Nonrigid 3D Medical Image Registration and Fusion Based on Deformable Models
المؤلفون المشاركون
Wybranski, Christian
Ricke, Jens
Liu, Peng
Lüdemann, Lutz
Eberhardt, Benjamin
المصدر
Computational and Mathematical Methods in Medicine
العدد
المجلد 2013، العدد 2013 (31 ديسمبر/كانون الأول 2013)، ص ص. 1-10، 10ص.
الناشر
Hindawi Publishing Corporation
تاريخ النشر
2013-04-18
دولة النشر
مصر
عدد الصفحات
10
التخصصات الرئيسية
الملخص EN
For coregistration of medical images, rigid methods often fail to provide enough freedom, while reliable elastic methods are available clinically for special applications only.
The number of degrees of freedom of elastic models must be reduced for use in the clinical setting to archive a reliable result.
We propose a novel geometry-based method of nonrigid 3D medical image registration and fusion.
The proposed method uses a 3D surface-based deformable model as guidance.
In our twofold approach, the deformable mesh from one of the images is first applied to the boundary of the object to be registered.
Thereafter, the non-rigid volume deformation vector field needed for registration and fusion inside of the region of interest (ROI) described by the active surface is inferred from the displacement of the surface mesh points.
The method was validated using clinical images of a quasirigid organ (kidney) and of an elastic organ (liver).
The reduction in standard deviation of the image intensity difference between reference image and model was used as a measure of performance.
Landmarks placed at vessel bifurcations in the liver were used as a gold standard for evaluating registration results for the elastic liver.
Our registration method was compared with affine registration using mutual information applied to the quasi-rigid kidney.
The new method achieved 15.11% better quality with a high confidence level of 99% for rigid registration.
However, when applied to the quasi-elastic liver, the method has an averaged landmark dislocation of 4.32 mm.
In contrast, affine registration of extracted livers yields a significantly (P=0.000001) smaller dislocation of 3.26 mm.
In conclusion, our validation shows that the novel approach is applicable in cases where internal deformation is not crucial, but it has limitations in cases where internal displacement must also be taken into account.
نمط استشهاد جمعية علماء النفس الأمريكية (APA)
Liu, Peng& Eberhardt, Benjamin& Wybranski, Christian& Ricke, Jens& Lüdemann, Lutz. 2013. Nonrigid 3D Medical Image Registration and Fusion Based on Deformable Models. Computational and Mathematical Methods in Medicine،Vol. 2013, no. 2013, pp.1-10.
https://search.emarefa.net/detail/BIM-506638
نمط استشهاد الجمعية الأمريكية للغات الحديثة (MLA)
Liu, Peng…[et al.]. Nonrigid 3D Medical Image Registration and Fusion Based on Deformable Models. Computational and Mathematical Methods in Medicine No. 2013 (2013), pp.1-10.
https://search.emarefa.net/detail/BIM-506638
نمط استشهاد الجمعية الطبية الأمريكية (AMA)
Liu, Peng& Eberhardt, Benjamin& Wybranski, Christian& Ricke, Jens& Lüdemann, Lutz. Nonrigid 3D Medical Image Registration and Fusion Based on Deformable Models. Computational and Mathematical Methods in Medicine. 2013. Vol. 2013, no. 2013, pp.1-10.
https://search.emarefa.net/detail/BIM-506638
نوع البيانات
مقالات
لغة النص
الإنجليزية
الملاحظات
Includes bibliographical references
رقم السجل
BIM-506638
قاعدة معامل التأثير والاستشهادات المرجعية العربي "ارسيف Arcif"
أضخم قاعدة بيانات عربية للاستشهادات المرجعية للمجلات العلمية المحكمة الصادرة في العالم العربي
تقوم هذه الخدمة بالتحقق من التشابه أو الانتحال في الأبحاث والمقالات العلمية والأطروحات الجامعية والكتب والأبحاث باللغة العربية، وتحديد درجة التشابه أو أصالة الأعمال البحثية وحماية ملكيتها الفكرية. تعرف اكثر