Page 538 - IJB-10-3
P. 538
International Journal of Bioprinting Mechanical responses of 3D-printed AFO
3. Palmer FB, Shapiro BK, Wachtel RC, et al. The effects of 15. Chen RK, Chen L, Tai BL, Wang Y, Shih AJ, Wensman J.
physical therapy on cerebral palsy. A controlled trial in Additive manufacturing of personalized ankle-foot orthosis.
infants with spastic diplegia. N Engl J Med. 1988;318(13): In: Proceedings of Transactions of the North American
803-808. Manufacturing Research Institution of SME (NAMRC42);
doi: 10.1056/NEJM198803313181302 2014:42.
4. Rutz E, Hofmann E, Brunner R. Preoperative botulinum 16. Cha YH, Lee KH, Ryu HJ, et al. Ankle-foot orthosis made by
toxin test injections before muscle lengthening in cerebral 3D printing technique and automated design software. Appl
palsy. J Orthop Sci. 2010;15(5):647-653. Bionics Biomech. 2017;2017:9610468.
doi: 10.1007/s00776-010-1509-6 doi: 10.1155/2017/9610468
5. De Pieri E, Romkes J, Wyss C, et al. Effect of botulinum toxin 17. Wojciechowski EA, Cheng TL, Hogan SM, et al. Replicating
A on muscle function in patients with cerebral palsy and its and redesigning ankle-foot orthoses with 3D printing for
relation to gait. Gait Posture. 2020;81:74-76. children with Charcot-Marie-Tooth disease. Gait Posture.
doi: 10.1016/j.gaitpost.2020.07.062 2022;96:73-80.
6. Lintanf M, Bourseul JS, Houx L, Lempereur M, Brochard doi: 10.1016/j.gaitpost.2022.05.006
S, Pons C. Effect of ankle-foot orthoses on gait, balance 18. Kumar R, Kumar R, Kalra P, et al. Effectiveness of 3D
and gross motor function in children with cerebral palsy: printed carbon fiber composite strut in customized ankle
a systematic review and meta-analysis. Clin Rehabil. foot orthosis. Compos Struct. 2023;324:117540.
2018;32(9):1175-1188. doi: 10.1016/j.compstruct.2023.117540
doi: 10.1177/0269215518771824
19. Teng PSP, Leong KF, Kong PW, et al. A methodology to
7. Chisholm AE, Perry SD. Ankle-foot orthotic management design and fabricate a smart brace using low-cost additive
in neuromuscular disorders: recommendations for future manufacturing. Virtual Phys Prototyp. 2022;17(4):932-947.
research. Disabil Rehabil Assist Technol. 2012;7(6):437-449. doi: 10.1080/17452759.2022.2090384
doi: 10.3109/17483107.2012.680940
20. Liu Z, Zhang P, Yan M, Xie YM, Huang GZ. Additive
8. Schröder J-H, Barandun GA, Leimer P, Morand R, Göpfert manufacturing of specific ankle-foot orthoses for persons
B, Rutz E. Novel modular walking orthosis (MOWA) for after stroke: a preliminary study based on gait analysis data.
powerful correction of gait deviations in subjects with a Math Biosci Eng. 2019;16(6):8134-8143.
neurological disease. Children. 2024;11(1). doi: 10.3934/mbe.2019410
doi: 10.3390/children11010030
21. Ranz EC, Russell Esposito E, Wilken JM, Neptune RR. The
9. Ridgewell E, Dobson F, Bach T, Baker R. A systematic review influence of passive-dynamic ankle-foot orthosis bending
to determine best practice reporting guidelines for AFO axis location on gait performance in individuals with lower-
interventions in studies involving children with cerebral limb impairments. Clin Biomech (Bristol, Avon). 2016;37:
palsy. Prosthet Orthot Int. 2010;34(2):129-145. 13-21.
doi: 10.3109/03093641003674288 doi: 10.1016/j.clinbiomech.2016.05.001
10. Mason RDF, Vuletich W. Ankle-foot orthosis. Google 22. Vasiliauskaite E, Ielapi A, De Beule M, et al. A study on the
Patents; 1981. efficacy of AFO stiffness prescriptions. Disabil Rehabil Assist
11. Zhou C, Yang Z, Li K, Ye X. Research and development of Technol. 2021;16(1):27-39.
ankle-foot orthoses: a review. Sensors. 2022;22(17). doi: 10.1080/17483107.2019.1629114
doi: 10.3390/s22176596 23. Mavroidis C, Ranky RG, Sivak ML, et al. Patient specific
12. Wickramasinghe S, Do T, Tran P. FDM-based 3D printing of ankle-foot orthoses using rapid prototyping. J Neuroeng
polymer and associated composite: a review on mechanical Rehabil. 2011;8(1):1.
properties, defects and treatments. Polymers. 2020;12(7). doi: 10.1186/1743-0003-8-1
doi: 10.3390/polym12071529 24. Totah D, Menon M, Jones-Hershinow C, Barton K, Gates
13. Silva R, Veloso A, Alves N, Fernandes C, Morouco P. A DH. The impact of ankle-foot orthosis stiffness on gait:
review of additive manufacturing studies for producing a systematic literature review. Gait Posture. 2019;69:
customized ankle-foot orthoses. Bioengineering (Basel). 101-111.
2022;9(6). doi: 10.1016/j.gaitpost.2019.01.020
doi: 10.3390/bioengineering9060249 25. Kerkum YL, Buizer AI, van den Noort JC, Becher JG,
14. Wojciechowski E, Chang AY, Balassone D, et al. Feasibility Harlaar J, Brehm MA. The effects of varying ankle foot
of designing, manufacturing and delivering 3D printed orthosis stiffness on gait in children with spastic cerebral
ankle-foot orthoses: a systematic review. J Foot Ankle Res. palsy who walk with excessive knee flexion. PLoS One.
2019;12(1):11. 2015;10(11):e0142878.
doi: 10.1186/s13047-019-0321-6 doi: 10.1371/journal.pone.0142878
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