In vivo cellular imaging and in vitro assays or sensors are fundamentally used to study the spatiotemporal interaction of molecules at biological interfaces. The study of these interfaces informs various applications such as diagnostics/detection of foreign materials or processes in the biological system. Raman spectroscopy, an optical, non-destructive, label-free fingerprinting tool offers a wide array of applications in both in vitro and in vivo diagnostics owing to its relatively short acquisition time, non-invasiveness and ability to provide biochemical molecular information. It has been explored in tissue imaging, in vitro diagnosis, DNA/RNA analysis, metabolic accretions, single cell analysis photodynamic therapy, etc. The chapter det...
grantor: University of TorontoRaman spectroscopy provides detailed information about the m...
We previously published a comprehensive review paper reviewing the Raman spectroscopy of biological ...
Raman spectroscopy is being used to study biological molecules for some three decades now. Thanks to...
AbstractRaman spectroscopy is an optical technique based on inelastic scattering of light by vibrati...
Raman spectroscopy is an established laser-based technology for the quality assurance of pharmaceuti...
Wachsmann-Hogiu S, Weeks T, Huser T. Chemical analysis in vivo and in vitro by Raman spectroscopy-fr...
Abstract. Raman spectroscopy is a potentially important clinical tool for real-time diagnosis of dis...
Specific dynamic biochemical compositions and molecular structures characterise healthy cells and ti...
The implementation of Raman and surface enhanced Raman spectroscopy (SERS) for the detection of dise...
Novel approaches toward understanding the evolution of disease can lead to the discovery of biomarke...
Novel approaches toward understanding the evolution of disease can lead to the discovery of biomarke...
Novel approaches toward understanding the evolution of disease can lead to the discovery of biomarke...
Raman spectroscopy has remarkable analytical abilities to scientists who want to study biological sa...
In this review we describe label-free optical spectroscopy techniques which are able to non-invasive...
Raman spectroscopy (RS) is an optical high specificity label-free method increasingly applied to ge...
grantor: University of TorontoRaman spectroscopy provides detailed information about the m...
We previously published a comprehensive review paper reviewing the Raman spectroscopy of biological ...
Raman spectroscopy is being used to study biological molecules for some three decades now. Thanks to...
AbstractRaman spectroscopy is an optical technique based on inelastic scattering of light by vibrati...
Raman spectroscopy is an established laser-based technology for the quality assurance of pharmaceuti...
Wachsmann-Hogiu S, Weeks T, Huser T. Chemical analysis in vivo and in vitro by Raman spectroscopy-fr...
Abstract. Raman spectroscopy is a potentially important clinical tool for real-time diagnosis of dis...
Specific dynamic biochemical compositions and molecular structures characterise healthy cells and ti...
The implementation of Raman and surface enhanced Raman spectroscopy (SERS) for the detection of dise...
Novel approaches toward understanding the evolution of disease can lead to the discovery of biomarke...
Novel approaches toward understanding the evolution of disease can lead to the discovery of biomarke...
Novel approaches toward understanding the evolution of disease can lead to the discovery of biomarke...
Raman spectroscopy has remarkable analytical abilities to scientists who want to study biological sa...
In this review we describe label-free optical spectroscopy techniques which are able to non-invasive...
Raman spectroscopy (RS) is an optical high specificity label-free method increasingly applied to ge...
grantor: University of TorontoRaman spectroscopy provides detailed information about the m...
We previously published a comprehensive review paper reviewing the Raman spectroscopy of biological ...
Raman spectroscopy is being used to study biological molecules for some three decades now. Thanks to...