Mikro-CT Çözünürlüğünün Voksel Tabanlı Model ve Analiz Sonuçları Üzerindeki Etkileri

Çalışma konusu bilimin pek çok alanında kullanılan yöntemlerin bir arada kullanılmasını gerektiren güncel bir konudur. Tıp, malzeme ve uçak-uzay teknolojilerinin kullanıldığı pek çok alanda bu konu kapsamında kullanılan metotlar kullanılmaktadır. Öncelikle iki boyutlu tomografi taraması yapılan malzemelerin, elde edilen görüntüleri piksel piksel işlenerek üç boyutlu solid model haline getirilmesi işlemi yapılmıştır. Bu işlem aşamasının ilk kısmı ağırlıklı olarak treshold segmentasyonunun ve algoritmasının kullanılmasıyla yapılmıştır. Her iki algoritmanın seçimlik parametreleri ve sonlu eleman modellerinin geometrik morfolojisi ayrıntılı olarak incelenmiştir. Sonlu elemanlar modellerinin çözümleri ABAQUS® paket programı yardımıyla yapılmıştır. Farklı çözünürlük seçimi ile elde edilen modellerin analizleri sonucunda doğal frekansın, burkulma yükünün ve statik analiz değerlerinin değiştiği gösterilmiştir

Effect of Micro-CT Resolutions of Voxel Based Model and Analysis Results

The subject of paper is a contemporary subject that requires the use of a combination of the methods used in many fields of science. Medicine, material and air space technologies used in the methods used within the scope of this paper is used in many areas. Whit in the scope of this paper the images, obtained from materials subjected to two dimensional tomography scanning, were processed pixel by pixel into three-dimensional solid model. Phase of the first part of this process required the usage of predominantly Threshold segmentation and flood fill algorithm. The optional parameters and the geometric morphology of finite element models of both algorithms were examined in detail. ABAQUS ® software program was carried out using solutions of finite element models. The change of the natural frequencies, buckling loads and the values of static analysis of the models, obtained from selection of different resolution, are presented by the results

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  • Berger M., Levine J.A., Nonato L.G., Taubin G., Silva C.T. An End-to-End Framework for Evaluating Surface Reconstruction, SCI Technical Report, No. UUSCI-2011-001, SCI Institute, University of Utah, 2011.
  • CIBC. Note: BioImage: A SCIRun Power App for processing and visualizing medical image volumes. Scientific Computing and Imaging Institute (SCI), 2011.
  • CIBC. Note: BioPSE: Problem Solving Environment for modeling, simulation, image processing, and visualization for
  • Computing and Imaging Institute (SCI), 2011. applications.
  • Scientific [4]Ha .L.K., Krueger J., Comba J., Joshi S., Silva C.T. Optimal Multi-Image Processing Streaming Framework on Parallel Heterogeneous Systems. In Proceedings of Eurographics Symposium on Parallel Graphics and Visualization 2011
  • Kim S.H., Fonov V., Piven J., Gilmore J., Vachet C., Gerig G., Collins D.L., Styner M. Spatial Intensity Prior Correction for Tissue Segmentation in the Developing human Brain. In Proceedings of IEEE ISBI 2011, pp. (to appear). 2011.
  • Valerio P., Xavier T., Hans H., Julien T. Topological Methods in Data Analysis and Visualization: Theory, Algorithms,
  • Visualization). Springer, 2011. (Mathematics
  • and [7]Rosen P., Popescu V. An Evaluation of 3-D Scene Exploration Using a Multiperspective Image Framework. In Visual Computer 27 (Computer Graphics International 2011), Vol. 27, No. 6-8, Springer-Verlag New York, Inc., pp. 209 623--632.
  • Schott M., Grosset A.V.P., Martin T., Pegoraro V., Smith S.T., Hansen C.D. Depth of Field Effects for Interactive Direct
  • Eurographics/IEEE Symposium on Visualization 2011, Vol. 30, No. 3 In Proceedings
  • of [9]Shi F., Shen D., Yap P.-T., Fan Y., Cheng J.-Z., An H., Wald L.L., Gerig G., Gilmore J.H., Lin W. CENTS: Cortical Enhanced Neonatal Tissue Segmentation. In Human Brain Mapping HBM, Vol. 32, No. 3, Note: ePub 5 Aug 2010, pp. 382--396. March, 2011
  • Griffith J. F. and Genant H. K. Bone mass and architecture determination: state of the art, J. Clin. Endocrinol.Metab.,2008,22(5), pp. 737-764 .
  • Lai Y. M., Quinb H.Y., Lee K.K.H. And Chan K.M. Regional differences in trabecular BMD and micro- architecture of weight-bearing bone under habitual gait loading--A pQCT and microCT study in human cadavers. Bone, 2005,37, pp. 274 - 282 .
  • Genant H.K.and Jiang,Y. Advanced imaging assessment of bone quality, Annals New York Academy of Sciences,2006, 1068,pp.410-428 .
  • Teo J.C.M., Si-Hoe K.M., Keh J.E.L. and Teoh S.H. Relationship between CT intensity, micro-architecture and mechanical properties of porcine vertebral cancellous bone, Clin.Biomech,2006, 21, pp.235-244.
  • Altintas G. Effect of slice thickness variation on free vibration properties of micro-ct based trabecular bone models, 2nd International Symposium on Computing in Science & Engineering, June 1-4 (2011) Kuşadası - TURKEY. [15]Altintas G., Erdem R. T. Effect of micro-ct slice intensity on natural vibration behavior of cancellous bone models based on reverse engineering techniques, Procedia Technology, 1, 2012 , 318 - 322,
  • Altintas G. Effect of slice step size on prediction of natural vibrationproperties of bone tissue. Mathematical and Computational Applications,2012, 17(3), pp. 235-243.
  • Altintas G. Node-id based non-recursive flood fill algorithm for non-uniform discrete solid domains . 2nd World
  • November23-27 Antalya, Turkey (2011). On Information
  • Technology, [18]ABAQUS® Analysis User's Manual
Celal Bayar Üniversitesi Fen Bilimleri Dergisi-Cover
  • ISSN: 1305-130X
  • Başlangıç: 2005
  • Yayıncı: Manisa Celal Bayar Üniversitesi Fen Bilimleri Enstitüsü