An Integrated Microfluidic and Fluorescence Platform for Probing In Vivo Neuropharmacology

Academic Background Neuroscience research has made significant progress over the past decade, particularly in the development of neurotechnologies and genetic tools for dissecting neural circuit functions. However, the advancement of neuropharmacological methodologies has lagged in comparison. Understanding the precise pharmacological mechanisms of...

Coupling the Thermal Acoustic Modes of a Bubble to an Optomechanical Sensor

Coupling the Thermal Acoustic Modes of a Bubble to an Optomechanical Sensor Academic Background The acoustic behavior of bubbles in liquids has long been a significant research topic in physics and engineering. The vibrational modes of bubbles are not only closely related to acoustic phenomena in nature but also have broad applications in fields su...

A Human Pluripotent Stem Cell-Based Somitogenesis Model Using Microfluidics

Study of Somite Formation Model Based on Microfluidic System Background and Research Motivation The formation of somites plays a crucial role in vertebrate embryonic development, significantly influencing the layout and functionality of the embryonic musculoskeletal system. Somite formation involves the segmentation of bilateral presomitic mesoderm...