In recent decades, electrokinetic handling of microparticles and biological cells found many applications ranging frombiomedical diagnostics to microscale assembly. The integration of electrokinetic handling such as d...
funded by the Ministry of Science and Technology,Taiwan,China(MOST 104-2218-E-007-026-MY3,MOST 107-2221-E-007-054-MY3,MOST 110-2221-E-007-069,and MOST 111-2221-E-007-101).
This study introduces a novel image capture and lighting techniques using a cutting-edge hybrid MEMS scanner system designed for compact microscopic imaging.The scanner comprises a tapered optical fiber waveguide and ...
This research was supported by the NIH R21NS084492-01 grant。
Conventional electrodes and associated positioning systems for intracellular recording from single neurons in vitro and in vivo are large and bulky,which has largely limited their scalability.Further,acquiring success...
This work was supported by the National Key Research and Development Program of China(No.2016YFA0200802);the 111 Project(B18001).
This study proposed a method for fabricating 3D microstructures of ice without a supporting material.The inkjet printing process was performed in a low humidity environment to precisely control the growth direction of...
This material is based upon work supported by the National Science Foundation under Grant No.1728313.
One of the biggest challenges in microscale additive manufacturing is the production of three-dimensional,microscale metal parts with a high enough throughput to be relevant for commercial applications.This paper pres...
The project was funded by the National Institute of Health(NIH)EY024582;the Basic Science Research Program through the National Research Foundation of Korea(NRF)under the Ministry of Education(NRF-2013R1A6A3A03026384).
Intraocular pressure(IOP)is a key clinical parameter in glaucoma management.However,despite the potential utility of daily measurements of IOP in the context of disease management,the necessary tools are currently lac...