Customised spectacles using 3-D printing technology

被引:17
作者
Ayyildiz, Onder [1 ]
机构
[1] Gulhane Training & Res Hosp, Dept Ophthalmol, Ankara, Turkey
关键词
3-D printing; customised spectacles; facial deformities; frame fitting; 3D; CHILDREN;
D O I
10.1111/cxo.12795
中图分类号
R77 [眼科学];
学科分类号
100212 ;
摘要
BackgroundMethodsThis study describes a novel method of customised spectacles prototyping and manufacturing using 3-D printing technology. The procedure for manufacturing customised spectacles using 3-D printing technology in this study involved five steps: patient selection; using surface topography; 3-D printing of the phantom model; 3-D designing of the spectacles; and 3-D printing of the spectacles. ResultsConclusionThe effective time required for 3-D printing of the spectacles was 14 hours. The spectacles weighed 7 g and cost AUD$160.00 to manufacture. The 3-D-printed spectacles fitted precisely onto the face and were considered to provide a superior outcome compared with conventional spectacles. Optical alignment, good comfort and acceptable cosmesis were achieved. One month after fitting, the 3-D-printed spectacles did not require further changes. Customised 3-D-printed spectacles can be created and applied to patients with facial deformities. As a significant number of children with facial deformities require spectacle correction, it is essential to provide appropriate frames for this group of patients. The 3-D printing technique described herein may offer a novel and accurate option. It is also feasible to produce customised spectacles with this technique to maximise optical alignment and comfort in special conditions.
引用
收藏
页码:747 / 751
页数:5
相关论文
共 16 条
  • [1] 3D printed reproductions of orbital dissections: a novel mode of visualising anatomy for trainees in ophthalmology or optometry
    Adams, Justin W.
    Paxton, Lisa
    Dawes, Kathryn
    Burlak, Kateryna
    Quayle, Michelle
    McMenamin, Paul G.
    [J]. BRITISH JOURNAL OF OPHTHALMOLOGY, 2015, 99 (09) : 1162 - 1167
  • [2] Alam MS, 2017, ORBIT, V36, P223, DOI 10.1080/01676830.2017.1287741
  • [3] Bhallil S, 2010, Bull Soc Belge Ophtalmol, P17
  • [4] Production of an intraocular device using 3D printing: an innovative technology for ophthalmology
    Canabrava, Sergio
    Diniz-Filho, Alberto
    Schor, Paulo
    Fagundes, David F.
    Lopes, Amanda
    Batista, Wagner D.
    [J]. ARQUIVOS BRASILEIROS DE OFTALMOLOGIA, 2015, 78 (06) : 393 - 394
  • [5] Tele-manufactured affordable smartphone anterior segment microscope
    Chiong, Hong Sheng
    Fang, Joyce Lim Luann
    Wilson, Graham
    [J]. CLINICAL AND EXPERIMENTAL OPTOMETRY, 2016, 99 (06) : 580 - 582
  • [6] Eng Helen, 2002, Clin Exp Optom, V85, P389
  • [7] 3D Printing: Print the Future of Ophthalmology
    Huang, Wenbin
    Zhang, Xiulan
    [J]. INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2014, 55 (08) : 5380 - 5381
  • [8] Cranial reconstruction: 3D biomodel and custom-built implant created using additive manufacturing
    Jardini, Andre Luiz
    Larosa, Maria Aparecida
    Maciel Filho, Rubens
    de Carvalho Zavaglia, Ceclia Amelia
    Bernardes, Luis Fernando
    Lambert, Carlos Salles
    Calderoni, Davi Reis
    Kharmandayan, Paulo
    [J]. JOURNAL OF CRANIO-MAXILLOFACIAL SURGERY, 2014, 42 (08) : 1877 - 1884
  • [9] POSTOPERATIVE REMOVAL OF PRESSURE BY EYEGLASSES
    KAPLAN, R
    [J]. DERMATOLOGIC SURGERY, 1995, 21 (11) : 995 - 995
  • [10] Quality of spectacles in school going children in urban India
    Kothari, Mihir
    Darji, Krishna B.
    Bhagat, Prashant
    [J]. INDIAN JOURNAL OF OPHTHALMOLOGY, 2014, 62 (02) : 258 - 259