Skip to menu Skip to content Skip to footer

2022

Journal Article

Taking the maker movement to school: A systematic review of preK-12 school-based makerspace research

Rouse, Rob and Rouse, Amy Gillespie (2022). Taking the maker movement to school: A systematic review of preK-12 school-based makerspace research. Educational Research Review, 35 100413, 1-14. doi: 10.1016/j.edurev.2021.100413

Taking the maker movement to school: A systematic review of preK-12 school-based makerspace research

2022

Journal Article

Chicken-centered design: fourth graders experience design thinking in the barnyard

Stout, Jodie, Rouse, Rob, Malesic, John and Krummeck, Katie (2022). Chicken-centered design: fourth graders experience design thinking in the barnyard. Science and Children, 37-43. doi: 10.1080/00368148.2022.12291750

Chicken-centered design: fourth graders experience design thinking in the barnyard

2020

Journal Article

Making the most of a makerspace: a three-pronged approach to integrating a makerspace into an elementary school.

Rouse, Rob, Krummeck, Katie and Uribe, Olivia (2020). Making the most of a makerspace: a three-pronged approach to integrating a makerspace into an elementary school.. Science and Children, 57 (6), 31-35.

Making the most of a makerspace: a three-pronged approach to integrating a makerspace into an elementary school.

2019

Journal Article

Third graders' use of writing to facilitate learning of engineering concepts

Gillespie Rouse, Amy and Rouse, Rob (2019). Third graders' use of writing to facilitate learning of engineering concepts. Journal of Research in Science Teaching, 56 (10), 1406-1430. doi: 10.1002/tea.21581

Third graders' use of writing to facilitate learning of engineering concepts

2017

Journal Article

Can You DIG it? Designing to Support a Robust Maker Culture in a University Makerspace

Krummeck, Katie and Rouse, Rob (2017). Can You DIG it? Designing to Support a Robust Maker Culture in a University Makerspace. International Journal of Designs for Learning, 8 (1), 98-111. doi: 10.14434/ijdl.v8i1.22702

Can You DIG it? Designing to Support a Robust Maker Culture in a University Makerspace

2024

Journal Article

Best Practices for STEM-Focused Mobile Instructional Spaces

Rouse, Rob, Fox, Jared and Dubin-Thaler, Benjamin (2024). Best Practices for STEM-Focused Mobile Instructional Spaces. Connected Science Learning, 6 (2), 82-92. doi: 10.1080/24758779.2024.2328447

Best Practices for STEM-Focused Mobile Instructional Spaces

2022

Journal Article

Using human-centered design to enhance the guest experience at the Dallas Arboretum

Rouse, Rob, Rossi, Dara and Miller, Dustin (2022). Using human-centered design to enhance the guest experience at the Dallas Arboretum. Connected Science Learning, 4 (3).

Using human-centered design to enhance the guest experience at the Dallas Arboretum

2019

Journal Article

Engineering Encounters: Authors and Engineers

Rouse, Rob and Gillespie Rouse, Amy (2019). Engineering Encounters: Authors and Engineers. Science and Children, 56 (6), 58-63. doi: 10.2505/4/sc19_056_06_58

Engineering Encounters: Authors and Engineers

2011

Journal Article

Microfluidics-based diagnostics of infectious diseases in the developing world

Chin, Curtis D., Laksanasopin, Tassaneewan, Cheung, Yuk Kee, Steinmiller, David, Linder, Vincent, Parsa, Hesam, Wang, Jennifer, Moore, Hannah, Rouse, Robert, Umviligihozo, Gisele, Karita, Etienne, Mwambarangwe, Lambert, Braunstein, Sarah L., van de Wijgert, Janneke, Sahabo, Ruben, Justman, Jessica E., El-Sadr, Wafaa and Sia, Samuel K. (2011). Microfluidics-based diagnostics of infectious diseases in the developing world. Nature Medicine, 17 (8), 1015-1020. doi: 10.1038/nm.2408

Microfluidics-based diagnostics of infectious diseases in the developing world

2008

Journal Article

Real-time microfluidic system for studying mammalian cells in 3D microenvironments

Lii, Jerry, Hsu, Wern-Jir, Parsa, Hesam, Das, Anshu, Rouse, Robert and Sia, Samuel K. (2008). Real-time microfluidic system for studying mammalian cells in 3D microenvironments. Analytical Chemistry, 80 (10), 3640-3647. doi: 10.1021/ac8000034

Real-time microfluidic system for studying mammalian cells in 3D microenvironments