Zobrazeno 1 - 10
of 10
pro vyhledávání: '"Abigail H. Casey"'
Publikováno v:
Oxide Electronics
Publikováno v:
Integrated Sensors for Biological and Neural Sensing.
We modeled and conducted microfluidic device reaction experiments to evaluate mass transfer of enzymes during protein phosphorylation to better understand signal transduction. In this work, we studied the effects of fluid flow rates in our microfluid
Publikováno v:
Biomedical Applications of Light Scattering XI.
Deciphering molecular changes (such as structure conformation) in complex systems can be challenging. If these conformation changes could be monitored in real time and modeled, it would open up new opportunities to gain a deeper understanding of sign
Autor:
Gregory Triplett, Abigail H. Casey
Publikováno v:
Integrated Sensors for Biological and Neural Sensing.
Protein phosphorylation is responsible for a broad range of signal transduction roles such as muscular movement and growth, metastatic behavior, mental cognition and metabolic rate. This process follows an enzymatic reaction mechanism, where the enzy
Autor:
Abigail H. Casey, Gregory Triplett
Publikováno v:
Frontiers in Biological Detection: From Nanosensors to Systems XIII.
Microfluidic reactors have become increasingly popular for the characterization of reaction parameters. They have found an important role in the synthesis and monitoring of an expansive list of bioreactions. To study protein phosphorylation, a bioche
Publikováno v:
Nanoscale Imaging, Sensing, and Actuation for Biomedical Applications XVI.
Using surface-enhanced Raman spectroscopy (SERS), an electric field can be manipulated to map biochemical reactions in real time. The goal of this lab study will impact bio-photonics, material science, and electrical engineering fields by providing m
Publikováno v:
Nanoscale Imaging, Sensing, and Actuation for Biomedical Applications XVI.
The use of nanoantennas to enhance molecular fingerprinting has an important application in the field of biomolecular reaction sensing. Nanoantennas, which are plasmonic metastructures that manipulate light to generate a localized electric field, or
Publikováno v:
Imaging, Manipulation, and Analysis of Biomolecules, Cells, and Tissues XVII.
Understanding the energy transfer mechanisms of amino acids in real time can provide insight into the strain induced during modification of proteins. Protein phosphorylation, one of the most prevalent signal transduction mechanisms within biological
Publikováno v:
Vibrational Spectroscopy. 107:103035
In this study, we examined how branched-chain amino acids responded to varying experimental conditions through an adaptive principal component analysis (PCA) method. Three branched chain amino acids were chosen: L-leucine, L-valine and L-isoleucine a
Autor:
Abigail H. Casey, Gregory Triplett
Publikováno v:
Biophotonics: Photonic Solutions for Better Health Care VI.