Page 78 - IJB-8-1
P. 78
AJ P of Bioelectrical Devices
®
7. Cantù E, Tonello S, Abate G, et al., 2018, Aerosol Jet Printed Printable Conductive Hydrogel with Crystallized PEDOT:
3D Electrochemical Sensors for Protein Detection. Sensors, PSS for Neural Tissue Engineering. Mater Sci Eng C,
18:3719. 99:582–90.
https://doi.org/10.3390/s18113719 21. Schander A, Tesmann T, Strokov S, et al., 2016, In-Vitro
8. Agarwala S, Goh GL, Yeong WY, 2017, Optimizing Aerosol Evaluation of the Long-Term Stability of PEDOT: PSS Coated
Jet Printing Process of Silver Ink for Printed Electronics. IOP Microelectrodes for Chronic Recording and Electrical Stimulation
Conf Ser Mater Sci Eng, 191:12027. of Neurons. In: Annual International Conference of the IEEE
https://doi.org/10.1088/1757-899X/191/1/012027 Engineering in Medicine and Biology Society (EMBS), p6174–7.
9. Verheecke W, van Dyck M, Vogeler F, et al., 2012, 22. Tarabella G, Vurro D, Lai S, et al., 2019, Aerosol Jet Printing
Optimizing Aerosol jet® Printing of Silver Interconnects of PEDOT: PSS for Large Area Flexible Electronics. Flex
on Polyimide Film for Embedded Electronics Applications. Printed Electron, 5:014005.
In: 8 International DAAAM Baltic Conference Industrial 23. Sun H, Wang K, Li Y, et al., 2017, Quality Modeling of Printed
th
Engingeering, p373–9. Elect ronics in Aerosol Jet Printing Based on Microscopic
10. Vogeler F, de Cuyper J, Ferraris E, 2015, Aerosol Jet Printed Images. J Manuf Sci Eng, 139:071012.
PEDOT: PSS Strain Gauges on FDM Printed Substrates. In: https://doi.org/10.1115/1.4035586
Proceedings of the 4M/ICOMM2015 Conference, p417–20. 24. Zhang H, Choi JP, Moon SK, et al., 2020, A Hybrid Multi-
11. Striani R, Stasi E, Giuri A, et al., 2021, Development of Objective Optimization of Aerosol Jet Printing Process Via
an Innovative and Green Method to Obtain Nanoparticles Response Surface Methodology. Addit Manuf, 33:101096.
in Aqueous Solution from Carbon-Based Waste Ashes. https://doi.org/10.1016/j.addma.2020.101096
Nanomaterials, 11:1–15. 25. McShan D, Ray PC, Yu H, 2014, Molecular Toxicity
https://doi.org/10.3390/nano11030577 Mechanism of Nanosilver. J Food Drug Anal, 22:116–27.
12. Parate K, Pola CC, Rangnekar SV, et al., 2020, Aerosol-jet- https://doi.org/10.1016/j.jfda.2014.01.010
Printed Graphene Electrochemical Histamine Sensors for 26. Seiti M, Ginestra P, Ferraro RM, et al., 2020, Nebulized Jet-
Food Safety Monitoring. 2D Materials, 7:034002. Based Printing of Bio-Electrical Scaffolds for Neural Tissue
13. Gibney R, Matthyssen S, Patterson J, et al., 2017, The Human Engineering: A Feasibility Study. Biofabrication, 12:025024.
Cornea as a Model Tissue for Additive Biomanufacturing: https://doi.org/10.1088/1758-5090/ab71e0
A Review. Procedia CIRP, 65:56–63. 27. Ferraro RM, Ginestra PS, Lanzi G, et al., 2017, Production of
https://doi.org/10.1016/j.procir.2017.04.040 Micro-patterned Substrates to Direct Human iPSCs-Derived
14. Gibney R, Patterson J, Ferraris E, 2021, High-Resolution Neural Stem Cells Orientation and Interaction. Procedia
Bioprinting of Recombinant Human Collagen Type III. CIRP, 65:225–30.
Polymers, 13:2973. https://doi.org/10.1016/j.procir.2017.04.044
15. Saleh MS, Hu C, Panat R, 2017, Three-Dimensional 28. Tan CP, Craighead HG, 2010, Surface Engineering and
Microarchitected Materials and Devices Using Nanoparticle Patterning Using Parylene for Biological Applications.
Assembly by Pointwise Spatial Printing. Sci Adv, 3:e1601986. Materials (Basel), 3:1803–32.
16. Zips S, Grob L, Rinklin P, et al., 2019, Fully Printed https://doi.org/10.3390/ma3031803
μ-Needle Electrode Array from Conductive Polymer Ink 29. Hsu JM, Rieth L, Normann RA, et al., 2009, Encapsulation of
for Bioelectronic Applications. ACS Appl Mater Interfaces, an Integrated Neural Interface Device with Parylene C. IEEE
11:32778–86. Trans Biomed Eng, 56:23–9.
17. Seiti M, Degryse O, Gibney R, et al., 2021, Aerosol Jet® https://doi.org/10.1109/TBME.2008.2002155
Printing of 3D Micropillars Using Multiple Materials, Solid 30. Ferraro RM, Lanzi G, Masneri S, et al., 2019, Generation of
Freeform Fabrication Symposium, 2-4 August, Virtual Event. Three iPSC Lines from Fibroblasts of a Patient with Aicardi
18. Kong YL, Gupta MK, Johnson BN, et al., 2016, 3D Printed Goutières Syndrome Mutated in TREX1. Stem Cell Res,
Bionic Nanodevices. Nano Today, 11:330–50. 41:101580.
19. Ferlauto L, D’Angelo AN, Vagni P, et al., 2018, Development and https://doi.org/10.1016/j.scr.2019.101580
Characterization of PEDOT: PSS/Alginate Soft Microelectrodes 31. Landry GM, Martin S, McMartin KE, 2011, Diglycolic acid is
for Application in Neuroprosthetics. Front Neurosci, 12:648. the Nephrotoxic Metabolite in Diethylene Glycol Poisoning
20. Heo DN, Lee SJ, Timsina R, et al., 2019, Development of 3D Inducing Necrosis in Human Proximal Tubule Cells In Vitro.
64 International Journal of Bioprinting (2022)–Volume 8, Issue 1

