模拟口腔环境下温控型镍钛弓丝力学性能的实验研究(4)
第1页 |
参见附件。
wires in three-point bending. Part Ⅰ: The effect of temperature
[J]. Eur J Orthod, 1994, 16(5):409-419.
[10] Kapila S, Sachdeva R. Mechanical properties and clinical appli-
cations of orthodontic wires[J]. Am J Orthod Dentofacial Orthop,1989, 96(2):100-109.
[11] Wilkinson PD, Dysart PS, Hood JA, et al. Load-deflection charac-
teristics of superelastic nickel-titanium orthodontic wires[J]. Am J
Orthod Dentofacial Orthop, 2002, 121(5):483-495.
[12] Moore RJ, Watts JT, Hood JA, et al. Intra-oral temperature varia-
tion over 24 hours[J]. Eur J Orthod, 1999, 21(3):249-261.
[13] Sakima MT, Dalstra M, Melsen B. How does temperature influence
the properties of rectangular nickel-titanium wires[J]. Eur J Orthod,2006, 28(3):282-291.
[14] 罗颂椒. 当代实用口腔正畸技术与理论[M]. 北京: 北京医科大
学中国协和医科大学联合出版社, 1995:143-149.
Luo Songjiao. Contemporary orthodontic practical techniques and
theory[M]. Beijing: Beijing Medical University and China Union
Medical College Joint Press, 1995:143-149.
[15] 王从曾. 材料性能学[M]. 北京: 北京工业大学出版社, 2001:12.
Wang Congzeng. Material properties[M]. Beijing: Beijing University
of Technology Press, 2001:12.
[16] Melsen B. Biological reaction of alveolar bone to orthodontic tooth
movement[J]. Angle Orthod, 1999, 69(2):151-158.
(本文编辑 吴爱华)
您现在查看是摘要介绍页,详见PDF附件。