21 and 17 +/- 17 h.wk-1; respectively) had activity levels that were similar if not lower than the U.S. population with the AZ communities (17 +/- 21 and 10 +/- 14 h.wk-1; respectively) being substantially lower than the other two communities. Total cholesterol (TC), high density lipoprotein cholesterol (HDL-c), and low density lipoprotein cholesterol (LDL-c) levels were lower than the U.S. population. CONCLUSIONS: For most of the population (diabetic men and nondiabetic men and women), activity was significantly associated (P < 0.05) with apolipoprotein (apo) AI after controlling for covariates. With levels of activity as low if not lower than the general U.S. population coupled with high prevalence of obesity and diabetes, efforts to increase physical activity in American Indians are warranted. Hopefully these increases in activity will result in favorable lipid changes as well as decreasing the risk of diabetes which is epidemic in these populations. 相似文献
82.
The small GTP-binding proteins Rac, Rho, and Cdc42 were shown to mediate a variety of signaling pathways including cytoskeletal rearrangements, cell-cycle progression, and transformation. Key to the proper function of these GTP-binding proteins is an efficient shut-off mechanism that ensures the decay of the signal. Regulatory proteins termed GAPs (GTPase-activating proteins) enhance the intrinsic GTP hydrolysis of the GTP-binding proteins, thereby ensuring signal termination. We have used site-specific mutagenesis to elucidate the limit domain for GAP activity in Cdc42-GAP, and show that in addition to the known GAP-homology domain (three conserved boxes), a C-terminal region outside that domain is also essential for GAP activity. In addition, we have replaced the conserved arginine (Arg305), which was suggested by structural studies to be a key catalytic residue, with an alanine and found that the R305A Cdc42-GAP mutant has a greatly diminished catalytic capacity but is still able to bind Cdc42 with high affinity. Thus, a key catalytic role for this residue is confirmed. However, we also present evidence for the involvement of an additional residue(s), since the R305A Cdc42-GAP mutant still exhibits measurable activity. Some of this residual activity might result from a neighboring arginine, since a double mutant R305A/R306A shows a further decrease in catalytic activity. 相似文献
83.
GA Livesay H Fujie S Kashiwaguchi DA Morrow FH Fu SL Woo 《Canadian Metallurgical Quarterly》1995,23(4):467-474
The in situ forces and their distribution within the human anterior cruciate ligament (ACL) can clarify this ligament's role in the knee and help to resolve controversies regarding surgical treatment of ACL deficiency. We used a universal force-moment sensor (UFS) to determine the magnitude, direction, and point of application of the in situ forces in the ACL in intact human cadaveric knees. Unlike previous studies, this approach does not require surgical intervention, the attachment of mechanical devices to or near the ACL, or a priori assumptions about the direction of in situ force. Anterior tibial loads were applied to intact knees, which were limited to 1 degree of freedom at 30 degrees flexion. The in situ forces developed in the ACL were lower than the applied force for loads under 80 N, but larger for applied loads of more than 80 N. The direction of the force vector corresponded to that of the anteromedial (AM) portion of the ACL insertion on the tibial plateau. The point of force application was located in the posterior section of the anteromedial portion of the tibial insertion site. The anterior and posterior aspects of the anteromedial portion of the ACL supported 25% and 70% of the in situ force, respectively, with the remainder carried by the posterolateral portion. We believe that the data obtained with this new UFS methodology improves our understanding of the role of the ACL in knee function, and that this methodology can be easily extended to study the function of other ligaments. 相似文献
84.
85.
Shen TJ; Ho NT; Zou M; Sun DP; Cottam PF; Simplaceanu V; Tam MF; Bell DA Jr; Ho C 《Protein engineering, design & selection : PEDS》1997,10(9):1085-1097
A hemoglobin expression system in Escherichia coli is described. In order
to produce authentic human hemoglobin, we need to co-express both
methionine aminopeptidase and globin genes under the control of a strong
promoter. We have constructed three plasmids, pHE2, pHE4 and pHE7, for the
expression of human normal adult hemoglobin and a plasmid, pHE9, for the
expression of human fetal hemoglobin, in high yields. The globin genes can
be derived from either synthetic genes or human globin cDNAs. The extra
amino-terminal methionine residues of the expressed globins can be removed
by the co-expressed methionine aminopeptidase. The heme is inserted
correctly into the expressed alpha- globin from our expression plasmids. A
fraction (approximately 25%) of the heme is not inserted correctly into the
expressed beta- or gamma- globin. However, the incorrectly inserted hemes
can be converted into the correct conformation by carrying out a simple
oxidation-reduction process on the purified hemoglobin molecule. We have
investigated the functional properties of the expressed hemoglobins by
measuring their oxygen-binding properties and their structural features by
obtaining their 1H-NMR spectra. Our results show that authentic human
normal adult and fetal hemoglobins can be produced from our expression
plasmids in E. coli and in high yields. Our expression system allows us to
design and to produce any recombinant hemoglobins needed for our research
on the structure-function relationship in hemoglobin.
相似文献
86.
玻纤增强聚苯硫醚复合材料的增韧研究 总被引:1,自引:0,他引:1
针对玻纤增强聚苯硫醚材料韧性差的问题,对聚苯硫醚傲璃纤维复合体系的增韧进行了研究,考察了玻纤、改性聚合物、有机超细粒子对复合材料力学性能的影响。采用基体增韧(预增韧)与有机超细粒子增韧技术,在保持复合材料拉伸强度和模量的同时,较大地提高了冲击强度,获得了综合力学性能优异的纤维增强聚苯硫醚材料。 相似文献
87.
一种新型混沌扩频卫星隐蔽通信算法 总被引:1,自引:0,他引:1
针对Logistic及改进型混沌映射只存在唯一满映射点的缺陷,设计了一种新型混沌映射函数,拓宽了满映射参数的取值范围,进而提高了混沌序列遍历性,并基于相干混沌移位键控技术,构建了新型混沌扩频卫星隐蔽通信系统。分别对新型混沌序列的随机性、相关性和平衡性,以及隐蔽通信系统的误码率进行了仿真分析,结果表明:新型混沌映射比已有映射遍历性更好,平衡性更高。原业务信号与扩频调制信号的功率比值大于20dB时,原业务接收机接收误码率基本不受影响。扩频因子为80、信道信噪比大于6dB时,隐蔽接收机误码率小于10-3,能满足一定的隐蔽通信要求。 相似文献
88.
分析了Ka频段移动信道特性,建立了Ka频段自适应Turbo编码-OFDM传输体制(ATC-OFDM),并提出了3种自适应方案和相应算法。通过新传输体制中的自适应功率、自适应调制和自适应功率调制同固定分配功率和调制方案的TC-OFDM传输体制相比,在不同的天气环境下,其系统误码性能有着明显的改善。系统的吞吐量在信噪比大于8dB时,相比于BPSK调制,可提高2bps/Hz,验证了该传输体制的可行性和有效性。 相似文献
89.
加氢处理油中含有一定量的环烷基单环芳烃,研究四氢萘催化裂化有利于加强对更多环数环烷基单环芳烃催化裂化的认识。综述了四氢萘催化裂化过程的反应机理,认为四氢萘主要遵循单分子裂化机理;从反应活化能、扩散、吸附等动力学角度对四氢萘裂解行为进行了解释;催化剂适宜的孔径和BrØnsted酸强度有利于四氢萘开环;随着反应温度升高、剂/油质量比增大、质量空速减小,四氢萘反应活性增强,同时氢转移反应愈发明显。适宜的催化剂孔径和Brnsted酸强度、反应温度、剂/油质量比以及质量空速有利于四氢萘裂化生成低碳烯烃。 相似文献
90.
如何有效利用海军数据链系统传输战术水声环境产品是海军作战环境保障的关键问题之一.然而,战术水声环境数据具有较强的时空变化性,其数据量相对来说较为庞大,且在实际作战环境中,传输信道存在着各种干扰,特别是在海洋战场环境中,通信传输条件较差,传输时间紧迫,致使图像信息的传输容易受到外部因素的非正常干扰甚至中断,从而影响用户端对图像信息的接收.因此.寻求一种不依赖于通信时间和其它外部情况限制町随时结束编码实现数据压缩与渐进传输的编码方法是作战环境信息处理的一项必不可少的工作.运用目前较为先进的嵌入式小波零树编码算法对战术水声环境数据进行压缩,取得了较好的压缩效果,并在此基础上实现了图像的渐进传输,能够较好的适应复杂海洋战场的需求. 相似文献