Page 570 - IJB-10-2
P. 570
International Journal of Bioprinting OLS design for distal femur osseointegration
dental implants in low quality (type-IV) bone: an overview. doi: 10.1016/j.hcl.2012.08.001
J Funct Biomater. 2018;9(1):7. 59. Harwood PJ, Ferguson DO, Michael ALR. An update
doi: 10.3390/jfb9010007
on fracture healing and non-union. Orthop Trauma.
54. Maskery I, Aremu AO, Parry L, Wildman RD, Tuck CJ, 2010;24(1):9-23.
Ashcroft IA. Effective design and simulation of surface- doi: 10.1016/j.mporth.2009.12.004
based lattice structures featuring volume fraction and cell 60. Fisher DM, Wong JM, Crowley C, Khan WS. Preclinical and
type grading. Mater Des. 2018;155:220-232. clinical studies on the use of growth factors for bone repair: a
doi: 10.1016/j.matdes.2018.05.058
systematic review. Curr Stem Cell Res Ther. 2013;8(3):260-268.
55. Sahu NK, Andhare AB. Multiobjective optimization for doi: 10.2174/1574888x11308030011
improving machinability of Ti-6Al-4V using RSM and 61. Kharmanda G. Integration of multi-objective structural
advanced algorithms. J Comput Des Eng. 2019;6(1):1-12. optimization into cementless hip prosthesis design:
doi: 10.1016/j.jcde.2018.04.004
improved Austin-Moore model. Comput Methods Biomech
56. Taniguchi N, Fujibayashi S, Takemoto M, et al. Effect of Biomed Engin. 2016;19(14):1557-1566.
pore size on bone ingrowth into porous titanium implants doi: 10.1080/10255842.2016.1170121
fabricated by additive manufacturing: an in vivo experiment. 62. Xiong YZ, Gao RN, Zhang H, Dong LL, Li JT, Li X. Rationally
Mater Sci Eng C Mater Biol Appl. 2016;59:690-701. designed functionally graded porous Ti6Al4V scaffolds with
doi: 10.1016/j.jmst.2020.05.056
high strength and toughness built via selective laser melting
57. Roberts TT, Rosenbaum AJ. Bone grafts, bone substitutes for load-bearing orthopedic applications. J Mech Behav
and orthobiologics: the bridge between basic science and Biomed Mater. 2020;104:103673.
clinical advancements in fracture healing. Organogenesis. doi: 10.1016/j.jmbbm.2020.103673
2012;8(4):114-124. 63. Ding W. Opportunities and challenges for the biodegradable
doi: 10.4161/org.23306
magnesium alloys as next-generation biomaterials. Regen
58. Bhatt RA, Rozental TD. Bone graft substitutes. Hand Clin. Biomater. 2016;3(2):79-86.
2012;28(4):457-468. doi: 10.1093/rb/rbw003
Volume 10 Issue 2 (2024) 562 doi: 10.36922/ijb.2590

