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排序方式: 共有207条查询结果,搜索用时 15 毫秒
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K. K. Dwivedi S. Ghosh D. Fink R. Mishra S. P. Tripathy A. Kulshreshtha D. T. Khating 《Radiation measurements》1999,31(1-6):127-132
It has been well established that different ionising radiations modify the track registration properties of dielectric solids. In an effort to study the response of Polyallyl diglycol carbonate (PADC Homalite) detector towards fission fragment, PADC detectors were exposed to 104 Gy dose of 62 MeV protons and then one set of samples were exposed to fission fragments from a 252Cf source. Two of these detectors were containing a thin layer of Buckminsterfullerene (C60). The study of the etched tracks by Leitz Optical Microscope reveals that the track diameters are enhanced by more than 70% in the proton irradiated zone as compared to that in the unirradiated zone. Scanning Electron Microscopy was performed after etching the sample in 6 N NaOH at 55°C for different etching times, to study the details of the surface modifications due to proton irradiation of PADC detectors with and without C60 layer. Our observations revealed that the diameters and density of proton tracks have increased with etching time on the surface facing the fullerene layer as well as the other surface. However, a relatively more open structure of the etched surface containing C60 as compared to the bare one may be an indication of the extra damage caused by the energy released upon the destruction of C60 molecules by energetic protons. 相似文献
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Nadeem Saeed Basant K Puri Angela Oatridge Joseph V Hajnal Ian R Young 《Magnetic resonance imaging》1998,16(10):1237-1247
Two semi-automated methods for quantification of ventricular volume change from baseline and follow-up magnetic resonance imaging scans have been developed. Technique 1 employs direct segmentation of the ventricles from both the scans using thresholding and contour extraction. Technique 2 operates on difference images produced by voxel based intensity subtraction of the baseline from the registered follow-up images. Here, all voxels with intensities above a noise threshold and in a restricted area are monitored to compute volumetric changes. In phantom measurements the first technique was accurate to 0.0046%, the second to 0.167% of the phantom volume. Results from normal volunteers was that the average ventricular volume changed by 1.52% and 1.54% for images acquired within 9 months using techniques 1 and 2, respectively. With schizophrenic patients mean change of 10.78% and 9.43% were found employing the first and second procedures, respectively. All measurements agreed with a radiologist’s visual grading of the changes. Robust, objective, fast, easy-to-use, and fairly accurate procedures have been developed and validated to quantify volumetric changes. 相似文献
35.
图像配准技术是近些年来图像处理领域发展迅速的研究方向之一.在遥感领域内,图像配准更是实现图像融合、运动检测、图像校正、图像拼接等应用的一个关键步骤.尽管国内外目前在图像配准方面提出了很多方法,但不同方法适用的图像范围不同,很多时候需要人工干预进行方法的选择.尤其对于无人机这种快速、实时获取图像的新型遥感平台,如何集合不同方法的优点以实现图像自动配准成为了关键性问题.本文在比较分析了基于SIFT和SURF特征提取图像配准方法的各自优势后,提出基于几何矩的方法对图像进行预先分类,从而决定将其分配给何种方法进行配准,实现全程自动化.实验证明,这种图像自动配准方法在拓宽了图像应用范围的同时保证了良好的配准效果. 相似文献
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Silvana Ruella de Oliveira Jorge Luiz Raposo Jr.José Anchieta Gomes Neto 《Spectrochimica Acta Part B: Atomic Spectroscopy》2009
The fast sequential multi-element determination of Ca, Mg, K, Cu, Fe, Mn and Zn in plant tissues by high-resolution continuum source flame atomic absorption spectrometry is proposed. For this, the main lines for Cu (324.754 nm), Fe (248.327 nm), Mn (279.482 nm) and Zn (213.857 nm) were selected, and the secondary lines for Ca (239.856 nm), Mg (202.582 nm) and K (404.414 nm) were evaluated. The side pixel registration approach was studied to reduce sensitivity and extend the linear working range for Mg by measuring at wings (202.576 nm; 202.577 nm; 202.578 nm; 202.580 nm; 202.585 nm; 202.586 nm; 202.587 nm; 202.588 nm) of the secondary line. The interference caused by NO bands on Zn at 213.857 nm was removed using the least-squares background correction. Using the main lines for Cu, Fe, Mn and Zn, secondary lines for Ca and K, and line wing at 202.588 nm for Mg, and 5 mL min− 1 sample flow-rate, calibration curves in the 0.1–0.5 mg L− 1 Cu, 0.5–4.0 mg L− 1 Fe, 0.5–4.0 mg L− 1 Mn, 0.2–1.0 mg L− 1 Zn, 10.0–100.0 mg L− 1 Ca, 5.0–40.0 mg L− 1 Mg and 50.0–250.0 mg L− 1 K ranges were consistently obtained. Accuracy and precision were evaluated after analysis of five plant standard reference materials. Results were in agreement at a 95% confidence level (paired t-test) with certified values. The proposed method was applied to digests of sugar-cane leaves and results were close to those obtained by line-source flame atomic absorption spectrometry. Recoveries of Ca, Mg, K, Cu, Fe, Mn and Zn in the 89–103%, 84–107%, 87–103%, 85–105%, 92–106%, 91–114%, 96–114% intervals, respectively, were obtained. The limits of detection were 0.6 mg L− 1 Ca, 0.4 mg L− 1 Mg, 0.4 mg L− 1 K, 7.7 µg L− 1 Cu, 7.7 µg L− 1 Fe, 1.5 µg L− 1 Mn and 5.9 µg L− 1 Zn. 相似文献
37.
为满足航空航天大部件对制孔质量的数字化原位检测需求,提出一种基于特征板的制孔多视点云拼接方法,实现孔壁完整三维形貌重建与检测。分析制孔多视检测的需求,提出采用特征定位板辅助的多视点云配准方法。介绍了内角不等四边形特征板的设计与相应的点云分割、识别算法。说明基于特征自定位的多视点云拼接及参数提取方法。结合机械臂搭建实验平台,对常用钛、铝及复合材料的试件模拟原位检测,结果显示各平均误差分别为0.011 mm、0.034 mm、0.041 mm,验证了配准算法的可靠性;并对比传统单视与该方法检测结果,体现该方法的鲁棒性。 相似文献
38.
High-contrast imaging provided by a coronagraph is critical for the direction imaging of the Earth-like planet orbiting its
bright parent star. A major limitation for such direct imaging is the speckle noise that is induced from the wave-front error
of an optical system. We derive an algorithm for the wave-front measurement directly from 3 focal plane images. The 3 images
are achieved through a deformable mirror to provide specific phases for the optics system. We introduce an extra amplitude
modulation on one deformable mirror configuration to create an uncorrelated wave-front, which is a critical procedure for
wave-front sensing. The simulation shows that the reconstructed wave-front is consistent with the original wave-front theoretically,
which indicates that such an algorithm is a promising technique for the wave-front measurement for the high-contrast imaging.
Supported by the National Natural Science Foundation of China (Grant No. 10873024) 相似文献
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V. P. Kirillov A. V. Kutsenko Yu. A. Mikhailov G. V. Sklizkov A. N. Starodub O. A. Sudakov K. A. Zhurovich 《Journal of Russian Laser Research》2003,24(4):322-334
A unique method for studying spatial-frequency and amplitude responses of an image-registration device on the basis of a CCD matrix is developed. A monochromatic light-intensity distribution arising from Fraunhofer diffraction on two equal slits is used as an input signal. A quantitative approach to a spatial resolution of the CCD matrix for registration of a periodic image is developed. The dependence of the rms contrast degree of the output signal on the spatial frequency of the image recorded is studied experimentally. The optical scheme developed and the method proposed for treatment of a digitized signal allow one to determine the amplitude response of the registration device over the whole surface of the CCD matrix and to determine the admissible level of the average intensity of the radiation registered. 相似文献