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Correction: Direct laser writing-enabled 3D printing strategies for microfluidic applications
Olivia M Young1, Xin Xu1, Sunandita Sarker1,2,3,4
1Department of Mechanical Engineering, University of Maryland, College Park, 2147 Glenn L. Martin Hall, College Park, MD, 20742, USA. rsochol@umd.edu.
Lab on a Chip
|April 22, 2024
Summary
This correction clarifies details in a previous study on direct laser writing 3D printing for microfluidic devices. It ensures accuracy in fabrication methods for advanced lab-on-a-chip applications.
Area of Science:
- * Materials Science and Engineering
- * Microfluidics and Lab-on-a-Chip Technology
Context:
- * Addresses a correction to the article "Direct laser writing-enabled 3D printing strategies for microfluidic applications" published in Lab Chip.
- * Highlights the importance of precise fabrication in microfluidic device development.
Purpose:
- * To provide accurate information regarding direct laser writing (DLW) 3D printing techniques.
- * To ensure the scientific integrity and reproducibility of microfluidic device fabrication research.
Summary:
- * The correction pertains to specific details within the direct laser writing 3D printing strategies discussed.
- * Ensures clarity on parameters and methodologies used for creating microfluidic applications via 3D printing.
Impact:
- * Facilitates more accurate implementation of DLW 3D printing for microfluidic systems.
- * Supports the advancement of lab-on-a-chip devices by refining fabrication protocols.

