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Examining Tissue Microstructure with Temporal Diffusion Magnetic Resonance Spectroscopy

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Release : 2009
Genre : Diffusion magnetic resonance imaging
Kind : eBook
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Book Synopsis Examining Tissue Microstructure with Temporal Diffusion Magnetic Resonance Spectroscopy by : Daniel Christopher Colvin

Download or read book Examining Tissue Microstructure with Temporal Diffusion Magnetic Resonance Spectroscopy written by Daniel Christopher Colvin. This book was released on 2009. Available in PDF, EPUB and Kindle. Book excerpt:

Assessing Cellular Microstructure in Biological Tissues using In Vivo Diffusion-Weighted Magnetic Resonance

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Release : 2019-05-16
Genre :
Kind : eBook
Book Rating : 415/5 ( reviews)

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Book Synopsis Assessing Cellular Microstructure in Biological Tissues using In Vivo Diffusion-Weighted Magnetic Resonance by : Julien Valette

Download or read book Assessing Cellular Microstructure in Biological Tissues using In Vivo Diffusion-Weighted Magnetic Resonance written by Julien Valette. This book was released on 2019-05-16. Available in PDF, EPUB and Kindle. Book excerpt: Magnetic resonance imaging (MRI) and spectroscopy (MRS) techniques have opened new doors for examining biological tissues in vivo. By combining sensitization to diffusion using magnetic field gradients with a variety of imaging and localization schemes, diffusion-weighted MRI and diffusion-weighted MRS allow investigating translational diffusion of endogenous molecules, such as water or metabolites, in biological tissues, most commonly the brain but also other organs such as the prostate. The typical voxel resolution of MRI or MRS is in the millimeter to centimeter range, much lower than the cellular scale. However, as molecules are typically diffusing over just a few µm during the duration of the measurement (the “diffusion time”) and encounter numerous biological membranes at these scales, the average cellular microstructure has a critical influence on the measured diffusion signal. Hence, diffusion-weighted MRI and diffusion-weighted MRS are sensitive to tissue microstructure at a scale well below the nominal imaging resolution. However, the connection between diffusion properties and tissue microstructure remains indirect, so any attempt to quantify microstructure will rely on modeling. The goal of this Research Topic was to gather experts in various acquisition and modeling strategies and show how these approaches, despite their own strengths and weaknesses, can yield unique information about cellular microstructure, and sometimes complement each other.

Towards Quantitative Measurements of Tissue Microstructure Using Temporal Diffusion Spectroscopy

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Release : 2015
Genre : Electronic dissertations
Kind : eBook
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Book Synopsis Towards Quantitative Measurements of Tissue Microstructure Using Temporal Diffusion Spectroscopy by : Hua Li

Download or read book Towards Quantitative Measurements of Tissue Microstructure Using Temporal Diffusion Spectroscopy written by Hua Li. This book was released on 2015. Available in PDF, EPUB and Kindle. Book excerpt:

Diffusion Weighted Magnetic Resonance Imaging by Temporal Diffusion Spectroscopy

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Author :
Release : 2008
Genre : Diffusion magnetic resonance imaging
Kind : eBook
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Book Synopsis Diffusion Weighted Magnetic Resonance Imaging by Temporal Diffusion Spectroscopy by : Junzhong Xu

Download or read book Diffusion Weighted Magnetic Resonance Imaging by Temporal Diffusion Spectroscopy written by Junzhong Xu. This book was released on 2008. Available in PDF, EPUB and Kindle. Book excerpt:

Advanced Magnetic Resonance Spectroscopy Techniques and Applications

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Release : 2017-01-27
Genre :
Kind : eBook
Book Rating : 873/5 ( reviews)

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Book Synopsis Advanced Magnetic Resonance Spectroscopy Techniques and Applications by : Peng Cao

Download or read book Advanced Magnetic Resonance Spectroscopy Techniques and Applications written by Peng Cao. This book was released on 2017-01-27. Available in PDF, EPUB and Kindle. Book excerpt: This dissertation, "Advanced Magnetic Resonance Spectroscopy Techniques and Applications" by Peng, Cao, 曹鹏, was obtained from The University of Hong Kong (Pokfulam, Hong Kong) and is being sold pursuant to Creative Commons: Attribution 3.0 Hong Kong License. The content of this dissertation has not been altered in any way. We have altered the formatting in order to facilitate the ease of printing and reading of the dissertation. All rights not granted by the above license are retained by the author. Abstract: Magnetic resonance (MR) is a well-known non-invasive technique that provides spectra (by MR spectroscopy, MRS) and images (by magnetic resonance imaging, MRI) of the examined tissue with detailed metabolic, structural, and functional information. This doctoral work is focused on advanced methodologies and applications of MRS for probing cellular and molecular changes in vivo. A single-voxel diffusion-weighted (DW) MRS method was first developed for monitoring the size changes of intramyocellular lipid droplets in vivo. This DWMRS technique was then utilized for exploring the vascular origins of the functional blood-oxygen-level-dependent (BOLD) signal. Magnetic resonance spectroscopic imaging (MRSI) enables simultaneous MRS acquisition in multiple voxels. However, MRSI is conventionally time-consuming. Therefore, a compressed sensing (CS) method was proposed in this thesis to accelerate the acquisition speed of the in vivo MRSI. It holds the potential for promoting the realization of multiple-voxel DW-MRS experiments, though the latter is still constrained by hardware in the present. The single-voxel DW-MRS method for probing lipid diffusion was first developed and evaluated in oil and muscle phantoms. The experimental sequence was demonstrated to be sensitive to diffusion restriction and free of significant artifacts. Experiments were then performed in rat hindlimb muscles in vivo. The restricted lipid diffusion behavior was characterized by apparent diffusion coefficient (ADC) changes and utilized for quantifying the sizes of intramyocellular lipid (IMCL) droplets in normal, fasting, diabetic and obese rats. The sizes of IMCL droplets reflect their vital roles in muscle energy metabolism. The IMCL droplet size estimated by ADC here was closely correlated with that measured by transmission electron microscopy. IMCL ADC was sensitive to metabolic alterations, decreasing in the fasting and diabetic groups while increasing in the obese group. These results clearly demonstrate DW MRS as a new means to examine the dynamics of IMCL metabolism in vivo. The DW-MRS technique was then utilized to characterize water ADC during neuronal activation to explore the vascular origins of the BOLD signal in rat brains. MRS experiments with acoustic stimulation were performed with a dynamic point-resolved spectroscopy (PRESS) acquisition on conditions with or without the diffusion gradient for blood suppression in the same voxel and same experimental session, which enabled the simultaneous T2/T2*/diffusion measurements. The T2*% changes with and without diffusion gradient showed no significant difference, while the spin echo (SE)-BOLD% (T2%) change significantly decreased after applying the diffusion gradient, suggesting an intravascular component in the SE-BOLD signal. This intravascular component was not venous blood, as the T2* of this component was comparable with the T2* of the brain tissue. These results provide new insights into the vascular origins of BOLD signals. A CS approach was developed to accelerate in vivo magnetic resonance spectroscopic imaging (MRSI) which enables multi-voxel MRS measurements. The CS undersampling was performed by acquiring a pseudo-random and density-varying subset of phase encodings. The proposed CS approach preserved the spectral and spatial resolution, while substantially reduced the number of phase encodings with accelerations up to seven fold for phantom and up to six fold

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