Year |
Citation |
Score |
2024 |
Young OM, Xu X, Sarker S, Sochol RD. Correction: Direct laser writing-enabled 3D printing strategies for microfluidic applications. Lab On a Chip. PMID 38647182 DOI: 10.1039/d4lc90040e |
0.424 |
|
2024 |
Young OM, Xu X, Sarker S, Sochol RD. Direct laser writing-enabled 3D printing strategies for microfluidic applications. Lab On a Chip. PMID 38576361 DOI: 10.1039/d3lc00743j |
0.573 |
|
2024 |
Felix BM, Young OM, Andreou JT, Sarker S, Fuge MD, Krieger A, Weiss CR, Bailey CR, Sochol RD. FABRICATION OF MULTILUMEN MICROFLUIDIC TUBING FOR DIRECT LASER WRITING. Proceedings. Ieee International Conference On Micro Electro Mechanical Systems. 2024: 1158-1161. PMID 38516341 DOI: 10.1109/mems58180.2024.10439522 |
0.516 |
|
2024 |
Sarker S, Forghani K, Wen Z, Halli RN, Hoag S, Flank S, Sochol RD. TOWARD CONTROLLED-RELEASE DRUG DELIVERY MICROCARRIERS ENABLED BY DIRECT LASER WRITING 3D PRINTING. Proceedings. Ieee International Conference On Micro Electro Mechanical Systems. 2024: 433-436. PMID 38482161 DOI: 10.1109/mems58180.2024.10439600 |
0.46 |
|
2024 |
Young OM, Felix BM, Fuge MD, Krieger A, Sochol RD. A 3D-MICROPRINTED COAXIAL NOZZLE FOR FABRICATING LONG, FLEXIBLE MICROFLUIDIC TUBING. Proceedings. Ieee International Conference On Micro Electro Mechanical Systems. 2024: 1174-1177. PMID 38482160 DOI: 10.1109/mems58180.2024.10439296 |
0.427 |
|
2024 |
Sarker S, Wang J, Shah SA, Jewell CM, Rand-Yadin K, Janowski M, Walczak P, Liang Y, Sochol RD. GEOMETRIC DETERMINANTS OF CELL VIABILITY FOR 3D-PRINTED HOLLOW MICRONEEDLE ARRAY-MEDIATED DELIVERY. Proceedings. Ieee International Conference On Micro Electro Mechanical Systems. 2024: 429-432. PMID 38476775 DOI: 10.1109/mems58180.2024.10439381 |
0.349 |
|
2023 |
Sarker S, Colton A, Wen Z, Xu X, Erdi M, Jones A, Kofinas P, Tubaldi E, Walczak P, Janowski M, Liang Y, Sochol RD. 3D-Printed Microinjection Needle Arrays via a Hybrid DLP-Direct Laser Writing Strategy. Advanced Materials Technologies. 8. PMID 37064271 DOI: 10.1002/admt.202201641 |
0.42 |
|
2021 |
Hubbard JD, Acevedo R, Edwards KM, Alsharhan AT, Wen Z, Landry J, Wang K, Schaffer S, Sochol RD. Fully 3D-printed soft robots with integrated fluidic circuitry. Science Advances. 7. PMID 34261646 DOI: 10.1126/sciadv.abe5257 |
0.308 |
|
2021 |
Alsharhan AT, M Young O, Xu X, Stair AJ, Sochol RD. Integrated 3D printed microfluidic circuitry and soft microrobotic actuators via in situ direct laser writing Journal of Micromechanics and Microengineering. 31: 044001. DOI: 10.1088/1361-6439/abec1c |
0.449 |
|
2021 |
Armstrong CD, Todd N, Alsharhan AT, Bigio DI, Sochol RD. Morphing‐Nozzle 3D Printing: A 3D Printed Morphing Nozzle to Control Fiber Orientation during Composite Additive Manufacturing (Adv. Mater. Technol. 1/2021) Advanced Materials Technologies. 6: 2170004. DOI: 10.1002/admt.202170004 |
0.417 |
|
2020 |
Childs EH, Latchman AV, Lamont AC, Hubbard JD, Sochol RD. Additive Assembly for PolyJet-Based Multi-Material 3D Printed Microfluidics Journal of Microelectromechanical Systems. 29: 1094-1096. DOI: 10.1109/JMEMS.2020.3003858 |
0.543 |
|
2020 |
Acevedo R, Restaino MA, Yu D, Hoag SW, Flank S, Sochol RD. 3D Nanoprinted Liquid-Core-Shell Microparticles Journal of Microelectromechanical Systems. 29: 924-929. DOI: 10.1109/Jmems.2020.3000479 |
0.589 |
|
2020 |
Armstrong CD, Todd N, Alsharhan AT, Bigio DI, Sochol RD. A 3D Printed Morphing Nozzle to Control Fiber Orientation during Composite Additive Manufacturing Advanced Materials Technologies. 6: 2000829. DOI: 10.1002/admt.202000829 |
0.312 |
|
2019 |
Alsharhan AT, Acevedo R, Warren R, Sochol RD. 3D microfluidics via cyclic olefin polymer-based in situ direct laser writing. Lab On a Chip. PMID 31334525 DOI: 10.1039/c9lc00542k |
0.515 |
|
2019 |
Lamont AC, Restaino MA, Kim MJ, Sochol RD. A facile multi-material direct laser writing strategy. Lab On a Chip. PMID 31209452 DOI: 10.1039/C9Lc00398C |
0.581 |
|
2019 |
Lamont AC, Alsharhan AT, Sochol RD. Geometric Determinants of In-Situ Direct Laser Writing. Scientific Reports. 9: 394. PMID 30674934 DOI: 10.1038/s41598-018-36727-z |
0.504 |
|
2018 |
Sochol RD, Sweet E, Glick CC, Wu S, Yang C, Restaino M, Lin L. 3D printed microfluidics and microelectronics Microelectronic Engineering. 189: 52-68. DOI: 10.1016/J.Mee.2017.12.010 |
0.585 |
|
2016 |
Sochol RD, Gupta NR, Bonventre JV. A Role for 3D Printing in Kidney-on-a-Chip Platforms. Current Transplantation Reports. 3: 82-92. PMID 28090431 DOI: 10.1007/s40472-016-0085-x |
0.443 |
|
2016 |
Sochol RD, Sweet E, Glick CC, Venkatesh S, Avetisyan A, Ekman KF, Raulinaitis A, Tsai A, Wienkers A, Korner K, Hanson K, Long A, Hightower BJ, Slatton G, Burnett DC, et al. 3D printed microfluidic circuitry via multijet-based additive manufacturing. Lab On a Chip. PMID 26725379 DOI: 10.1039/C5Lc01389E |
0.631 |
|
2014 |
Sochol RD, Lu A, Lei J, Iwai K, Lee LP, Lin L. Microfluidic bead-based diodes with targeted circular microchannels for low Reynolds number applications. Lab On a Chip. 14: 1585-94. PMID 24632685 DOI: 10.1039/C3Lc51069G |
0.334 |
|
Show low-probability matches. |