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This paper introduced that how resynthesize the neural firing rate by correlogram inversion,how resume the lost information by half wave rectification inversion.and a solution of speech enhancement based on masking properties of human auditory is proposed and implemented,we can not only analyse and resynthesize speech signal ,but also analyse and resynthesize speech signal in noisy entironment with the system.

又根据听觉生理特点提出了抗噪声方案,使我们的语音分析/重构系统不仅可以对无噪信号进行重构,而且还可以在噪声环境下的语音信号进行重构

The results showed that 1 there were no significant differences in the rates of cytoplast protrusion and enucleation between oocytes that were incubated in colchicine (0.4 μg/mL) for 0.5 h and oocytes that were incubated in colchicine (0.4 μg/mL) for 1 h, and the rate of cytoplast protusion can be 85.4% while the rate of cytoplast enucleation is 100%. 2 There was no significant difference in oocyte enucleation between oocytes treated with medium containing 0.2 μg/mL colchicine for 0.5 h and oocytes treated with medium containing 0.4 μg/mL colchicine for 0.5 h. 3 A maturation time of 18–23 h did not affect the rates of cytoplast protusion and enucleation by chemically assisted enucleation, whereas the rate of enucleation of oocytes by blind enucleation was found to decrease with a prolonged incubation time. 4 The development rates of reconstructed embryos could not be influenced by these two enucleation methods, increased from oocytes matured for 21–23 h.

结果表明: 1 卵母细胞在0.4 mg/mL的秋水仙素溶液中分别孵育0.5 h和1 h,胞质突起率和去核率没有显著的差异,突起率可高达85.4%,去核率达到100%; 2 0.2 mg/mL或0.4 mg/mL秋水仙素溶液将卵母细胞处理0.5 h,对去核效果没有显著影响; 3 对于体外成熟18~23 h的卵母细胞,随着成熟时间的延长,盲吸法的去核率降低,但没有影响秋水仙素诱导胞质突起的比率和去核率; 4 两种去核方法对重构胚的发育没有产生显著影响,但成熟21~23 h卵母细胞重构胚囊胚的发育率显著高于成熟18~20 h卵母细胞重构胚囊胚的发育率。

The last but not least, it is also owning to the rapid development in computer science and information technology. Such as, some computational task, which previously must be executed by using super-computer, now can be carried out by personal computer, and at the same time, the network speed and band width of data bus and input/output equipment have increased several times. In addition, the improvement of the high quality graphic displaying is available. All these provide strong support for cryoEM high-resolution reconstruction study.

目前,在低电子剂量的情况下,冷冻电镜照片可以记录到3-4 〓的信息,使用冷冻电子显微镜进行高分辨三维重构工作,已经获得6.5-8〓高分辨率水平的结果,可以分辨出蛋白质的α螺旋、识别出蛋白质的β折叠等蛋白质二级结构;其次是,三维重构算法效能的不断提高,使得对二十面体取向和中心参数计算的可靠性大大提高;再次是,由于计算机和信息技术迅猛发展,例如,以往需要使用大型计算机的计算任务已经可以被一般的个人电脑完成,网络速度、数据总线和硬盘等I/O设备的带宽成倍增长,以及图像显示能力的提高都为冷冻电子显微镜高分辨三维重构技术提供了强有力的支持。

Nowadays, in the low electron dose condition, the information about 3-4〓 can be recorded on the cryoEM micrograph, and the high-resolution reconstruction using the cryoEM has reached 6. 5-8〓 levels. The reconstruction can reveal the protein α helical and recognise β fold secondary structure. Secondly, it is due to the development in 3D reconstruction method, which can be more efficient to determine the orientation and center parameters. The last but not least, it is also owning to the rapid development in computer science and information technology. Such as, some computational task, which previously must be executed by using super-computer, now can be carried out by personal computer, and at the same time, the network speed and band width of data bus and input/output equipment have increased several times. In addition, the improvement of the high quality graphic displaying is available. All these provide strong support for cryoEM high-resolution reconstruction study.

目前,在低电子剂量的情况下,冷冻电镜照片可以记录到3-4 〓的信息,使用冷冻电子显微镜进行高分辨三维重构工作,已经获得6.5-8〓高分辨率水平的结果,可以分辨出蛋白质的α螺旋、识别出蛋白质的β折叠等蛋白质二级结构;其次是,三维重构算法效能的不断提高,使得对二十面体取向和中心参数计算的可靠性大大提高;再次是,由于计算机和信息技术迅猛发展,例如,以往需要使用大型计算机的计算任务已经可以被一般的个人电脑完成,网络速度、数据总线和硬盘等I/O设备的带宽成倍增长,以及图像显示能力的提高都为冷冻电子显微镜高分辨三维重构技术提供了强有力的支持。

Then we discuss the sufficient and necessary condition which can guarantee that the original signal can be completely recostructed when using our decomposition and reconstruction formula of wavelet.

其次,给出了信号用分解公式进行小波分解与重构公式进行小波重构后完全恢复原信号的充要条件,并对完全重构充要条件的实现作了处理。

This paper proposes s new method to construct wavelets decomposing and reconstructing matrices of wavelet coefficients without iterative calculation in symmetrical extension for finite length signal ,and correspondingly gives the base vectors and basis images of 9/7 wavelet. The matrices can be used for image-partition processing based on wavelet method.

给出了对称延拓方式下有限长信号不需逐级计算而直接得到小波系数的分解矩阵和由这些小波系数重构原信号的重构矩阵的构造方法,并给出了常用的相应于9/7小波的分解矩阵和重构矩阵及其基向量,它们可广泛用于基于小波的图像分块处理中。

A method for generating a series alternative RMT configuration and reconfiguration met the operation requirements is given. In order to realize the reconfiguration online of RMT and maximumly use the machine resources, a design metho

为了实现可重构机床的在线重构和最大化地利用机床资源,给出了一种利用旋量方法来建立机床的重构需求模型,进而设计可重

The quality of reclamation soil,mainly including the methods of soil restructuring,the change of physical-chemical features and the organism activation,was analyzed at present,there are two ways to restructured soil: filling and infilling reclamation.

该文对复垦土壤质量进行了综述,主要对土壤重构的方法;重构土壤的物理、化学性状的变化;重构土壤生物活性等方面进行分析。

In view of disadvantages in present defect reconstruction methods,such as over-long time or excessive need for training samples,a new defect reconstruction method based on similar model and genetic algorithm was investigated as follows:similar model between non-axisymetric defect and axisymetric defect was represented,and proportionality factor was deduced by skin depth equation.

针对以往缺陷重构方法中普遍存在的计算时间长或需要大量训练样本的缺点,提出一种基于相似模型和遗传算法的缺陷快速重构方法,分析非轴对称缺陷与轴对称缺陷之间存在的相似模型,并利用集肤深度公式推导出两者之间的缩比因子,从而将耗时巨大的缺陷重构问题转换为二维轴对称情况下的计算问题;同时为进一步缩短重构时间,提出一种加快遗传算法收敛速度的方法。

The paper puts forward immunity arithmetic used in distribution network on the basis of analyzing common uncertainty arithmetic and immunity arithmetic theory. It gets an optimizing project for distribution network, in which the equilibrium of load is regarded as target function. It has been exampled that this project is of higher constriction speed and stronger global search ability.

3在分析常见的非确定性算法和进化免疫算法原理的基础上,提出了在配电网络重构中采用免疫算法,并求解以负荷均衡为目标函数的配电网络重构的最优方案,实例表明该方法具有较快的收敛速度和较强的全局搜索能力;同时本文还为实时配电网络重构定义了启动条件,避免在配电网络正常运行时频繁启动网络重构

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在美国,慢性酒精中毒,肝炎是最常见的。

If you have any questions, you can contact me anytime.

如果有任何问题,你可以随时联系我。

Very pretty, but the airport looks more fascinating The other party wisecracked.

很漂亮,不过停机坪更迷人。那人俏皮地答道。