參考文獻 |
[1]Adams, D., and Quigley, S., “Hip resurfacing: Past, present and future,” Journal of Orthopaedic Nursing, Vol. 9, Issue 2, pp.87-94, 2005.
[2]BrainLAB, Germany, http://www.brainlab.com/.
[3]Cerveri, P., Forlani, C., Borghese, N.A., et. al., “Distortion correction for x-ray image intensifiers: local unwarping polynomials and RBF neural networks,” Medical Physics, Vol. 29, Issue 8, pp. 1759-1771, 2002.
[4]Eastaugh-Waring, S.J., Seenath, S., Learmonth, D.S., et. al. “The practical limitations of resurfacing hip arthroplasty,” The Journal of Arthroplasty, Vol. 21, Issue 1, pp. 18-22, January 2006.
[5]Ebied, A., and Journeaux, S., “(iv) Metal-on-metal hip resurfacing,” Current Orthopaedics, Vol. 16, Issue 6, pp.420-425, 2002.
[6]Euler, E., Wirth, S., Pfeifer, K.J., et. al., “3D-imaging with an isocentric mobile C-arm,” Siemens electromedica, Vol. 68, No. 2, pp. 122-126, 2000.
[7]Fitzgibbon, A.W., Pilu, M., and Fisher, R.B., “Direct least-squares fitting of ellipses,” IEEE Transactions on Pattern Analysis and Machine Intelligence, Vol. 21, No.5, pp. 476-480, May 1999.
[8]Gronenschild, E., Roos, J., and Mulkens, G., “The accuracy and reproducibility of an algorithm to correct for geometric image distortion in quantitative coronary angiography,” IEEE Conference Proceedings, Computers in Cardiology, pp. 105-108, 1996.
[9]Hofstetter, R., Slomczykowski, M., Krettek, C., et. al., “Computer-assisted fluoroscopy-based reduction of femoral fractures and antetorsion correction,” Computer Aided Surgery, Vol. 5, pp. 311-25, 2000.
[10]Hofstetter, R., Slomczykowski, M., Sati, M., et. al., “Fluoroscopy as an imaging means for computer-assisted surgical navigation,” Computer Aided Surgery, pp. 65-76, 1999.
[11]Ian, D., and Learmonth, “(ii) Conservative hip implants,” Current Orthopaedics, Vol. 19, Issue 4, pp.255-262, 2005.
[12]Joskowicz, L., Milgrom, C., Simkin, A., et. al., “FRACAS: a system for computer-aided image-guided long bone fracture surgery,” Computer Aided Surgery, pp. 271-288, 1998.
[13]Karlsson, K.M., Sernbo, I., Obrant, K.J., et. al.,“Femoral neck geometry and radiographic signs of osteoporosis as predictors of hip fracture,” Bone, Vol. 18, Issue 4, pp. 327-330, April 1996.
[14]Livyatan, H., Yaniv, Z., and Joskowicz, L., “Robust automatic C-arm calibration for fluoroscopy-based navigation: a practical approach,” Proc. 5th Int. Conf. on Medical Image Computing and Computer-Aided Intervention, Vol. 2489, pp. 60-68, Tokyo, Japan, September 2002.
[15]Mahaisavariya, B., Sitthiseripratip, K., Tongdee, T., et.al., “Morphological study of the proximal femur: a new method of geometrical assessment using 3-dimensional reverse engineering,” Medical Engineering and Physics, Vol. 24, pp. 617-622, 2002.
[16]Otte, M., Yalçinkaya, L., and Kozlowski, J., “Structural design of the femoral neck in primates,” Journal of Human Evolution, Vol. 34, Issue 4, pp. 413-431, April 1998.
[17]Paul, E., Beaulé, and Harlan, C., “Hemiresurfacing arthroplasty for osteonecrosis of the hip,” Operative Techniques in Orthopaedics, Vol. 10, Issue 2, pp. 123-132, April 2000.
[18]Paul, E., and Beaulé, “A soft tissue-sparing approach to surface arthroplasty of the hip,” Operative Techniques in Orthopaedics, Vol. 14, Issue 2, pp. 75-84, April 2004.
[19]Press, W.H., Flannery, B.P., Teukolsky, S.A., et. al., “Numerical recipes in C : the art of scientific computing,” Cambridge University Press, Ch. 10, 1988.
[20]Weisstein, and Eric W., "Cubic formula," from MathWorld--A Wolfram Web Resource, http://mathworld.wolfram.com/CubicFormula.html/.
[21]Wright Medical Technology Inc., USA, http://www.wmt.com/
[22]Yaniv, Z., Joskowicz, L., Simkin, A., et. al., “Fluoroscopic image processing for computer-aided orthopaedic surgery,” 1st Int. Conf. on Medical Computing and Computer-Assisted Intervention, Vol. 1496, pp. 29, Boston, Massachusetts, USA, 1998.
[23]Zheng, G., Marx, A., Langlotz, U., et. al., “A hybrid CT-free navigation system for total hip arthroplasty,” Computer Aided Surgery, Vol. 7, Issue 3, pp. 129-145, 2002.
[24]Zhu, Y., Phillips, R., Griffiths, J.G., et. al., “A mathematical model for acquiring a cone axis from x-ray images,” Proc. of the IEEE International Conference on Robotics and Automation, pp. 1310-1315, Detroit, Michigan, USA, May 1999.
[25]Zhu, Y., Phillips, R., Griffiths, J.G., et. al., “Recovery of distal hole axis in intramedullary nail trajectory planning,” Proceedings of the 2001 IEEE International Conference on Robotics and Automation, pp. 1561-1566, Seoul, Korea, May 2001.
[26]Ziylan, T., and Murshid, K.A., “An analysis of anatolian human femur anthropometry,” Turkish Journal of Medical Sciences, Vol. 32, Issue 3, pp. 231-235, March 2002.
[27]王舜民, “骨科手術用C-arm影像輔助規劃及導引系統,” 碩士論文, 中央大學機械工程研究所, 2002.
[28]吳吉春, 王舜民, 顏兆萱等, “骨科手術用C-arm 影像輔助導引系統之發展,” 中華民國九十二年度醫學工程年會論文集, pp. 44-45, 2003.
[29]范姜凱, “非影像式全髖關節置換手術導引系統,” 碩士論文, 中央大學機械工程研究所, 2005.
[30]楊遠祥, “應用於股骨轉子間骨折之C-arm based手術導引系統,” 碩士論文, 中央大學機械工程研究所, 2005.
[31]賴景義, 翁文德, “逆向工程理論與應用,” 全華科技圖書股份有限公司, Ch. 8, November 2004. |