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1d bloch equation simulation  (MathWorks Inc)


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    Structured Review

    MathWorks Inc 1d bloch equation simulation
    3D joint T 1 / T 1 ρ / T 2 mapping and water/fat imaging sequence schematic diagram. Volume 1: IR (TI = 250 ms ), Volume 2: no‐preparation, Volume 3: T 1 ρ ‐preparation (spin‐lock duration = 40 ms and spin‐lock amplitude = 400 Hz ), Volume 4: T 2 ‐preparation (duration = 40 ms ), Volume 5: no preparation. Non‐rigid motion correction with patch‐based regularization is used to reconstruct 3D IP/OP HB images; water and fat images are generated from IP/OP images through a fat‐water separation algorithm, and T 1 / T 1 ρ / T 2 maps are estimated from water images by dictionary matching via a <t>Bloch</t> simulation of the proposed 3D sequence.
    1d Bloch Equation Simulation, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/bloch+simulator/pmc11971512-40-1-15
    Average 90 stars, based on 1 article reviews
    1d bloch equation simulation - by Bioz Stars, 2026-09
    90/100 stars

    Images

    1) Product Images from "3D joint T 1 /T 1 ρ /T 2 mapping and water‐fat imaging for contrast‐agent free myocardial tissue characterization at 1.5T"

    Article Title: 3D joint T 1 /T 1 ρ /T 2 mapping and water‐fat imaging for contrast‐agent free myocardial tissue characterization at 1.5T

    Journal: Magnetic Resonance in Medicine

    doi: 10.1002/mrm.30397

    3D joint T 1 / T 1 ρ / T 2 mapping and water/fat imaging sequence schematic diagram. Volume 1: IR (TI = 250 ms ), Volume 2: no‐preparation, Volume 3: T 1 ρ ‐preparation (spin‐lock duration = 40 ms and spin‐lock amplitude = 400 Hz ), Volume 4: T 2 ‐preparation (duration = 40 ms ), Volume 5: no preparation. Non‐rigid motion correction with patch‐based regularization is used to reconstruct 3D IP/OP HB images; water and fat images are generated from IP/OP images through a fat‐water separation algorithm, and T 1 / T 1 ρ / T 2 maps are estimated from water images by dictionary matching via a Bloch simulation of the proposed 3D sequence.
    Figure Legend Snippet: 3D joint T 1 / T 1 ρ / T 2 mapping and water/fat imaging sequence schematic diagram. Volume 1: IR (TI = 250 ms ), Volume 2: no‐preparation, Volume 3: T 1 ρ ‐preparation (spin‐lock duration = 40 ms and spin‐lock amplitude = 400 Hz ), Volume 4: T 2 ‐preparation (duration = 40 ms ), Volume 5: no preparation. Non‐rigid motion correction with patch‐based regularization is used to reconstruct 3D IP/OP HB images; water and fat images are generated from IP/OP images through a fat‐water separation algorithm, and T 1 / T 1 ρ / T 2 maps are estimated from water images by dictionary matching via a Bloch simulation of the proposed 3D sequence.

    Techniques Used: Imaging, Sequencing, Generated

    Related Articles

    Sequencing:

    Article Title: The application of magnetic resonance fingerprinting to single voxel proton spectroscopy.
    Article Snippet: NMR in Biomedicine.. 2018;e4001. https://doi.org/10.1002/nbm.4001 Magnetic resonance fingerprinting has been proposed as a method for undersampling k‐space while simultaneously yielding multiparametric tissue maps.. In the context of single voxel spectroscopy, fingerprinting can provide a unified framework for parameter estimation.

    Article Title: B 1 inhomogeneity-corrected T 1 mapping and quantitative magnetization transfer imaging via simultaneously estimating Bloch-Siegert shift and magnetization transfer effects.
    Article Snippet: Funding information National Institute of Arthritis and Musculoskeletal and Skin Diseases, Grant/Award Numbers: R01AR079442, R01AR081344; National Institute of Biomedical Imaging and Bioengineering, Grant/Award Numbers: K01EB030045, P41EB022544, R01EB033582, R21EB031185, T32EB013180 Purpose: To introduce a method of inducing Bloch-Siegert shift and magnetization Transfer Simultaneously (BTS) and demonstrate its utilization for measuring binary spin-bath model parameters free pool spin–lattice relaxation (TF 1 ), macromolecular fraction (f ), magnetization exchange rate (kF) and local transmit field (B1 ).. Theory and Methods: Bloch-Siegert shift and magnetization transfer is simultaneously induced through the application of off-resonance irradiation in between excitation and acquisition of an RF-spoiled gradient-echo scheme.. Applying the binary spin-bath model, an analytical signal equation is derived and verified through Bloch simulations.

    other:

    Article Title: Systems and methods for designing multidimensional selective adiabatic pulses
    Article Snippet: An in-house Bloch simulator programmed in C-language and MATLAB (MathWorks, Inc.; Natick, Mass., USA) was used to validate the method described above.



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    Image Search Results


    3D joint T 1 / T 1 ρ / T 2 mapping and water/fat imaging sequence schematic diagram. Volume 1: IR (TI = 250 ms ), Volume 2: no‐preparation, Volume 3: T 1 ρ ‐preparation (spin‐lock duration = 40 ms and spin‐lock amplitude = 400 Hz ), Volume 4: T 2 ‐preparation (duration = 40 ms ), Volume 5: no preparation. Non‐rigid motion correction with patch‐based regularization is used to reconstruct 3D IP/OP HB images; water and fat images are generated from IP/OP images through a fat‐water separation algorithm, and T 1 / T 1 ρ / T 2 maps are estimated from water images by dictionary matching via a Bloch simulation of the proposed 3D sequence.

    Journal: Magnetic Resonance in Medicine

    Article Title: 3D joint T 1 /T 1 ρ /T 2 mapping and water‐fat imaging for contrast‐agent free myocardial tissue characterization at 1.5T

    doi: 10.1002/mrm.30397

    Figure Lengend Snippet: 3D joint T 1 / T 1 ρ / T 2 mapping and water/fat imaging sequence schematic diagram. Volume 1: IR (TI = 250 ms ), Volume 2: no‐preparation, Volume 3: T 1 ρ ‐preparation (spin‐lock duration = 40 ms and spin‐lock amplitude = 400 Hz ), Volume 4: T 2 ‐preparation (duration = 40 ms ), Volume 5: no preparation. Non‐rigid motion correction with patch‐based regularization is used to reconstruct 3D IP/OP HB images; water and fat images are generated from IP/OP images through a fat‐water separation algorithm, and T 1 / T 1 ρ / T 2 maps are estimated from water images by dictionary matching via a Bloch simulation of the proposed 3D sequence.

    Article Snippet: A 1D Bloch equation simulation of the longitudinal magnetization, assuming perfect spoiling, was implemented in MATLAB (The MathWorks Inc., Natick, MA, USA) to generate a signal at each TR.

    Techniques: Imaging, Sequencing, Generated