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51.
52.
本文提出一种FOXBASE+关系型数据库管理系统与8031单片机系统三硬、软接口设计方法.为单片机应用系统后续数据的处理提供了有效的手段. 相似文献
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54.
MPM-2磷蛋白家族成员在有丝分裂进程中起着重要作用.为了从MPM-2磷蛋白家族层面入手研究细胞周期调控中磷蛋白的重要作用,以人上皮样喉癌细胞株HEp-2为细胞模型,运用双向电泳、免疫印迹以及质谱技术等蛋白质组学的方法对其细胞抽提物中的部分MPM-2磷蛋白进行了分析鉴定,初步确定了乙二醛酶(GlyoxalaseⅠ)、真核翻译起始因子(eIF4B)以及核质蛋白NPM等MPM-2特异识别的细胞磷蛋白,这将有助于进一步研究MPM2磷蛋白家族成员在细胞周期调控中的重要作用. 相似文献
55.
应用 ̄(45)Ca跨膜流动测定技术研究钙拮抗剂verapamil、中药西红花(CrocusSativusL.)、“地奥心血康”(DAXXK)、川红花(CarthamustinctoriusL.)及银杏叶(GinkgobilobaL.)等对大鼠主动脉 ̄(45)Ca跨膜内流的作用,以确定其对细胞膜Ca ̄(2+)通道影响。实验结果表明:西红花、川红花、DAXXK对平滑肌细胞膜上电压依赖Ca ̄(2+)通道(PDC)和受体操纵Ca ̄(2+)通道(ROC)都有阻滞作用,并以西红花的阻滞作用最强;而银杏叶对细胞膜Ca ̄(2+)通道无阻滞作用。 相似文献
56.
Intramammary expression and therapeutic effect of a human lysozyme-expressing vector for treating bovine mastitis 总被引:2,自引:0,他引:2 下载免费PDF全文
Huai-Chang Sun Fang-Ming Xue Ke Qian Hao-Xia Fang Hua-Lei Qiu Xin-Yu Zhang Zhao-Hua Yin 《浙江大学学报(自然科学英文版)》2006,7(4):324-330
To develop a gene therapy strategy for treating bovine mastitis, a new mammary-specific vector containing human lysozyme (hLYZ) cDNA and kanamycin resistance gene was constructed for intramammary expression and clinical studies. After one time acupuncture or intracisternal infusion of healthy cows with 400 μg of the p215C3LYZ vector, over 2.0 μg/ml of rhLYZ could be detected by enzymatic assay for about 3 weeks in the milk samples. Western blotting showed that rhLYZ secreted into milk samples from the vector-injected cows had molecular weight similar to that of the natural hLYZ in human colostrums. Twenty days after the primary injection, the quarters were re-injected with the same vector by quarter acupuncture and even higher concentrations of rhLYZ could be detected. Indirect competitive ELISA of milk samples showed that the vector injection did not induce detectable humoral immune response against hLYZ. Clinical studies showed that twice acupuncture of quarters with the p215C3LYZ vector had overt therapeutic effect on clinical and subclinical mastitis previously treated with antibiotics, including disappearance of clinical symptoms and relatively high microbiological cure rates. These data provide a solid rationale for using the vector to develop gene therapy for treating bovine mastitis. 相似文献
57.
58.
LIUYan HUYi-jun 《武汉大学学报:自然科学英文版》2004,9(4):399-403
We consider a risk model with a premium rate which varies with the level of free reserves. In this model, the occurrence of claims is described by a Cox process with Markov intensity process, and the influence of stochastic factors is considered by adding a diffusion process. The integro-differential equation for the ruin probability is derived by a infinitesimal method. 相似文献
59.
J. Bruce Brackenridge 《Archive for History of Exact Sciences》2003,57(4):313-336
In the 1687 Principia, Newton gave a solution to the direct problem (given the orbit and center of force, find the central force) for a conic-section
with a focal center of force (answer: a reciprocal square force) and for a spiral orbit with a polar center of force (answer:
a reciprocal cube force). He did not, however, give solutions for the two corresponding inverse problems (given the force
and center of force, find the orbit). He gave a cryptic solution to the inverse problem of a reciprocal cube force, but offered no solution for the reciprocal square force. Some take this omission as an indication that Newton could not solve the reciprocal square, for, they ask, why else
would he not select this important problem? Others claim that ``it is child's play' for him, as evidenced by his 1671 catalogue
of quadratures (tables of integrals). The answer to that question is obscured for all who attempt to work through Newton's
published solution of the reciprocal cube force because it is done in the synthetic geometric style of the 1687 Principia rather than in the analytic algebraic style that Newton employed until 1671. In response to a request from David Gregory
in 1694, however, Newton produced an analytic version of the body of the proof, but one which still had a geometric conclusion.
Newton's charge is to find both ``the orbit' and ``the time in orbit.' In the determination of the dependence of the time on orbital position, t(r), Newton
evaluated an integral of the form ∫dx/x
n
to calculate a finite algebraic equation for the area swept out as a function of the radius, but he did not write out the
analytic expression for time t = t(r), even though he knew that the time t is proportional to that area. In the determination
of the orbit, θ (r), Newton obtained an integral of the form ∫dx/√(1−x2) for the area that is proportional to the angle θ, an integral he had shown in his 1669 On Analysis by Infinite Equations to be equal to the arcsin(x). Since the solution must therefore contain a transcendental function, he knew that a finite
algebraic solution for θ=θ(r) did not exist for ``the orbit' as it had for ``the time in orbit.' In contrast to these two
solutions for the inverse cube force, however, it is not possible in the inverse square solution to generate a finite algebraic
expression for either ``the orbit' or ``the time in orbit.' In fact, in Lemma 28, Newton offers a demonstration that the
area of an ellipse cannot be given by a finite equation. I claim that the limitation of Lemma 28 forces Newton to reject the
inverse square force as an example and to choose instead the reciprocal cube force as his example in Proposition 41.
(Received August 14, 2002)
Published online March 26, 2003
Communicated by G. Smith 相似文献
60.
本文研究了测定酒中痕量铅的微分电位溶出法。该法检测下限为0.1ug·L~(-1)pb,在0~10ug·L~(-1)浓度范围内有良好线性关系,用于酒中痕量铅的直接测定,其相对标准偏差小于4.5%,回收率为98.5~103%,结果令人满意。 相似文献