Showing posts with label Yi Zou. Show all posts
Showing posts with label Yi Zou. Show all posts

Thursday, December 27, 2018

Abstract-Dual-prism based terahertz time-domain attenuated total reflection spectroscopy and its application to characterise the hydration state of L-threonine in solution


Huachuan HuangQiao LiuLiguo ZhuYi ZouZhenhua LiZeren Li
Fig. 1. The THz TD-ATR spectroscopy system and the design of the ATR prism


https://www.sciencedirect.com/science/article/abs/pii/S0030401818311064


To investigate the hydration state of amino acids, terahertz time-domain attenuated total internal reflection (THz TD-ATR) spectroscopy is often adopted to measure the complex permittivity. However, the classical THz TD-ATR spectroscopy system has only a single ATR prism and requires prism cleaning for different measuring modes, increasing the time consumed and easily introducing errors due to the changing environment. To accelerate the measurements and avoid the influence of environmental fluctuations, in this paper, we designed and built a dual-prism based THz TD-ATR spectroscopy: two ATR prisms with and without samples setting on the optical rail can be sequentially switched to optical systems for easily and rapidly collecting both sample and reference ATR spectra. According to the measurements of deionised water, the dual-prism based THz TD-ATR spectroscopy system can measure the sample complex permittivity rapidly and with high accuracy. The complex permittivity of L-threonine in aqueous solution is measured and analysed via the proposed system, and the hydration numbers of L-threonine solutions in different concentrations are quantitatively characterised. It is believed that the dual-prism based THz TD-ATR technique is a powerful tool for quickly and accurately investigating the hydration of amino acids

Tuesday, June 26, 2018

Abstract-Terahertz spectroscopy of neurodegenerative diseases: the correlation between terahertz biophysics and pathological analysis


Li-Guo Zhu, Yi Zou, Jiang Li, and Qiao Liu


https://www.osapublishing.org/abstract.cfm?uri=ISUPTW-2018-TuF4

·                                    The 9th International Symposium on Ultrafast Phenomena and Terahertz Waves

In this talk, I'll review and present our recent studies on THz spectroscopy of neurodegenerative diseased brain tissue and living cell. The well-matched correlation between THz biophysical properties and pathological analysis will also be discussed.
© 2018 OSA

Monday, December 18, 2017

Abstract-Label-free monitoring of cell death induced by oxidative stress in living human cells using terahertz ATR spectroscopy



Yi Zou, Qiao Liu, Xia Yang, Hua-Chuan Huang, Jiang Li, Liang-Hui Du, Ze-Ren Li, Jian-Heng Zhao, and Li-Guo Zhu

https://www.osapublishing.org/boe/abstract.cfm?uri=boe-9-1-14&origin=search

We demonstrated that attenuated total reflectance terahertz time-domain spectroscopy (ATR THz-TDS) is able to monitor oxidative stress response of living human cells, which is proven in this work that it is an efficient non-invasive, label-free, real-time and in situ monitoring of cell death. Furthermore, the dielectric constant and dielectric loss of cultured living human breast epithelial cells, and along with their evolution under oxidative stress response induced by high concentration of H2O2, were quantitatively determined in the work. Our observation and results were finally confirmed using standard fluorescence-labeled flow cytometry measurements and visible fluorescence imaging.
© 2017 Optical Society of America under the terms of the OSA Open Access Publishing