11,Kitoh M, MatsushiteY, Yamaue S, et al. The stress distribu-tion of the hydroxgaptatie implant under thevertical load by the two-dimensional finite element method. [J] J Oral Implant,1988,14:65-71.
22,Matsushinta Y, Kitoch M, Mizutak, et al. Two- dimensional FEM analysis ofhydroxyapatite implants:Diameter effect on stress distribution. [J] J Oral Implant,1990,16(1):6-11.
44,Holmes DC, Loftus JT. Influnence of bone quality on stress distribution for endosseousimplants. [J] J Oral Implanted, 1997,23:104-11.
55,Rieger MR, Adams WK, Kinzel GL, et al. A finite element survey of eleven endosseousimplants. [J] J Prosthet Dent, 1990,63(4):457-65.
66,Del Valle V, Faulkner G, Woifaardt J, et al. Craniofacial osseointegratedimplant-induced strain distribution, a numerical study. [J] Int J Oral Maxillofaceimplants, 1997 Mar-Apr,12(2):200-10.
77,Lum LB. A biomechanical rational for the use of short implants. [J] J. Oral Implant,1991,17:126-31.
88,Rieger MR, Adams WK,Kinzel GL, et al. Finite element analysis of bone-adapted andbone-bonded edosseous implants. [J] J Prosther Dent, 1989,62:426-40.
99,Baround G, Willinann G, Kreissig R. Effect of prosthesis shaft coating anpostoperative; load bearing the femur. [J] Biomed Tech Berl, 1998 Jan-Feb,43(1-2):25.
1010,Weinans H, Huiskes R, Grootenboor. Effect of fit and bonding characteristics offemoral stems on adaptive bone remodeling. [J] J Biomech Eng, 1994 NOV,116(4):393-400.