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spherical matrix transducer array imasonic  (SAS institute)


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    SAS institute spherical matrix transducer array imasonic
    Spherical Matrix Transducer Array Imasonic, supplied by SAS institute, 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/spherical+matrix+array+transducer/custom+made+spherical+transducer+array+imasonic/pmc10285284-73-3-8
    Average 90 stars, based on 1 article reviews
    spherical matrix transducer array imasonic - by Bioz Stars, 2026-09
    90/100 stars

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    Related Articles

    Imaging:

    Article Title: Coregistered transcranial optoacoustic and magnetic resonance angiography of the human brain
    Article Snippet: .. The imaging system consisted of a spherical matrix array (Imasonic SaS, France) accommodating 256 piezocomposite elements and covering an angle of 90° [17]. ..

    Article Title: Multispectral Optoacoustic Tomography Enables In Vivo Anatomical and Functional Assessment of Human Tendons
    Article Snippet: .. The handheld MSOT imaging probe consists of a custom‐made spherical matrix US array (Imasonic SaS, Voray, France) composed of 256 piezo composite elements, which allows for the collection of volumetric tomographic data covering a volume of ≈1.5 × 1.5 × 1.5 cm 3 , with an approximately isotropic spatial resolution of ≈200 μm. .. The laser source employed was an optical parametric oscillator‐based laser (Innolas, GmbH, Krailling, Germany), tuneable between 680 and 1250 nm, and generates short <10 ns pulses at 10 Hz pulse repetition rate.

    other:

    Article Title: Unsupervised denoising of photoacoustic images based on the Noise2Noise network
    Article Snippet: The system consists of a customized linear-array transducer (Imasonic SAS, France) with 128 elements and a 2.25 MHz central frequency.



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    Hybrid system for concurrent magnetic resonance optoacoustic <t>tomography</t> <t>(MROT)</t> imaging of murine brain activation. a) Illustration showing the imaging performance comparison between fMRI and OAT and the high complementary value of their combination for functional neuroimaging studies. b) Schematics of the hybrid MROT system featuring the 9.4T <t>MRI</t> bore inserted with a customized MRI‐compatible spherical matric array transducer for volumetric data acquisition, a fiber bundle for pulsed light delivery, animal fixation parts, and radiofrequency (RF) coils. c) Electrical stimulation paradigm applied to the left forepaw of a mouse. Stimulation cycle parameters: 0.5 ms pulse duration, 0.5 mA current, 4 Hz pulse repetition frequency, 20 s duration. One stimulation sequence consists of nine stimulation cycles repeated every 100 s. d) Volumetric OAT image of the mouse brain (HbO component is shown). e) The corresponding magnetic resonance angiography (MRA) image acquired with the fast low angle shot (FLASH) sequence. f) Axial and sagittal views of the coregistered OAT and MRA images.
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    Image Search Results


    Hybrid system for concurrent magnetic resonance optoacoustic tomography (MROT) imaging of murine brain activation. a) Illustration showing the imaging performance comparison between fMRI and OAT and the high complementary value of their combination for functional neuroimaging studies. b) Schematics of the hybrid MROT system featuring the 9.4T MRI bore inserted with a customized MRI‐compatible spherical matric array transducer for volumetric data acquisition, a fiber bundle for pulsed light delivery, animal fixation parts, and radiofrequency (RF) coils. c) Electrical stimulation paradigm applied to the left forepaw of a mouse. Stimulation cycle parameters: 0.5 ms pulse duration, 0.5 mA current, 4 Hz pulse repetition frequency, 20 s duration. One stimulation sequence consists of nine stimulation cycles repeated every 100 s. d) Volumetric OAT image of the mouse brain (HbO component is shown). e) The corresponding magnetic resonance angiography (MRA) image acquired with the fast low angle shot (FLASH) sequence. f) Axial and sagittal views of the coregistered OAT and MRA images.

    Journal: Advanced Science

    Article Title: Simultaneous Functional Magnetic Resonance and Optoacoustic Imaging of Brain‐Wide Sensory Responses in Mice

    doi: 10.1002/advs.202205191

    Figure Lengend Snippet: Hybrid system for concurrent magnetic resonance optoacoustic tomography (MROT) imaging of murine brain activation. a) Illustration showing the imaging performance comparison between fMRI and OAT and the high complementary value of their combination for functional neuroimaging studies. b) Schematics of the hybrid MROT system featuring the 9.4T MRI bore inserted with a customized MRI‐compatible spherical matric array transducer for volumetric data acquisition, a fiber bundle for pulsed light delivery, animal fixation parts, and radiofrequency (RF) coils. c) Electrical stimulation paradigm applied to the left forepaw of a mouse. Stimulation cycle parameters: 0.5 ms pulse duration, 0.5 mA current, 4 Hz pulse repetition frequency, 20 s duration. One stimulation sequence consists of nine stimulation cycles repeated every 100 s. d) Volumetric OAT image of the mouse brain (HbO component is shown). e) The corresponding magnetic resonance angiography (MRA) image acquired with the fast low angle shot (FLASH) sequence. f) Axial and sagittal views of the coregistered OAT and MRA images.

    Article Snippet: The hybrid MROT imaging system (Figure ) was based on a customized MRI‐compatible spherical matrix transducer array (Imasonic SAS, Voray, France), MRI‐compatible fiber bundle (CeramOptec GmbH, Bonn, Germany), and a customized RF coil integrated into a 3D‐printed animal holder and inserted into a high‐field MRI scanner (BioSpec 94/20, Bruker BioSpin, Germany).

    Techniques: Tomography, Imaging, Activation Assay, Functional Assay, Sequencing