Jessica Scherer
Papers
1
Total Citations
32
H-Index
1
About
Jessica Scherer’s research has been instrumental in advancing the practical implementation of microfabricated capillary array electrophoresis (microCAE) devices, a cornerstone technology for high-throughput bioanalytical separations. Her key contributions center on developing the supporting infrastructure necessary to transition these microchannel plates from laboratory prototypes to robust analytical tools. Her most cited work, the “High-Pressure Gel Loader for Capillary Array Electrophoresis Microchannel Plates” (2001, 32 citations), addresses a critical bottleneck in microCAE operation by enabling reliable, automated gel loading. This innovation, alongside her work on robotic sample loading, microplate washing, and data analysis, directly enhanced the reproducibility and throughput of these devices for applications in genomics and proteomics. Scherer’s achievements lie in bridging the gap between microfluidic design and real-world usability, ensuring that the next generation of separation devices could be fully exploited. Her contributions remain foundational for researchers developing integrated microfluidic systems, demonstrating that practical engineering solutions are as vital as the core separation technologies themselves.
Research Focus
Key Achievements
Top Papers
- 1