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多普勒超声心动图左室舒张功能的定量研究
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作者 陈康莉 陈小红 《心血管康复医学杂志》 CAS 2005年第6期584-586,共3页
目的:在静息状态下用多普勒组织成像技术(Doppler tissue image,DTI)定量分析左室舒张功能,探讨其评 价左室舒张功能受损的意义。方法:冠心病组、高血压组、正常对照组各60例。于标准四腔心切面分别获取肺静脉 血流速度(PVF)、二尖瓣口... 目的:在静息状态下用多普勒组织成像技术(Doppler tissue image,DTI)定量分析左室舒张功能,探讨其评 价左室舒张功能受损的意义。方法:冠心病组、高血压组、正常对照组各60例。于标准四腔心切面分别获取肺静脉 血流速度(PVF)、二尖瓣口血流速度(MVF),于左室外侧壁近二尖瓣环处获取DTI图。结果:(1)和正常对照组 比较,高血压组、冠心病组的PVd、E、Pe显著下降,PVa、A、Pa显著增加,Pe/Pa、E/A、PVd/PVa显著下降 (P均<0.05-<0.01);(2)三种频谱检查结果显著相关,以DTI与MVF的相关性最好,Pe/Pa与E/A的相关系数 为0.79。结论:肺静脉血流速度、二尖瓣口血流速度、多普勒组织成像技术均能反应左室舒张功能,以多普勒组织 成像技术最准确。 展开更多
关键词 超声心动描记术 多普勒.脉冲 高血压 冠状动脉疾病
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Computations on the Earth Terrain Return of Pulse Doppler Radar Altimeter
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作者 曾超 李幼平 李鸿屺 《Journal of Beijing Institute of Technology》 EI CAS 2002年第2期159-163,共5页
Concerning the PDRA (pulse doppler radar altimeter) designing and evaluation, owing to that the specifications of PDRA should be adaptively fixed according to the ETR (earth terrain return), and that in certain stages... Concerning the PDRA (pulse doppler radar altimeter) designing and evaluation, owing to that the specifications of PDRA should be adaptively fixed according to the ETR (earth terrain return), and that in certain stages of product evaluation of PDRA which means the designations of PDRA are successful or not, the usage of ETR are indispensable, so the terrain return from spherical earth is critically important. A complete analytic derivation of the antenna shot section model of PDRA and the bright section model constrained by pulse emitted from antenna are given. Furthermore, the doppler effect mode and the earth terrain RCF (radar crossing factor) model are constructively analyzed. Then, the computing methodology on PDRA, which are used to compute the scattering power, scattering doppler spectrum, and the scattering signal, is studied. Besides, in order to check the correctness and efficiency of the algorithm, computing examples of ETR (earth terrain return) under the supposing premises are furnished. Finally, the conclusion is drawn that the models and algorithm are rational, the computational precise is satisfactory, the cost of computing time is low. 展开更多
关键词 MODELING radar altimeter radar crossing factor earth terrain return doppler frequency
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ASSESSMENT OF LEFT VENTRICULAR FUNCTION IN HEALTHY SUBJECTS BY PUSLED WAVE DOPPLER TISSUE IMAGING 被引量:4
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作者 李靖 刘延玲 +3 位作者 王浩 吕秀章 段福建 杨洪昌 《Chinese Medical Sciences Journal》 CAS CSCD 2004年第1期64-67,共4页
Objective To examine the clinical application of pulsed Doppler tissue imaging(DTI)for regional left ventricular function assessment in normal subjects. Methods We examined 50 healthy subjects(range 12-42 years,mean a... Objective To examine the clinical application of pulsed Doppler tissue imaging(DTI)for regional left ventricular function assessment in normal subjects. Methods We examined 50 healthy subjects(range 12-42 years,mean age 28.3 ± 6.9 years)using pulsed Doppler tissue imaging to characterize the diastolic and systolic velocity profiles of mitral annulus. Recordings were made along the long axis in the apical 4-chamber, 2-chamber, and long apical views of 6 sites(posterior-septum, lateral, anterior, inferior, anterior-septum, posterior)at the mitral annulus. Myocardial velocities were determined with use of variance F statistical analysis. Correlation analysis was employed to test the relationship between age and mitral annular velocities. Results Both early diastolic and systolic velocities at the septum were lower than other sites. There were no differences in mitral annulus late diastolic velocities. Mean early diastolic and systolic velocities was negatively correlated with age. Conclusions Doppler tissue imaging can directly reflect regional left ventricular function. 展开更多
关键词 Doppler tissue imaging left ventricular function
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Estimation of suspended sediment concentrations using Pulse-coherent Acoustic Doppler Profiler (PCADP) 被引量:2
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作者 柏秀芳 李思忍 +2 位作者 龚德俊 徐永平 姜静波 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2009年第2期260-265,共6页
The objective of the study is to investigate the suitability of using Pulse-coherent Acoustic Doppler Profiler (PCADP) to estimate suspended sediment concentration (SSC). The acoustic backscatter intensity was correct... The objective of the study is to investigate the suitability of using Pulse-coherent Acoustic Doppler Profiler (PCADP) to estimate suspended sediment concentration (SSC). The acoustic backscatter intensity was corrected for spreading and absorption loss, then calibrated with OBS and finally converted to SSC. The results show that there is a good correlation between SSC and backscatter intensity with R value of 0.74. The mean relative error is 22.4%. Then the time span of little particle size variation was also analyzed to exclude the influence of size variation. The correlation coefficient increased to 0.81 and the error decreased to 18.9%. Our results suggest that the PCADP can meet the requirement of other professional instruments to estimate SSC with the errors between 20% and 50%, and can satisfy the need of dynamics study of suspended particles. 展开更多
关键词 Doppler Profiler (PCADP) suspended sediment concentration (SSC) acoustic backscatterintensity
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INSTANTANEOUS DOPPLER FREQUENCY FOR SQUINT SAR IMAGING
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作者 Liu Guangyan Huang Shunji (Dept. of Electron. Eng., UEST of China, Chengdu 610054) 《Journal of Electronics(China)》 2003年第5期337-343,共7页
Instantaneous Doppler frequency for squint SAR imaging has been found with ChirpScaling Algorithm (CSA). Because the azimuth sample is not perpendicular to the range sample,the range signal must impact on the azimuth ... Instantaneous Doppler frequency for squint SAR imaging has been found with ChirpScaling Algorithm (CSA). Because the azimuth sample is not perpendicular to the range sample,the range signal must impact on the azimuth signal in the squint SAR data processing, andthe different slant range targets have different Doppler frequencies. From the mathematicalmodel of SAR echo signal, this paper carefully analyzes the instantaneous azimuth frequency, theinstantaneous Doppler frequency component of the azimuth frequency and the impact of rangechirp on azimuth frequency, which explains that Doppler frequency should be properly selected forcorrect SAR imaging in the squint SAR. The results of point target simulation experiments showthat the way is reasonable for the squint SAR and can effectively complete range compressionand azimuth focusing, and improve images' quality. 展开更多
关键词 PRF Doppler frequency Chirp scaling algorithm Range chirp rate SAR
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Measurement of Collision Conditions in Magnetic Pulse Welding Processes
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作者 Joerg Bellmann Eckhard Beyer +3 位作者 Joem Lueg-Althoff Soeren Gies A. Erman Tekkaya Sebastian Schulze 《Journal of Physical Science and Application》 2017年第4期1-10,共10页
MPW (magnetic pulse welding) is a solid state joining technology that allows for the generation of strong metallic bonds, even between dissimilar metals. Due to the absence of external heat, critical intermetallic p... MPW (magnetic pulse welding) is a solid state joining technology that allows for the generation of strong metallic bonds, even between dissimilar metals. Due to the absence of external heat, critical intermetallic phases can largely be avoided. In this process, Lorentz forces are utilized for the rapid acceleration of at least one of the two metallic joining partners leading to the controlled high velocity impact between them. The measurement of the collision conditions and their targeted manipulation are the key factors of a successful process development. Optical measuring techniques are preferred, since they are not influenced by the prevalent strong magnetic field in the vicinity of the working coil. In this paper, the characteristic high velocity impact flash during MPW was monitored and evaluated using phototransistors in order to measure the time of the impact. The results are in good accordance with the established PDV (photon Doppler velocimetry) and show a good repeatability. Furthermore, the collision front velocity was investigated using adapted part geometries within a series of tests. This velocity component is one of the key parameters in MPW; its value decreases along the weld zone. With the help of this newly introduced measurement tool, the magnetic pressure distribution or the joining geometry can be adjusted more effectively. 展开更多
关键词 Magnetic pulse welding impact welding process monitoring collision conditions dissimilar metal joining.
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Modeling and Doppler measurement of X-ray pulsar 被引量:10
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作者 ZHANG Hua XU LuPing XIE Qiang 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2011年第6期1068-1076,共9页
Generally,the Doppler caused by the velocity of the detector leads to distortion of the integrated profile of the X-ray pulsar,on the contrary,if the distortion can be used to measure the Doppler,then the velocity of ... Generally,the Doppler caused by the velocity of the detector leads to distortion of the integrated profile of the X-ray pulsar,on the contrary,if the distortion can be used to measure the Doppler,then the velocity of the detector is easy to be solved.In view of this,the correlation of the periodic error arise from the Doppler and the integrated profile was analyzed,then,based on the Poisson distribution model of the X-ray Pulsar,a new signal model and the concept of the profile entropy was defined.Furthermore,the directly cumulated profile of the signal was modeled with the Doppler as a parameter,and then the Doppler was solved via optimal method.Simultaneously,the performance of phase measurement based on this method was studded.The analysis shows that this method can get rid of the periodic error due to the discrete sampling,and can obtain continuous phase estimation.The experiment verification shows the consistency of the theory and the experiment. 展开更多
关键词 PULSARS DOPPLER ENTROPY optimal method
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Pulse phase and doppler frequency estimation of X-ray pulsars under conditions of spacecraft and binary motion and its application in navigation 被引量:11
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作者 HUANG LiangWei LIANG Bin ZHANG Tao 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2013年第4期848-858,共11页
The pulse phase and doppler frequency estimation of X-ray pulsars in dynamic situations and its application in navigation is a problem that has not been fully investigated. In this paper, solutions are proposed to sol... The pulse phase and doppler frequency estimation of X-ray pulsars in dynamic situations and its application in navigation is a problem that has not been fully investigated. In this paper, solutions are proposed to solve this problem under conditions of spacecraft and binary motion. A high-precision doppler frequency (velocity) measurement model as well as a phase (range) measurement model is established. The averaged maximum-likelihood estimator is developed for the dynamic pulse phase estimation. The pulse phase tracking technique is used in the doppler frequency determination. The tracking filter is redesigned and compared with the existing algorithms. The comparison verifies the advantage of the filter algorithm presented in this pa- per. Unlike traditional views, it is found that in dynamic situations, shorter observation interval lengths will result in higher-accuracy phase and frequency estimates as the tracking filter outputs. A photon-level integrated numerical simulation is performed. Simulation results testify to the validity of the proposed phase and doppler frequency estimation scheme, and show that incorporation of velocity measurements as well as the range ones into the navigation estimator will improve the navigation steady-state performance. 展开更多
关键词 pulse phase estimation doppler frequency binary motion X-ray pulsars NAVIGATION
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X-ray pulsar-based navigation using pulse phase and Doppler frequency measurements 被引量:5
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作者 XUE MengFan LI XiaoPing +3 位作者 FU LingZhong FANG HaiYan SUN HaiFeng SHEN LiRong 《Science China Chemistry》 SCIE EI CAS CSCD 2015年第12期129-142,共14页
In order to eliminate the impact of the Doppler effects caused by the motion of the spacecraft on the X-ray pulsar-based navigation, an innovative navigation method using the pulse phase and Doppler frequency measurem... In order to eliminate the impact of the Doppler effects caused by the motion of the spacecraft on the X-ray pulsar-based navigation, an innovative navigation method using the pulse phase and Doppler frequency measurements of the X-ray pulsars is proposed. Given the initial estimate of the spacecraft's state,the real-time photon arrival model is established at the spacecraft with respect to the spacecraft's position and velocity predicted by the orbit dynamic model and their estimation errors. On this basis, a maximum likelihood estimation algorithm directly using the observed photon event timestamps is developed to extract a single pair of pulse phase and Doppler frequency measurements caused by the spacecraft's state estimation error. Since the phase estimation error increases as the observation time increases, we propose a new measurement updating scheme of referring the measurements to the middle time of an observation interval. By using the ground-based simulation system of X-ray pulsar signals, a series of photon-level simulations are performed. The results testify to the feasibility and real-timeliness of the proposed navigation method, and show that the incorporation of the Doppler measurement as well as the pulse phase into the navigation filter can improve the navigation accuracy. 展开更多
关键词 X-ray pulsar-based navigation Doppler frequency maximum likelihood photon-level simulation pulse phase
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