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讨论了金属微观结构研究中三维重构的意义和必要性,详细介绍了基于连续切片的三维重构方法的两个主要部分:图像获取和数据处理.指出了图像获取中的主要问题与解决办法,讨论了图像数据处理中的各种方法和软件工具.最后介绍了基于连续切片的三维重构技术的最新进展,并总结了基于连续切片的三维重构方法推广应用的关键.

参考文献

[1] 刘国权.材料三维显微组织形态研究:进展与展望[J].CT理论与应用研究,2000(z1):148-153.
[2] Bhandari Y;Sarkar S;Groeber M;Uchic MD;Dimiduk DM;Ghosh S .3D polycrystalline microstructure reconstruction from FIB generated serial sections for FE analysis[J].Computational Materials Science,2007(2):222-235.
[3] 赵秀阳 .复合材料三维重构及力学性能的有限元数值分析[D].山东大学,2006.
[4] 栾军华,刘国权,王浩.纯Fe试样中晶粒的三维可视化重建[J].金属学报,2011(01):69-73.
[5] 骆良顺,王新,苏彦庆,李新中,郭景杰,傅恒志.基于连续切片的三维重构技术在材料凝固组织研究中的应用[J].材料导报,2010(09):1-5,10.
[6] WuKM;InagawaY;EnomotoM .Three-dimensionalmorphologyofferriteformedinassociationwithinclusionsinlow-carbonsteel[J].MaterCharact,2004,52:121.
[7] WilsonJR;CroninJS;BarnettSA et al.Measurementofthree-dimensionalmicrostructureinaIiCoO2positiveelectrode[J].J Power Sources,2011,196:3443.
[8] Michael Groeber;Somnath Ghosh;Michael D. Uchic .A framework for automated analysis and simulation of 3D polycrystalline microstructures/Part 1: Statistical characterization[J].Acta Materialia,2008(6):1257-1273.
[9] N. Chawla;V. V. Ganesh;B. Wunsch .Three-dimensional (3D) microstructure visualization and finite element modeling of the mechanical behavior of SiC particle reinforced aluminum composites[J].Scripta materialia,2004(2):161-165.
[10] Kral MV.;Spanos G. .Three-dimensional analysis of proeutectoid cementite precipitates[J].Acta materialia,1999(2):711-724.
[11] Zhao XY;Yin YS;Yang B;Zhu BH;Tian XF .Level set and geodesic active contours based measurement of material removal between serial sections[J].Computational Materials Science,2007(4):857-861.
[12] Caselles V.;Sapiro G.;Kimmel R. .GEODESIC ACTIVE CONTOURS[J].International Journal of Computer Vision,1997(1):61-79.
[13] H. SINGH;A.M. GOKHALE .Visualization of three-dimensional microstructures[J].Materials Characterization,2005(1):21-29.
[14] 张凯,张艳,胡仲军,季刚,孙飞.电子显微三维重构技术发展与前沿[J].生物物理学报,2010(07):533-559.
[15] Faruqi AR;Henderson R .Electronic detectors for electron microscopy[J].Current Opinion in Structural Biology,2007(5):549-555.
[16] Fiala JC .Reconstruct: a free editor for serial section microscopy.[J].Journal of Microscopy,2005(Pt.1):52-61.
[17] Mishchenko Y .Automation of 3D reconstruction of neural tissue from large volume of conventional serial section transmission electron micrographs.[J].Journal of Neuroscience Methods,2009(2):276-289.
[18] 陈纯.计算机图像处理技术与算法[M].北京:清华大学出版社,2003
[19] 郭海霞,解凯.一种改进的自适应中值滤波算法[J].中国图象图形学报,2007(07):1185-1188.
[20] 王广志,丁辉,彭江,汪爱媛.序列切片图像中斑块状污染的消除[J].清华大学学报(自然科学版),2006(09):1620-1624.
[21] CastlemanKR;朱志刚.数字图像处理[M].北京:电子工业出版社,2002
[22] 刘哲星,董武,李树祥,江贵平,张煜,谢小棉.连续组织切片图像的配准[J].第一军医大学学报,2001(11):825-827.
[23] 陈伟卿,华顺刚,欧宗瑛.互信息医学图像配准中PV插值算法的改进[J].计算机工程与应用,2010(20):113-115.
[24] Fischer B;Modersitzki J .Ill-posed medicine - an introduction to image registration[J].Inverse Problems: An International Journal of Inverse Problems, Inverse Methods and Computerised Inversion of Data,2008(3):34008-1-34008-16-0.
[25] 苏秀云,裴国献,余斌,扈延龄,李谨,黄谦,李旭,张元智.基于标记点使用Photoshop和Matlab软件实现中国数字人连续断层图像的自动配准[J].南方医科大学学报,2007(12):1884-1887,1891.
[26] Mishchenko Y;Hu T;Spacek J;Mendenhall J;Harris KM;Chklovskii DB .Ultrastructural analysis of hippocampal neuropil from the connectomics perspective.[J].Neuron,2010(6):1009-1020.
[27] 章毓晋.图像分割[M].北京:科学出版社,2001
[28] 张新峰,沈兰荪.图像分割技术研究[J].电路与系统学报,2004(02):92-99.
[29] 许新征,丁世飞,史忠植,贾伟宽.图像分割的新理论和新方法[J].电子学报,2010(z1):76-82.
[30] Markelj,P.;Toma?evi?,D.;Likar,B.;Pernu?,F. .A review of 3D/2D registration methods for image-guided interventions[J].Medical image analysis,2012(3):642-661.
[31] BrownL .Asurveyofimageregistrationtechniques[J].ACMComputingSurveys,1992,24(04):325.
[32] LorensenW;ClineH .Marchingcubes:Ahighresolution3dsurfaceconstructionalgorithm[J].ACMSiggraphComputGraphics,1987,21(04):163.
[33] 赵明昌,田捷,薛健,朱珣,何晖光,吕科.医学影像处理与分析开发包MITK的设计与实现[J].软件学报,2005(04):485-495.
[34] 李恩中.医学图像处理与分析软件平台综述[J].计算机科学与探索,2008(05):467-477.
[35] Baheerathan S.;Danielsen HE.;Albregtsen F. .Registration of serial sections of mouse liver cell nuclei[J].Journal of Microscopy,1998(Pt.1):37-53.
[36] S. Ghosh;Y. Bhandari;M. Groeber .CAD-based reconstruction of 3D polycrystalline alloy microstructures from FIB generated serial sections[J].Computer-Aided Design,2008(3):293-310.
[37] R.S. Sidhu;N. Chawla .Three-dimensional microstructure characterization of Ag_3Sn intermetallics in Sn-rich solder by serial sectioning[J].Materials Characterization,2004(3):225-230.
[38] ChawlaN;SidhuR .Microstructure-basedmodelingofdeformationinSn-rich(Pb-free)solderalloys[J].LeadFreeElectronSolders,2007,18(01):175.
[39] Michael Groeber;Somnath Ghosh;Michael D. Uchic .A framework for automated analysis and simulation of 3D polycrystalline microstructures/Part 2: Synthetic structure generation[J].Acta Materialia,2008(6):1274-1287.
[40] Mangan MA.;Shiflet GJ.;Lauren PD. .THREE-DIMENSIONAL RECONSTRUCTION OF WIDMANSTATTEN PLATES IN FE-12.3MN-0.8C[J].Journal of Microscopy,1997(Pt.1):36-41.
[41] FurushiroN;YokotaH;FujisakiK.Three-dimensionalinternalinformationacquisitionsystembasedonconsecutiveprecisionmachiningandcross-sectionalobservation--Developmentofthesystemanditsapplications[A].United States of America,2008:180.
[42] Spowart JE .Automated serial sectioning for 3-D analysis of microstructures[J].Scripta materialia,2006(1):5-10.
[43] Holzer L;Muench B;Wegmann M;Gasser P;Flatt RJ .FIB-Nanotomography of particulate systems - Part I: Particle shape and topology of interfaces[J].Journal of the American Ceramic Society,2006(8):2577-2585.
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