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             terization of microfeatures in selective laser sintered drug   https://dx.doi.org/10.18063/IJB.2017.02.007
             delivery devices. Proceedings of the Institution of Mechanical   10. Shi P, Tan Y S E, Yeong W Y, et al., 2017, Hybrid three-
             Engineers, Part H: Journal of Engineering in Medicine,   dimensional (3D) bioprinting of retina equivalent for ocular
             vol.216(6): 369–383.                                research. International Journal of Bioprinting, vol.3(2): 138–
              https://dx.doi.org/10.1243/095441102321032166      146.
           5.  Khoo Z X, Teoh J E M, Liu Y, et al., 3D printing of smart   https://dx.doi.org/10.18063/IJB.2017.02.008
             materials: A review on recent progresses in 4D printing.   11. Sachan R, Jaipan P, Zhang J Y, et al., 2017, Printing ampho-
             Virtual and Physical Prototyping, vol.10(3): 103–122.   tericin B on microneedles using matrix assisted pulsed laser
              https://dx.doi.org/10.1080/17452759.2015.1097054   evaporation. International Journal of Bioprinting, vol.3(2):
           6.  Leist S K and Zhou J, 2016, Current status of 4D printing   147–157.
             technology and the potential of light-reactive smart materials   https://dx.doi.org/10.18063/IJB.2017.02.004
             as 4D printable materials. Virtual and Physical Prototyping,   12. Zhou M, Lee B H, Tan L P, 2017, A dual crosslinking strategy
             vol.11(4): 249–262.                                 to tailor rheological properties of gelatin methacryloyl.
              https://dx.doi.org/10.1080/17452759.2016.1198630
           7.  Zhang Y, 2017, Post-3D printing modification for improved   International Journal of Bioprinting, vol.3(2): 130–137.
             biomedical applications. International Journal of Bioprinting,   https://dx.doi.org/10.18063/IJB.2017.02.003
             vol.3(2): 93–99.                                  13. Dias J R, dos Santos C, Horta J, et al., 2017, A new design
              https://dx.doi.org/10.18063/IJB.2017.02.001        of an electrospinning apparatus for tissue engineering appli-
           8.  Sklare S C, Richey W L, Vinson B T, et al., 2017, Directed   cations. International Journal of Bioprinting, vol.3(2): 121–
             self-assembly software for single cell deposition. International   129.
             Journal of Bioprinting, vol.3(2): 100–108.          https://dx.doi.org/10.18063/IJB.2017.02.002
              https://dx.doi.org/10.18063/IJB.2017.02.006      14. Tran T, 2017, Book review – Standards, quality control,
           9.  Datta P, Dhawan A, Yu Y,  et al., 2017 Bioprinting of   and measurement sciences in 3D printing and additive
             osteochondral tissues: A perspective on current gaps and   manufacturing. International Journal of Bioprinting, vol.3(2):
             future trends. International Journal of Bioprinting, vol.3(2):   158.
             109–120.                                            https://dx.doi.org/10.18063/IJB.2017.02.009





































           92                          International Journal of Bioprinting (2017)–Volume 3, Issue 2
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