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71.
基于InGaAs光谱成像技术的光纤光栅传感器在大坝渗流监测系统的应用 总被引:1,自引:0,他引:1
为了实现大坝渗流监测,提出了一种采用光谱成像技术的光纤Bragg光栅传感器和多点传感系统。基于室内实验结果,对监测系统可靠性与监测数据准确度进行和多点传感信号分辨因子分析,结果表明:用于坝体温度场检测的光线光栅传感器波长温度响应灵敏度可达0.009 1nm/℃;由光源带宽决定的测试系统可实现多个传感器的复用。实践表明:采用光纤光栅传感系统可进行大坝渗流自动监测,特别是在系统防雷击、抗干扰性方面,与传统仪器相比具有明显优势。 相似文献
72.
基于高光谱成像的生鲜猪肉细菌总数预测建模方法研究 总被引:8,自引:0,他引:8
生鲜猪肉中细菌总数(TVC)超标会直接危害大众,为此研究验证高光谱成像技术结合相应的建模方法预测生鲜猪肉中TVC的可行性。针对非线性、小样本问题, 以及光谱维和空间维的大数据量问题,在综合比较偏最小二乘回归(PLSR)、人工神经网络(ANNs)和最小二乘支持向量机(LS-SVM)3种建模方法的基础上,最终选取了LS-SVM方法组建模型。3种建模方法综合比较的结果表明,LS-SVM同时兼顾了训练精度和泛化能力两方面的性能,使其都能做到最优,与标准平板菌落计数法所检测TVC的决定系数分别为0.987 2和0.942 6,校正均方根误差和预测标准均方根误差分别为0.207 1和0.217 6,其建模性能优于其他方法。研究结果表明,高光谱成像技术结合LS-SVM预测建模方法可作为快速、非破坏预测生鲜猪肉TVC的有效手段。 相似文献
73.
Forward and inverse problem for cardiac magnetic field and electric potential using two boundary element methods 下载免费PDF全文
This paper discusses the forward and inverse problem for cardiac magnetic fields and electric potentials.A torso-heart model established by boundary element method(BEM) is used for studying the distributions of cardiac magnetic fields and electric potentials.Because node-to-node and triangle-to-triangle BEM can lead to discrepant field distributions,their properties and influences are compared.Then based on constructed torso-heart model and supposed current source functional model-current dipole array,the magnetic and electric imaging by optimal constrained linear inverse method are applied at the same time.Through figure and reconstructing parameter comparison,though the magnetic current dipole array imaging possesses better reconstructing effect,however node-to-node BEM and triangleto-triangle BEM make little difference to magnetic and electric imaging. 相似文献
74.
75.
We investigated the subpicosecond laser ablation of copper and fused silica under 100 fs laser irradiation at 800 nm in vacuum by means of fast plume imaging and time- and space-resolved optical emission spectroscopy. We found that, to the difference of copper ablation, the laser-generated plasma from a fused silica target exhibited one “main” component only. The “slow” plasma component, observed during copper ablation and usually assigned to optical emission from nanoparticles was not detected by either plasma fast imaging or optical emission spectroscopy even when fused silica targets were submitted to the highest incident fluences used in our experiments. The characteristic expansion velocity of this unique component was about three times larger than the velocity of the fast plume component observed during copper ablation. The dependence of laser fluence on both plasma expansion and ablation rate was investigated and discussed in terms of ablation efficiency and initiation mechanisms. 相似文献
76.
Yoshiaki Sugimoto Nobuhiro Tsumori Shintaro Nomura Toshiharu Saiki 《Optical Review》2009,16(3):269-273
Near-field photoluminescence (PL) imaging spectroscopy was used to investigate multi-exciton and charged-exciton states confined
in a single GaAs interface fluctuation quantum dot. We determined the origin of peaks in the PL spectra by employing a wavefunction
mapping technique. We observed distortion of the exciton wavefunction due to the electric field produced by an excess electron
at a nearby confined state. Near-field wavefunction mapping was demonstrated to be a powerful tool for visualizing the local
environment, which affects the emission properties of quantum dots. 相似文献
77.
Lan Yuan Wei Wei Juan Li Zhiwei Sun Hongfang Wang Xiuzhi Zhang Yueyue Chen 《Journal of nanoparticle research》2009,11(5):1219-1225
The microscopic visualization of metal nanoparticles has become a useful tool for the investigation of their applications
in cell labeling and the study of their bio-effects. In the current study, we have developed a facile method with confocal
laser scanning microscope (CLSM) to observe unfunctionalized Au nanoparticles through fluorescent channels. The sharp reflected
signal and photostable property of the metal nanoparticles makes the present method very ideal for fluorescent co-localization,
real-time imaging, and further quantitative analysis.
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users.
Lan Yuan and Wei Wei contributed equally to this study. 相似文献
78.
总结了双棱镜干涉实验的调整难点及原因。提出解决的措施并对要点进行研究分析,收到良好效果。提出评价学生调整光路质量的方法。 相似文献
79.
Atiyah Yahya B. Gino Fallone 《Journal of magnetic resonance (San Diego, Calif. : 1997)》2009,196(2):170-177
Turbo spectroscopic imaging (TSI) is a spin echo spectroscopic imaging technique in which two or more echoes are acquired per excitation to reduce the acquisition time. The application of TSI has primarily been limited to the detection of uncoupled spins because the signal from coupled spins is modulated as a function of echo time. In this work we demonstrate how the TSI sequence can be modified to observe spins like the C2 protons of Glx (≈3.75 ppm) which are involved solely in weak-coupling interactions. The technique exploits the chemical shift displacement effect by employing TSI refocusing pulses that have bandwidths which are less than the chemical shift difference between the target spins and the spins to which they are weakly coupled. The modified TSI sequence rewinds the J-evolution of the target protons in the slice of interest independently of the echo time or echo spacing, thereby removing any signal variation between successive echoes (apart from T2 relaxation effects). In this study we tailored the narrow-bandwidth TSI sequence for observation of the C2 Glx protons. The echo time was experimentally optimized to minimize signal contamination from myo-inositol, and the efficacy of the method was verified on phantom solutions of Glx and on brain in vivo. 相似文献
80.
Reducing ghosting due to k-space discontinuities in fast spin echo (FSE) imaging by a new combination of k-space ordering and parallel imaging 总被引:1,自引:0,他引:1
David W. Carmichael David L. Thomas Roger J. Ordidge 《Journal of magnetic resonance (San Diego, Calif. : 1997)》2009,200(1):119-125
In multi-echo imaging sequences like fast spin echo (FSE), the point spread function (PSF) in the phase encoding direction contains significant secondary peaks (sidebands). This is due to discontinuities in adjacent k-space data obtained at different echo times caused by T2 decay, and leads to ghosting and hence reduced image quality. Recently, utilising multiple coils for signal reception has become the standard configuration for MR systems due to the additional flexibility that parallel imaging (PI) methods can provide. PI methods generally obtain more data than is required to reconstruct an image. Here, this redundancy in information is exploited to reduce discontinuity-related ghosting in FSE imaging. Adjacent phase encoded k-space lines are acquired at different echo times alternately in the regions of discontinuity (called ‘feathering’). This moves the resulting ghost artefacts to the edges of the field of view. This property of the ghost then makes them amenable to removal using PI methods. With ‘feathered’ array coil data it is possible to reconstruct data over the region of the discontinuity from both echo times. By combining this data, a significant reduction in ghosting can be achieved. We show this approach to be effective through simulated and acquired MRI data. 相似文献