Machine learning enables design automation of microfluidic flow-focusing droplet generation A Lashkaripour, C Rodriguez, N Mehdipour, R Mardian, D McIntyre, ... Nature communications 12 (1), 25, 2021 | 137 | 2021 |
Machine learning for microfluidic design and control D McIntyre, A Lashkaripour, P Fordyce, D Densmore Lab on a Chip 22 (16), 2925-2937, 2022 | 60 | 2022 |
OLA-Simple: A software-guided HIV-1 drug resistance test for low-resource laboratories N Panpradist, IA Beck, J Vrana, N Higa, D McIntyre, PS Ruth, I So, ... EBioMedicine 50, 34-44, 2019 | 29 | 2019 |
Rapid and inexpensive microfluidic electrode integration with conductive ink D McIntyre, A Lashkaripour, D Densmore Lab on a Chip 20 (20), 3690-3695, 2020 | 16 | 2020 |
Buildout and integration of an automated high-throughput CLIA laboratory for SARS-CoV-2 testing on a large urban campus L Landaverde, D McIntyre, J Robson, D Fu, L Ortiz, R Chen, SMD Oliveira, ... SLAS technology 27 (5), 302-311, 2022 | 12* | 2022 |
Modular microfluidic design automation using machine learning A Lashkaripour, C Rodriguez, N Mehdipour, D McIntyre, D Densmore 11th International Workshop on Bio-Design Automation (IWBDA-19), Cambridge …, 2019 | 2 | 2019 |
Design automation of microfluidic single and double emulsion droplets with machine learning A Lashkaripour, DP McIntyre, SGK Calhoun, K Krauth, DM Densmore, ... Nature Communications 15 (1), 83, 2024 | 1 | 2024 |
Versatility and stability optimization of flow-focusing droplet generators via quality metric-driven design automation D McIntyre, A Lashkaripour, D Arguijo, P Fordyce, D Densmore Lab on a Chip 23 (23), 4997-5008, 2023 | 1 | 2023 |
Design Automation and Rapid Prototyping of Multi-Component Droplet Microfluidic Platforms DP McIntyre Boston University, 2023 | | 2023 |