Magnetic particle imaging (MPI) has been shown to provide remarkable contrast for imaging applications such as angiography, stem cell tracking, and cancer imaging. Recently, there is growing interest in the functional imaging capabilities of MPI, where ‘color MPI’ techniques have explored separating different nanoparticles, which could potentially be used to distinguish nanoparticles in different states or environments. Viscosity mapping is a promising functional imaging application for MPI, as increased viscosity levels in vivo have been associated with numerous diseases such as hypertension, atherosclerosis, and cancer. In this work, we propose a viscosity mapping technique for MPI through the estimation of the relaxation time constant of the nanoparticles. Importantly, the proposed time constant estimation scheme does not require any prior information regarding the nanoparticles. We validate this method with extensive experiments in an in-house magnetic particle spectr...
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Publication date: April 2017 Source: European Journal of Cancer, Volume 75 Author(s): A. Ieni, G. Angelico, P. Zeppa, G. Tuccari fro...
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Objective A systematic review and meta-analysis to investigate the impact of electronic nicotine delivery systems (ENDS) and/or electronic n...
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Abstract Purpose Complete mesocolic excision (CME) with central vascular ligation (CVL) has been widely accepted as a surgical treatment...
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Abstract Purpose The aim of this study is to assess multi-center reproducibility and longitudinal consistency of MRI imaging measurement...
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Abstract The quantitative evaluation of Social Science and Humanities (SSH) and the investigation of the existing similarities between SSH...
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