Computerized craniofacial reconstruction using CT-derived implicit surface representations.

In forensic craniofacial reconstruction, facial features of an unknown individual are estimated from an unidentified skull, based on a mixture of experimentally obtained guidelines on the relationship between soft tissues and the underlying skeleton. In this paper, we investigate the possibility of using full 3D cross-sectional CT images for establishing a reference database of densely sampled distances between the external surfaces of the skull and head for automated craniofacial reconstruction. For each CT image in the reference database, the hard tissue (skull) and soft tissue (head) volumes are automatically segmented and transformed into signed distance transform (sDT) images, representing for each voxel in this image the Euclidean distance to the closest point on the skull and head surface, respectively, distances being positive (negative) for voxels inside (outside) the skull/head. Multiple craniofacial reconstructions are obtained by first warping each reference skull sDT maps to the target skull sDT using a B-spline based free form deformation algorithm and subsequently applying these warps to the reference head sDT maps. A single reconstruction of the target head surface is defined as the zero level set of the arithmetic average of all warped reference head sDT maps, but other reconstructions are possible, biasing the result to subject specific attributes (age, BMI, gender). Both qualitative and quantitative tests (measuring the similarity between the 3D reconstructed and corresponding original head surface) on a small (N = 20) database are presented to proof the validity of the concept.

[1]  Mark W. Jones,et al.  Facial Reconstruction Using Volumetric Data , 2001, VMV.

[2]  Jikun Wei,et al.  X-ray CT high-density artefact suppression in the presence of bones , 2004, Physics in medicine and biology.

[3]  G Quatrehomme,et al.  A fully three-dimensional method for facial reconstruction based on deformable models. , 1997, Journal of forensic sciences.

[4]  Miet Loubele,et al.  Semi-automated ultrasound facial soft tissue depth registration: method and validation. , 2005, Journal of forensic sciences.

[5]  John Prag,et al.  Making Faces: Using forensic and archaeological evidence , 1999 .

[6]  R Evenhouse,et al.  Computer-aided forensic facial reconstruction , 1991, Other Conferences.

[7]  Paul Suetens,et al.  Statistically deformable face models for cranio-facial reconstruction , 2005 .

[8]  R. Hartley,et al.  Face Reconstructions using Flesh Deformation Modes , 2005 .

[9]  Arthur W. Toga,et al.  Distance field manipulation of surface models , 1992, IEEE Computer Graphics and Applications.

[10]  K. Taylor Forensic Art and Illustration , 2000 .

[11]  Jae Bum Lee,et al.  Accuracy of facial soft tissue thickness measurements in personal computer-based multiplanar reconstructed computed tomographic images. , 2005, Forensic science international.

[12]  P Vanezis,et al.  Application of 3-D computer graphics for facial reconstruction and comparison with sculpting techniques. , 1989, Forensic science international.

[13]  P. Vanezis,et al.  Techniques in facial identification: Computer-aided facial reconstruction using a laser scanner and video superimposition , 2005, International Journal of Legal Medicine.

[14]  Paul Suetens,et al.  Nonrigid Image Registration Using Free-Form Deformations with a Local Rigidity Constraint , 2004, MICCAI.

[15]  S. Lele,et al.  An Invariant Approach to Statistical Analysis of Shapes , 2001 .

[16]  L A Nelson,et al.  The application of volume deformation to three-dimensional facial reconstruction: a comparison with previous techniques. , 1998, Forensic science international.

[17]  P Vanezi,et al.  Facial reconstruction using 3-D computer graphics. , 2000, Forensic science international.

[18]  Guy Marchal,et al.  Multimodality image registration by maximization of mutual information , 1997, IEEE Transactions on Medical Imaging.

[19]  Paul Suetens,et al.  Statistically deformable face models for cranio-facial reconstruction , 2005, ISPA 2005. Proceedings of the 4th International Symposium on Image and Signal Processing and Analysis, 2005..

[20]  A. Chamberlain,et al.  Forensic three-dimensional facial reconstruction: historical review and contemporary developments. , 1997, Journal of forensic sciences.

[21]  M. Marks Computer-Graphic Facial Reconstruction , 2005 .