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* Savonen, B., Gershenson, J., Bow, J.K.; Pearce, J.M., [https://journals.lww.com/jpojournal/Abstract/publishahead/Open_Source_Three_Dimensional_Printable_Infant.99895.aspx Open-Source Three-Dimensional Printable Infant Clubfoot Brace], ''Journal of Prosthetics and Orthotics'': February 26, 2019. doi: 10.1097/JPO.0000000000000257 [ open access]
* Savonen, B., Gershenson, J., Bow, J.K.; Pearce, J.M., [https://journals.lww.com/jpojournal/Abstract/publishahead/Open_Source_Three_Dimensional_Printable_Infant.99895.aspx Open-Source Three-Dimensional Printable Infant Clubfoot Brace], ''Journal of Prosthetics and Orthotics'': February 26, 2019. doi: 10.1097/JPO.0000000000000257 [ open access]
* Nemanja Jovanovic, Joshua M. Pearce, Jaan Praks. Design and Testing of a Low-Cost, Open Source, 3-D Printed Air-Bearing-Based Attitude Simulator for CubeSat Satellites. ''Journal of Small Satellites'' Vol. 8, No. 2, pp. 859–880 (2019). https://jossonline.com/letters/design-and-testing-of-a-low-cost-open-source-3-d-printed-air-bearing-based-attitude-simulator-for-cubesat-satellites/ [https://www.academia.edu/40617060/Design_and_Testing_of_a_Low-Cost_Open_Source_3-D_Printed_Air-Bearing-Based_Attitude_Simulator_for_CubeSat_Satellites open access]
* Arvind Ravindran, Sean Scsavnicki, Walker Nelson, Peter Gorecki, Jacob Franz, Shane Oberloier, Theresa K. Meyer, Andrew R. Barnard and Joshua M. Pearce. Open Source Waste Plastic Granulator. ''Technologies'' 2019, 7(4), 74; https://doi.org/10.3390/technologies7040074  [https://www.academia.edu/40616354/Open_Source_Waste_Plastic_Granulator open access]
* Ville Klar, Joshua M.Pearce, Pyry Kärki, Petri Kuosmanen, [https://www.sciencedirect.com/science/article/pii/S2468067219300471 Ystruder: open source multifunction extruder with sensing and monitoring capabilities]. ''HardwareX'' 6 (2019) e00080. https://doi.org/10.1016/j.ohx.2019.e00080 [https://www.academia.edu/40555880/Ystruder_Open_source_multifunction_extruder_with_sensing_and_monitoring_capabilities open access]
* Salil S. Sule, Aliaksei L. Petsiuk and Joshua M. Pearce. [https://www.mdpi.com/2410-390X/3/2/30 Open Source Completely 3-D Printable Centrifuge]. ''Instruments'' 2019, 3(2), 30; https://doi.org/10.3390/instruments3020030  [https://www.academia.edu/39224759/Open_Source_Completely_3-D_Printable_Centrifuge open access]
* Salil S. Sule, Aliaksei L. Petsiuk and Joshua M. Pearce. [https://www.mdpi.com/2410-390X/3/2/30 Open Source Completely 3-D Printable Centrifuge]. ''Instruments'' 2019, 3(2), 30; https://doi.org/10.3390/instruments3020030  [https://www.academia.edu/39224759/Open_Source_Completely_3-D_Printable_Centrifuge open access]
* Dennis J. Byard, Aubrey L. Woern,  Robert B. Oakley, Matthew J. Fiedler, Samantha L. Snabes, and Joshua M. Pearce. [https://www.sciencedirect.com/science/article/pii/S221486041830695X Green Fab Lab Applications of Large-Area Waste Polymer-based Additive Manufacturing]. ''Additive Manufacturing'' 27, (2019), pp. 515-525. https://doi.org/10.1016/j.addma.2019.03.006 [https://www.academia.edu/38728877/Fab_Lab_Applications_of_Large-Area_Waste_Polymer-based_Additive_Manufacturing open access]
* Dennis J. Byard, Aubrey L. Woern,  Robert B. Oakley, Matthew J. Fiedler, Samantha L. Snabes, and Joshua M. Pearce. [https://www.sciencedirect.com/science/article/pii/S221486041830695X Green Fab Lab Applications of Large-Area Waste Polymer-based Additive Manufacturing]. ''Additive Manufacturing'' 27, (2019), pp. 515-525. https://doi.org/10.1016/j.addma.2019.03.006 [https://www.academia.edu/38728877/Fab_Lab_Applications_of_Large-Area_Waste_Polymer-based_Additive_Manufacturing open access]
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* Yuenyong Nilsiam and Joshua M. Pearce. [http://www.mdpi.com/2411-9660/1/1/5 Free and Open Source 3-D Model Customizer for Websites to Democratize Design with OpenSCAD]. ''Designs'' 2017, 1(1), 5; doi:10.3390/designs1010005 [https://www.academia.edu/33772407/Free_and_Open_Source_3-D_Model_Customizer_for_Websites_to_Democratize_Design_with_OpenSCAD open free access]
* Yuenyong Nilsiam and Joshua M. Pearce. [http://www.mdpi.com/2411-9660/1/1/5 Free and Open Source 3-D Model Customizer for Websites to Democratize Design with OpenSCAD]. ''Designs'' 2017, 1(1), 5; doi:10.3390/designs1010005 [https://www.academia.edu/33772407/Free_and_Open_Source_3-D_Model_Customizer_for_Websites_to_Democratize_Design_with_OpenSCAD open free access]
* John J. Laureto and Joshua M. Pearce. [http://dx.doi.org/10.3390/technologies5020036 Open Source Multi-Head 3D Printer for Polymer-Metal Composite Component Manufacturing] ''Technologies'' 2017, 5(2), 36; doi:10.3390/technologies5020036 [https://www.academia.edu/33578996/Open_Source_Multi-Head_3D_Printer_for_Polymer-Metal_Composite_Component_Manufacturing open access]
* John J. Laureto and Joshua M. Pearce. [http://dx.doi.org/10.3390/technologies5020036 Open Source Multi-Head 3D Printer for Polymer-Metal Composite Component Manufacturing] ''Technologies'' 2017, 5(2), 36; doi:10.3390/technologies5020036 [https://www.academia.edu/33578996/Open_Source_Multi-Head_3D_Printer_for_Polymer-Metal_Composite_Component_Manufacturing open access]
* Tanikella, N.G., Savonen, B., Gershenson, J., Pearce, J.M. (2017). [https://www.ewb.org.au/jhe/index.php/jhe/article/view/60 Viability of Distributed Manufacturing of Bicycle Components with 3-D Printing: CEN Standardized Polylactic Acid Pedal Testing]. ''Journal of Humanitarian Engineering'' 5(1), 8-17. [https://www.academia.edu/33287420/Viability_of_Distributed_Manufacturing_of_Bicycle_Components_with_3-D_Printing_CEN_Standardized_Polylactic_Acid_Pedal_Testing open access]
* Tanikella, N.G., Savonen, B., Gershenson, J., Pearce, J.M. (2017). [https://www.ewb.org.au/jhe/index.php/jhe/article/view/60 Viability of Distributed Manufacturing of Bicycle Components with 3-D Printing: CEN Standardized Polylactic Acid Pedal Testing]. ''Journal of Humanitarian Engineering'' 5(1), 8-17. https://doi.org/10.36479/jhe.v5i1.60  [https://www.academia.edu/33287420/Viability_of_Distributed_Manufacturing_of_Bicycle_Components_with_3-D_Printing_CEN_Standardized_Polylactic_Acid_Pedal_Testing open access]
* Michaels, R.E. and Pearce, J.M. (2017). 3-D printing open-source click-MUAC bands for identification of malnutrition. ''Public Health Nutrition'', 20(11), pp. 2063-2066. https://doi.org/10.1017/S1368980017000726 [https://www.academia.edu/32956588/3-D_Printing_Open_Source_Click-MUAC_Bands_for_Identification_of_Malnutrition open access]
* Michaels, R.E. and Pearce, J.M. (2017). 3-D printing open-source click-MUAC bands for identification of malnutrition. ''Public Health Nutrition'', 20(11), pp. 2063-2066. https://doi.org/10.1017/S1368980017000726 [https://www.academia.edu/32956588/3-D_Printing_Open_Source_Click-MUAC_Bands_for_Identification_of_Malnutrition open access]
* Maria Frangos, Joshua Pearce, Tiberius Brastaviceanu, Ahmed Akl Mahmoud, Abran Khalid. (2017). "Democratising design in scientific innovation: application of an open value network to open source hardware design". ''Cumulus Working Papers 33/16: Cumulus Hong Kong 2016 – Open Design for E-very-thing'', pp. 333-339.[https://www.academia.edu/32745011/Democratising_design_in_scientific_innovation_application_of_an_open_value_network_to_open_source_hardware_design open access]
* Maria Frangos, Joshua Pearce, Tiberius Brastaviceanu, Ahmed Akl Mahmoud, Abran Khalid. (2017). "Democratising design in scientific innovation: application of an open value network to open source hardware design". ''Cumulus Working Papers 33/16: Cumulus Hong Kong 2016 – Open Design for E-very-thing'', pp. 333-339.[https://www.academia.edu/32745011/Democratising_design_in_scientific_innovation_application_of_an_open_value_network_to_open_source_hardware_design open access]

Revision as of 12:07, 19 October 2019

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Open-Source Lab: How to Build Your Own Hardware and Reduce Research Costs by Joshua M. Pearce

2014


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