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References

1
W.A. Woods. What's important about knowledge representation. IEEE Trans. Comp., 16:1:22-27, 1983.

2
B. Hayes-Roth. A blackboard architecture for control. Artificial Intelligence, 26:251-321, 1985.

3
M.R. Quillian. Semantic memory. In M.M. Minsky, editor, Semantic Information Processing. M.I.T. Press, 1968.

4
R.J. Brachman. On the epistemological status of semantic networks. In N.V. Findler, editor, Associative Networks: The Representation and Use in Computers, pages 3-50. New York: Academic Press Inc, 1979.

5
W.A. Woods. What's in a link: foundations for semantic networks. In D.G. Bobrow and A.M. Collins, editors, Representation and Understanding: Studies in Cognitive Science, pages 35-82. New York: Academic Press, 1975.

6
H. Niemann, G.F. Sagerer, S. Schroder, and F. Kummert. Ernest: A semantic network system for pattern understanding. IEEE Trans. Pattern Analysis and Machine Intelligence, 12:9:883-905, 1990.

7
M. Minsky. A framework for representing knowledge. In P.H. Winston, editor, The Psychology of Computer Vision. New York: McGraw-Hill Book Company, 1975.

8
J.A. Newell and E. Sokolowska. Model based recognition of CT scan images. In R. Salamon, B. Blum, and M. Jorgensen, editors, MEDINFO 86, pages 619-623. B.V. (North-Holland): Elsevier Science Publishers, 1986.

9
G. Banks, J.K. Vries, and S. McLinden. Radiologic automated diagnosis (RAD). In Proc. 10th Annual Symposium of Computer Applications in Medical care. Computer Society of IEEE. (New York), 1986.

10
W. Menhardt. Image analysis using iconic fuzzy sets. In Proc. ECAI, 1988.

11
S. Dellepiane, C. Regazzoni, S.B. Serpico, and G. Vernazza. Extension of IBIS for 3D organ recognition in NMR multislices. Patt. Recog. Lett., 8:65-72, 1988.

12
C. Shiuh-Yung, L. Wei-Chung, and C. Chin-Tu. An expert vision system for medical image segmentation. In Proc SPIE Medical Imaging III : Image Processing, Newport Beach, CA, 1989.

13
S.P. Raya. Low-level segmentation of 3-D magnetic resonance brain images: a rule-based system. IEEE Trans. Med. Imag., 3:327-337, 1990.

14
A.C. Evans, C. Beil, S. Marret, C.J. Thompson, and A. Hakim. Anatomical-functional correlation using an adjustable MRI-based region of interest atlas with positron emission tomography. J. Cereb. Blood Flow Metabol, 4:513-530, 1988.

15
E. Lehmann, D.J. Hawkes, D.L.G. Hill, C. Bird, G.P. Robinson, A.C.F. Colchester, and M.N. Maisey. Computer aided interpretation of neurological SPECT images using an MRI derived 3D neuro-anatomic atlas. Medical Informatics, 16:151-166, 1991.

16
H.H. Zachman. Interpretation of cranial MR images using a digital atlas of the human head. In H.H. Lemke, M.L. Rhodes, C.C. Jaffe, and R. Felix, editors, Proc. Computer Assisted Radiology, pages 283-288, Berlin, 1991. Springer-Verlag.

17
K.H. Hohne, A. Pommert, M. Riemer, Th. Schiemann, R. Schubert, and U. Tiede. Framework for the generation of 3D anatomical atlases. In R.A. Robb, editor, Proc Visualization in Biomedical Computing, pages 510-520, Chapel Hill, NC., 1992.

18
R. Nieuwenhuys, J. Voogd, and Chr. van Huijzen. The Human Central Nervous System. A Synopsis and Atlas. Heidelberg: Springer-Verlag, 1978.

19
J. Talairach and P. Tournoux. Co-Planar Stereotaxic Atlas of the Human Brain. New York: Thieme Medical Publishers Inc., 1988.

20
G.P. Robinson, A.C.F. Colchester, and L.D. Griffin. A hierarchical shape representation for for use in anatomical object recognition. In R.S. Achcrya, C.J. Cogswell, and D.B. Goldof, editors, Proc. SPIE Biomedical Image Processing III and 3-D Microscopy, pages 594-605, San Jose, 1992.

21
J. DeKleer. An assumption-based TMS. Artificial Intelligence, 28 2, 1986.

22
G.P. Robinson, A.C.F. Colchester, and L.D. Griffin. The Delaunay/Voronoi selection graph: a method for extracting shape information from 2-d dot-patterns with an extension to 3-D. In D. Hogg, editor, Proc British Machine Vision Conference, pages 19-28. Springer-Verlag, 1992.


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Fri Jul 15 14:54:31 EDT 1994