955 resultados para TAC, Radon, ricostruzione, tomografia


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聚乳酸(PLA)具有可生物降解性、生物相容性、良好的机械性能和可加工性等。近年来聚乳酸已逐渐成为生物降解材料的研究热点。然而,聚乳酸性脆,热稳定性差,熔融加工的窗口较窄,这些不利因素严重的限制了聚乳酸的广泛应用。本工作采用物理和化学的手段来改善聚乳酸的柔韧性,探索了改性的聚乳酸变为实用材料的可能性。 结合小分子量增塑剂增塑效率高和低聚的增塑剂稳定性好的优点,采用质量比为1:1的三醋酸甘油酯(TAC)和聚己二酸1,3-丁二醇酯(PBGA)组成的复合增塑剂提高聚乳酸的柔韧性。研究表明,相比单一增塑剂复合增塑剂是较好的增塑剂,有效地降低了聚乳酸的玻璃化转变温度和熔融温度,但增加了聚乳酸的结晶度,大大地提高了聚乳酸的断裂伸长率。当增塑剂含量大于9%时,聚乳酸变为韧性材料,断裂伸长率由原来的3%增加到320%。为了考察增塑聚乳酸的结构与性能稳定性,在60℃条件下对增塑聚乳酸老化4天,发现只有增塑剂含量为17%的聚乳酸材料的性能较稳定,材料仍保持一定的韧性。增塑剂含量高于23%时,会有增塑剂从材料本体析出的现象。 为了得到结构和性能稳定的高韧性材料,在复合增塑剂增塑的聚乳酸体系中加入三烯丙基异氰脲酸酯(TAIC)通过电子束辐照发生交联。研究表明:增塑聚乳酸材料在合适的辐照剂量下(10Mrad),保持一定强度(23.5MPa)的同时,还有较高的断裂伸长率(268%)。此外,由于复合增塑剂中的PBGA有部分参与交联反应和交联网络对增塑剂的强迫互溶作用,复合增塑剂较交联前有更好的稳定性。

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本文介绍了一种基于复杂可编程逻辑器件设计的大规模探测器前端电子学系统电路,提出了一种优化的电路设计,它的主要功能是对中国科学院近代物理研究所在建的中子墙探测器的输出信号进行处理,实现了多路的信号甄别,能量-幅度装换(QAC),时间-幅度转换(TAC),多道信号输出等功能。突出特点:采用新型DMOS开关,测量精度高、功耗低、速度快、元件少等。在大型探测器阵列前端电子学系统中有着广泛的应用前景。

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介绍了一个多道时间幅度转换器(TAC)电路。它主要由起-停型时间幅度变换电路、放大电路、采样保持电路、积分控制电路、采样保持控制电路、判断电路等组成。其特点是精度高,速度快,电路简单,多通道,易与计算机数据获取和处理系统配合使用。可以广泛应用于大型探测器阵列前端电子学系统。

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简要介绍一种新的输入信号时序鉴别方法与电路。该电路的主要功能是对输入信号的时序进行鉴别和分拣,它可以鉴别出一个输入信号串中包含的各个脉冲的序号,并且产生与各个序号相对应的输出信号。可以鉴别的输人信号的序号为N=1,2,3,…,8。适用于多路时间幅度转换器(TAC)和多路时间数字转换器(TDC)系统,其输出信号可作TAC和TDC的停止信号。该电路输出信号的前沿tr≤3.2ns,传输延迟tpd≤20ns.

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比较了N-乙酰半胱氨酸(NAC)及乙酰左旋肉毒碱(ALCAR)对12C6+离子照射小鼠的损伤效应,并探讨了其可能的作用机制。利用4Gy剂量的12C6+离子束对预先给予NAC(100mg/kg)和ALCAR(100mg/kg)保护的昆明小鼠进行单次全身照射。随后检测肝组织中总抗氧化能力(TAC)、DNA单链断裂和细胞凋亡率。结果显示,与照射对照组相比,提前给予NAC和ALCAR均极显著地增强了肝组织的抗氧化能力(P<0.001),减轻了12C6+离子导致的肝组织中DNA断裂(P<0.001)和细胞凋亡(P<0.001)。此外,还发现ALCAR组抗重离子辐照损伤的能力显著地高于NAC组(P<0.05)。实验结果提示了NAC和ALCAR可通过抵御组织内的氧化胁迫,阻止DNA链的断裂和细胞的凋亡,实现对C离子辐照损伤的保护效应。而且ALCAR比NAC可能更适合成为有潜力、有希望的抗C重离子辐射药物。

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随着国家大科学工程兰州重离子加速器冷却储存环(HIRFL-CSR)建成,CSRm实验探测系统也正在建设当中。CSRm实验探测系统由外靶系统和内靶系统构成。外靶系统主要有γ探测器、多丝漂移室(MWDC)、ToF墙(ToF Wall)、中子墙(Neutron Wall)等探测器组成,主要用于核物理研究。其中,用于探测中子的中子墙探测器是外靶系统中的一个重要组成部分,它有252个探测单元,每一个探测器单元都要求既有很好的能量分辨,也要有很好的时间分辨,同时还要求数据获取率达到每秒几千个事件。对于这样先进的探测器和大型实验探测系统采用传统的电子学仪器和方法已经无法构成读出电子学系统,建造与之相配的读出电子学系统是极为重要的和亟待解决的工作。为此,我们设计研发适合于中子墙探测器这样的大型闪烁体探测器的前端电子学读出系统。包括三大部分:16道电荷幅度转换电路(QAC),16道时间幅度转换电路(TAC)和有效信号判断电路。本论文的主要内容如下:在第一章绪论中,介绍了论文课题的出发点以及课题的意义,并对课题的背景进行了介绍。第二章介绍我们所自行设计的中子墙探测器的特点、结构。分析了中子墙探测器的输出信号的特点以及对后续前端电子学读出系统的要求。第三章是本论文两大核心部分之一,是本论文的创新点所在。主要介绍了我们电荷幅度转换的新方法,结合通常的QAC电路方法和具体的实际情况,我们自行提出了一种新的QAC电路,包括以下几个部分:差分输入电路、电流分割、上下恒流源、门控电流积分器。我们的创新点在于,我们用上下恒流源分别代替了通常QAC中作为电流分配的电流镜像和作为电流基准的电阻,这样一来更容易得到比较稳定的偏置电流,从而能够得到更高的转换精度。第四章是本论文的另外一个核心部分,首先我们论述了核电子学时间测量的几种方法,在对它们进行对比后,结合中子墙的实际特点,我们确定了采用起停型的TAC方法。然后介绍了TAC的原理,以及具体的电路结构。第五章主要的内容是对我们整个电路的逻辑电路进行了详细的介绍,它包括16道QAC和16道TAC的积分控制信号和泄放控制信号的产生电路以及有效信号判断电路。详细论述了这些逻辑关系以及如何在CPLD实现,并且给出了仿真结果。第六章详细讨论了我们在设计PCB板时遇到的问题及其解决方法。第七章介绍了多路QAC和多路TAC主要指标及其测试方法、步骤、结果并给出了误差分析。在总结部分我们回顾了我们整个工作的过程,介绍了论文的主要成果和创新点以及对于整个CSR工程的意义。本论文的创新点: 1、提出了一种新型的QAC电路。 2、将16道QAC和16道TAC以及有效信号判断电路集成在一个插件中提高了电路的集成度,并为最终集成在一片ASIC芯片中打下坚实的基础。 3、用可编程逻辑器件代替ECL器件来构建逻辑电路,降低了功耗和成本并提高了系统的可靠性

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随着国家大科学工程兰州重离子加速器冷却储存环(HIRFL-CSR)建成,HIRFL-CSR实验探测系统也正在建设当中。实验探测系统由外靶系统和内靶系统构成。用于探测中子的中子墙探测器是外靶系统中的一个重要组成部分,它有252个探测单元,每一个探测器单元都要求很好的能量分辨和时间分辨,还要求有很高数据获取率。为此,我们设计研发适合于中子墙探测器这样的大型闪烁体探测器的前端电子学读出系统。论文从发展髙性能多路小型化前端电路和研究QAC、TAC的方法和电路两个方面进行研究,讨论了我们采用的新思路和新方法。 我们设计的新型的多道高精度的电荷-电压、时间转换电路.该电路主要用于在相关控制信号的配合下,将光电倍增管输出的快电流脉冲信号转化为电压信号,并在控制信号作用下,将电压信号通过数据采集系统直接送入计算机进行处理。电路采用新型的QAC方法,用于处理快速的电流信号,突出特点是转换速度快,电路结构简单,输入信号范围大,精度高,功耗低, 电路采用改进的TAC方法,用于处理快速的时间信号,利用高速DMOS开关,并优化控制逻辑时序,极大提高了测试精度。 实验室调试结果说明系统已能够适应物理实验的要求,并为最终建立一个完整的满足性能要求的前端电子学系统打下了坚实的基础

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本文介绍了一种新型的用于在线同位素分离器的离子源——激光离子源。这种离子源将会大大提高在线同位素分离器的化学选择性,给新核素的合成及其衰变性质研究注入巨大的活力。论文首先介绍了激光离子源的工作原理和国际上研制激光离子源的情况。其次介绍了我们在研制热管式激光离子源方面取得的以下进展:(1)激光器系统已经可以使用,完成了光路传输与合成系统;(2)研制了一个用于研究激光离子源特性的离线实验装置;(3)获得了铥元素的激光多步共振电离信号,测量了Ta,Nb-Zr合金和内表面涂有了TaC的Nb-Zr合金电离管表面电离电流及激光共振电离电流随温度纷变化曲线,得到了热管式激光离子源的化学选择性,对元素铥的化学选择性可达封50-10000,论文最后对将要做的工作提出了进一步的设想,对激光离子源的前景做了展望。

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The blends of low molecular weight triacetin (TAC) and oligomeric poly(1,3-butylene glycol adipate) (PBGA) were used as multiple plasticizers to lubricate poly(lactic acid) (PLA) in this study. The thermal and mechanical properties of plasticized polymers were investigated by means of dynamic mechanical analysis and differential scanning calorimetry. Atomic force microscopy (AFM) was used to analyze the morphologies of the blends. Multiple plasticizers were effective in lowering the glass transition temperature (T-g) and the melting temperature (T-m) of PLA. Moreover, crystallinity of PLA increased with increasing the con-tent of multiple plasticizers. Tensile strength of the blends decreased following the increasing of the plasticizers, but increased in elongation at break. AFM topographic images showed that the multiple plasticizers dispersed between interfibrillar regions. Moreover, the fibrillar crystallite formed the quasicrosslinkings, which is another cause for the increase in elongation at break.

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BACKGROUND: Previously, tachyplesin gene (tac) has been successfully transferred into Undaria pinnatifida gametophytes using the method of microprojectile bombardment transformation. The objectives of this study were to compare and evaluate the performance of bubble-column and airlift bioreactors to determine a preferred configuration of bioreactor for vegetative propagation of transgenic U. pinnatifida gametophytes, and to then investigate the influence of light on vegetative propagation of these gametophytes, including incident light intensity, photoperiod and light quality to resolve the problems of rapid vegetative propagation within the selected bioreactor. RESULTS: Experimental results showed that final dry cell density in the airlift bioreactor was 12.7% higher than that in the bubble-column bioreactor under the optimal aeration rate of 1.2 L air min(-1) L-1 culture. And a maximum final dry cell density of 2830 mg L-1 was obtained within the airlift bioreactor using blue light at 40 mu mol m(-2) s(-1) with a light/dark cycle of 14/10 (h). Polymerase chain reaction (PCR) analysis indicated that genes (bar and tac) were not lost during rapid vegetative propagation within the airlift bioreactor. CONCLUSION: The airlift bioreactor was shown to be much more suitable for rapid vegetative propagation of transgenic U. pinnatifida gametophytes than the bubble-column bioreactor in the laboratory. The use of blue light allows improvement of vegetative propagation of transgenic U. pinnatifida gametophytes. (C) 2009 Society of Chemical Industry

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Shipboard X-band radar images acquired on 24 June 2009 are used to study nonlinear internal wave characteristics in the northeastern South China Sea. The studied images show three nonlinear internal waves in a packet. A method based on the Radon Transform technique is introduced to calculate internal wave parameters such as the direction of propagation and internal wave velocity from backscatter images. Assuming that the ocean is a two-layer finite depth system, we can derive the mixed-layer depth by applying the internal wave velocity to the mixed-layer depth formula. Results show reasonably good agreement with in-situ thermistor chain and conductivity-temperature-depth data sets.

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海带具有很高的营养价值和经济社会价值。自20世纪90年代以来,本实验室在借鉴高等植物基因工程原理和方法的基础上,根据海带自身特点,建立了海带遗传转化体系(海带孢子体表达系统),它的基本原理是利用基因枪法转化海带配子体,经孤雌或受精途径再生幼孢子体后,用氯霉素筛选幼孢子体获得转基因海带,然后进行海上安全栽培和转基因产品的检测与提取。目前该表达系统已成功实现报告基因(β-半乳糖苷酶基因,lacZ)和功能基因(乙肝表面抗原基因,HBsAg)的稳定表达。 由于海带孢子体表达系统需经孢子体再生和海上栽培等阶段,周期较长,而且转基因安全性问题也在一定程度上制约其研究与应用。因此,我们在海带孢子体表达系统的基础上又建立和优化了海带配子体表达系统,并成功实现了报告基因(绿色荧光蛋白基因,GFP)的瞬间表达和功能基因(瑞替普酶基因,rt-PA)的稳定表达。虽然海带配子体表达系统能避免转基因安全性问题,周期较短,但在表达量和生物量积累方面,与孢子体表达系统相比还有较大差距。 本文首先在海带配子体表达系统中成功实现了人酸性成纤维细胞生长因子基因(hafgf)和鲎素基因(tac)的稳定表达,制备了转基因海带配子体,然后将光生物反应器培养技术应用于转基因海带配子体的高效增殖,以期解决阻碍海带配子体表达系统发展的量的问题,并为转基因海带配子体的大规模培养提供试验依据和技术支持。 本文的研究结果为: 1、人酸性成纤维细胞生长因子基因和鲎素基因可以稳定整合到海带配子体基因组中,实现转基因产物的表达。 2、根据转基因海带配子体的生长特点,研制开发了一套培养体积为300 ml的鼓泡式光生物反应器,它具有操作简便、成本低廉、适合海带配子体生长等特点。随后将培养体系扩大到2.5 L,并研究了光对转基因海带配子体生长的影响,试验结果显示,转基因海带配子体在光强为30 μE m-2 s-1时即可达到光饱和生长,最优光周期为14:10 LD,而且蓝光可促进转基因海带配子体的生长。 3、在前期研究工作的基础上,为改善反应器内的传质条件,我们又设计研制了2.5 L气升式光生物反应器用于转基因海带配子体的高效增殖。研究发现,气升式光生物反应器较鼓泡式光生物反应器能明显地改善反应器内的传质状态,实现转基因海带配子体更高密度的培养(生物量可达到1,990 mg L-1),是一套高密度悬浮培养转基因海带配子体的有效装置和设备。

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本文讨论了基于视觉和结构光的焊缝形貌视觉检测系统的组成原理,针对拼板激光焊接工程中对焊缝检测的实时性要求高的特点,创新性地提出了一种快速获得焊缝错配缺陷的算法,主要步骤为:首先基于有关标准的检测指标阈值的设定,再次,针对在线提取到的图像进行预处理,主要是加窗和中值滤波;最后为Radon变换与错配检测。该算法能减少计算任务,从而快速获得错配检测指标。实验给出了不等厚板拼焊时的线性错配的数值和分布,同时验证了该算法的有效性。

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I address of reconstruction of spatial irregular sampling seismic data to regular grids. Spatial irregular sampling data impairs results of prestack migration, multiple attenuations, spectra estimation. Prestack 5-D volumes are often divided into sub-sections for further processing. Shot gathers are easy to obtain from irregular sampling volumes. My strategy for reconstruction is as follows: I resort irregular sampling gathers into a form of easy to bin and perform bin regularization, then utilize F-K inversion to reconstruct seismic data. In consideration of poor ability of F-K regularization to fill in large gaps, I sort regular sampling gathers to CMP and proposed high-resolution parabolic Radon transform to interpolate data and extrapolate offsets. To strong interfering noise--multiples, I use hybrid-domain high-resolution parabolic Radon transform to attenuate it. F-K regularization demand ultimately for lower computing costs. I proposed several methods to further improve efficiency of F-K inversion: first I introduce 1D and 2D NFFT algorithm for a rapid calculation of DFT operators; then develop fast 1D and 2D CG method to solve least-square equations, and utilize preconditioner to accelerate convergence of CG iterations; what’s more, I use Delaunay triangulation for weight calculation and use bandlimit frequency and varying bandwidth technique for competitive computation. Numerical 2D and 3D examples are offered to verify reasonable results and more efficiency. F-K regularization has poor ability to fill in large gaps, so I rearrange data as CMP gathers and develop hybrid-domain high-resolution parabolic Radon transforms which be used ether to interpolate null traces and extrapolate near and far offsets or suppress a strong interfere noise: multiples. I use it to attenuate multiples to verify performances of our algorithm and proposed routines for industrial application. Numerical examples and field data examples show a nice performance of our method.

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At present, in order to image complex structures more accurately, the seismic migration methods has been developed from isotropic media to the anisotropic media. This dissertation develops a prestack time migration algorithm and application aspects for complex structures systematically. In transversely isotropic media with a vertical symmetry axis (VTI media), the dissertation starts from the theory that the prestack time migration is an approximation of the prestack depth migration, based on the one way wave equation and VTI time migration dispersion relation, by combining the stationary-phase theory gives a wave equation based VTI prestack time migration algorithm. Based on this algorithm, we can analytically obtain the travel time and amplitude expression in VTI media, as while conclude how the anisotropic parameter influence the time migration, and by analyzing the normal moveout of the far offset seismic data and lateral inhomogeneity of velocity, we can update the velocity model and estimate the anisotropic parameter model through the time migration. When anisotropic parameter is zero, this algorithm degenerates to the isotropic time migration algorithm naturally, so we can propose an isotopic processing procedure for imaging. This procedure may keep the main character of time migration such as high computational efficiency and velocity estimation through the migration, and, additionally, partially compensate the geometric divergence by adopting the deconvolution imaging condition of wave equation migration. Application of this algorithm to the complicated synthetic dataset and field data demonstrates the effectiveness of the approach. In the dissertation we also present an approach for estimating the velocity model and anisotropic parameter model. After analyzing the velocity and anisotropic parameter impaction on the time migration, and based on the normal moveout of the far offset seismic data and lateral inhomogeneity of velocity, through migration we can update the velocity model and estimate the anisotropic parameter model by combining the advantages of velocity analysis in isotropic media and anisotropic parameter estimation in VTI media. Testing on the synthetic and field data, demonstrates the method is effective and very steady. Massive synthetic dataset、2D sea dataset and 3D field datasets are used for VTI prestack time migration and compared to the stacked section after NMO and prestack isotropic time migration stacked section to demonstrate that VTI prestack time migration method in this paper can obtain better focusing and less positioning errors of complicated dip reflectors. When subsurface is more complex, primaries and multiples could not be separated in the Radon domain because they can no longer be described with simple functions (parabolic). We propose an attenuating multiple method in the image domain to resolve this problem. For a given velocity model,since time migration takes the complex structures wavefield propagation in to account, primaries and multiples have different offset-domain moveout discrepancies, then can be separated using techniques similar to the prior migration with Radon transform. Since every individual offset-domain common-reflection point gather incorporates complex 3D propagation effects, our method has the advantage of working with 3D data and complicated geology. Testing on synthetic and real data, we demonstrate the power of the method in discriminating between primaries and multiples after prestack time migration, and multiples can be attenuated in the image space considerably.