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k wave matlab toolbox  (MathWorks Inc)


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    Structured Review

    MathWorks Inc k wave matlab toolbox
    K Wave Matlab Toolbox, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 96/100, based on 672 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/matlab+k-wave+toolbox/Mapping+Toolbox/pm41087312-110-22-23
    Average 96 stars, based on 672 article reviews
    k wave matlab toolbox - by Bioz Stars, 2026-09
    96/100 stars

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    Related Articles

    Tomography:

    Article Title: A Simulation Study of Ionizing Radiation Acoustic Imaging (iRAI) as a Real-Time Dosimetric Technique for Ultra High Dose Rate Radiotherapy (UHDR-RT)
    Article Snippet: The time-reversal reconstruction of the initial pressure in this study was performed using the MATLAB K -Wave toolbox 30 This simulation work covers two different cases with each tested through different transducer (detection) distributions: (A) IRAI measurements of UHDR with default linac operation and (B) Effect of the linac operating parameters on IRAI of UHDR.

    Article Title: Alteration of functional connectivity in the cortex and major brain networks of non-human primates following focused ultrasound exposure in the dorsal striatum
    Article Snippet: For precise targeting and energy deposition of FUS during the experiments, acoustic and biothermal simulations of a single element transducer (ROC = 64 mm) were conducted using Matlab k-Wave toolbox [ ] and NHP skull CT (computer tomography) model. For burst mode ultrasound protocol described in (500 kHz central frequency, 10 m s burst duration, 2 Hz pulse repetition frequency, 2% duty cycle and 2 min total sonication), both the peak negative pressure (PNP) and temperature distribution are shown in .

    Article Title: Electroacoustic tomography for real-time visualization of electrical field dynamics in deep tissue during electroporation
    Article Snippet: Acoustic simulations were performed using the MatLab K-Wave toolbox, and the electric field energy deposition distributions obtained from the finite element simulations were used to calculate the initial sound pressure after interpolation.

    Article Title: A Simulation Study of Ionizing Radiation Acoustic Imaging (iRAI) as a Real-Time Dosimetric Technique for Ultra High Dose Rate Radiotherapy (UHDR-RT)
    Article Snippet: Acoustic propagation K-Wave Simulations The MATLAB K -Wave toolbox 30 was used to simulate electron-induced acoustic wave generation, propagation, and attenuation in the homogeneous gelatin phantom based on its acoustic characteristics to numerically solve the thermoacoustic equation ( Eq.

    Article Title: An Investigation of Signal Preprocessing for Photoacoustic Tomography
    Article Snippet: The noise-related artefacts resulting from this were illustrated with simulations to date, including using the MATLAB k-wave toolbox [ ] and Monte Carlo simulation of red blood cell signals, demonstrating a fourfold increase in accuracy when reconstruction accounted for sensor directivity, according to [ ].

    Article Title: Skull Impact on Photoacoustic Imaging of Multi-Layered Brain Tissues with Embedded Blood Vessel Under Different Optical Source Types: Modeling and Simulation.
    Article Snippet: The simulation work was finished using the MATLAB k-wave toolbox based on the k-space pseudo-spectral method [22].

    Article Title: Alteration of functional connectivity in the cortex and major brain networks of non-human primates following focused ultrasound exposure in the dorsal striatum.
    Article Snippet: For precise targeting and energy deposition of FUS during the experiments, acoustic and biothermal simulations of a single element transducer (ROC = 64 mm) were conducted using Matlab k-Wave toolbox [25] and NHP skull CT (computer tomography) model. For burst mode ultrasound protocol described in Fig. 1A (500 kHz central frequency, 10 m s burst duration, 2 Hz pulse repetition frequency, 2% duty cycle and 2 min total sonication), both the peak negative pressure (PNP) and temperature distribution are shown in Fig. 1B.

    Article Title: Skull Impact on Photoacoustic Imaging of Multi-Layered Brain Tissues with Embedded Blood Vessel Under Different Optical Source Types: Modeling and Simulation
    Article Snippet: The simulation work was finished using the MATLAB k-wave toolbox based on the k-space pseudo-spectral method [ ].

    Sonication:

    Article Title: A Simulation Study of Ionizing Radiation Acoustic Imaging (iRAI) as a Real-Time Dosimetric Technique for Ultra High Dose Rate Radiotherapy (UHDR-RT)
    Article Snippet: The time-reversal reconstruction of the initial pressure in this study was performed using the MATLAB K -Wave toolbox 30 This simulation work covers two different cases with each tested through different transducer (detection) distributions: (A) IRAI measurements of UHDR with default linac operation and (B) Effect of the linac operating parameters on IRAI of UHDR.

    Article Title: Alteration of functional connectivity in the cortex and major brain networks of non-human primates following focused ultrasound exposure in the dorsal striatum
    Article Snippet: For precise targeting and energy deposition of FUS during the experiments, acoustic and biothermal simulations of a single element transducer (ROC = 64 mm) were conducted using Matlab k-Wave toolbox [ ] and NHP skull CT (computer tomography) model. For burst mode ultrasound protocol described in (500 kHz central frequency, 10 m s burst duration, 2 Hz pulse repetition frequency, 2% duty cycle and 2 min total sonication), both the peak negative pressure (PNP) and temperature distribution are shown in .

    Article Title: Electroacoustic tomography for real-time visualization of electrical field dynamics in deep tissue during electroporation
    Article Snippet: Acoustic simulations were performed using the MatLab K-Wave toolbox, and the electric field energy deposition distributions obtained from the finite element simulations were used to calculate the initial sound pressure after interpolation.

    Article Title: A Simulation Study of Ionizing Radiation Acoustic Imaging (iRAI) as a Real-Time Dosimetric Technique for Ultra High Dose Rate Radiotherapy (UHDR-RT)
    Article Snippet: Acoustic propagation K-Wave Simulations The MATLAB K -Wave toolbox 30 was used to simulate electron-induced acoustic wave generation, propagation, and attenuation in the homogeneous gelatin phantom based on its acoustic characteristics to numerically solve the thermoacoustic equation ( Eq.

    Article Title: An Investigation of Signal Preprocessing for Photoacoustic Tomography
    Article Snippet: The noise-related artefacts resulting from this were illustrated with simulations to date, including using the MATLAB k-wave toolbox [ ] and Monte Carlo simulation of red blood cell signals, demonstrating a fourfold increase in accuracy when reconstruction accounted for sensor directivity, according to [ ].

    Article Title: Skull Impact on Photoacoustic Imaging of Multi-Layered Brain Tissues with Embedded Blood Vessel Under Different Optical Source Types: Modeling and Simulation.
    Article Snippet: The simulation work was finished using the MATLAB k-wave toolbox based on the k-space pseudo-spectral method [22].

    Article Title: Alteration of functional connectivity in the cortex and major brain networks of non-human primates following focused ultrasound exposure in the dorsal striatum.
    Article Snippet: For precise targeting and energy deposition of FUS during the experiments, acoustic and biothermal simulations of a single element transducer (ROC = 64 mm) were conducted using Matlab k-Wave toolbox [25] and NHP skull CT (computer tomography) model. For burst mode ultrasound protocol described in Fig. 1A (500 kHz central frequency, 10 m s burst duration, 2 Hz pulse repetition frequency, 2% duty cycle and 2 min total sonication), both the peak negative pressure (PNP) and temperature distribution are shown in Fig. 1B.

    Article Title: Skull Impact on Photoacoustic Imaging of Multi-Layered Brain Tissues with Embedded Blood Vessel Under Different Optical Source Types: Modeling and Simulation
    Article Snippet: The simulation work was finished using the MATLAB k-wave toolbox based on the k-space pseudo-spectral method [ ].



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    (a) Schematic illustration of circular scanning geometry. (b) Simulation geometry used <t>in</t> <t>MATLAB</t> k-wave toolbox. UST: ultrasound transducer. (c) Point source numerical phantom. (d) Vessel source numerical phantom. (e) Brain source numerical phantom. (f-h) One representative image for (c-e), respectively. (i) Schematic of the PACT imaging system. P1, P2, and P3 are prisms; L1: planoconcave lens; The rotating disc is connected to UST and controlled by a stepper motor. The UST and sample are immersed in a water bath for better acoustic coupling.
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    (a) Schematic illustration of circular scanning geometry. (b) Simulation geometry used <t>in</t> <t>MATLAB</t> k-wave toolbox. UST: ultrasound transducer. (c) Point source numerical phantom. (d) Vessel source numerical phantom. (e) Brain source numerical phantom. (f-h) One representative image for (c-e), respectively. (i) Schematic of the PACT imaging system. P1, P2, and P3 are prisms; L1: planoconcave lens; The rotating disc is connected to UST and controlled by a stepper motor. The UST and sample are immersed in a water bath for better acoustic coupling.
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    Image Search Results


    (a) Schematic illustration of circular scanning geometry. (b) Simulation geometry used in MATLAB k-wave toolbox. UST: ultrasound transducer. (c) Point source numerical phantom. (d) Vessel source numerical phantom. (e) Brain source numerical phantom. (f-h) One representative image for (c-e), respectively. (i) Schematic of the PACT imaging system. P1, P2, and P3 are prisms; L1: planoconcave lens; The rotating disc is connected to UST and controlled by a stepper motor. The UST and sample are immersed in a water bath for better acoustic coupling.

    Journal: Biomedical Optics Express

    Article Title: Sinogram to image: direct reconstruction of photoacoustic tomography image using a hybrid deep learning approach

    doi: 10.1364/BOE.569549

    Figure Lengend Snippet: (a) Schematic illustration of circular scanning geometry. (b) Simulation geometry used in MATLAB k-wave toolbox. UST: ultrasound transducer. (c) Point source numerical phantom. (d) Vessel source numerical phantom. (e) Brain source numerical phantom. (f-h) One representative image for (c-e), respectively. (i) Schematic of the PACT imaging system. P1, P2, and P3 are prisms; L1: planoconcave lens; The rotating disc is connected to UST and controlled by a stepper motor. The UST and sample are immersed in a water bath for better acoustic coupling.

    Article Snippet: A simulated dataset was generated using the k-Wave toolbox in MATLAB [ ], forming the foundation for training our network.

    Techniques: Imaging