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ultrasound data  (MathWorks Inc)


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    Structured Review

    MathWorks Inc ultrasound data
    Figure 1. Experimental setup. A participant was seated in a chair that was able to recline. The image here shows a participant in the “reclined” position (40 degrees), but data for this study only used swallows collected in the upright position (75−90 degrees). Superimposed graphic shows the <t>ultrasound</t> image with respect to the participant’s mouth. The ultrasound machine (Philips EPIQ, Phillips Healthcare, Andover, MA, USA) was kept in a separate room (not shown) to keep the data collection area quiet.
    Ultrasound Data, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 96/100, based on 2340 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/ultrasound+toolbox+for/Database+Toolbox/pm40320346-86-7-21
    Average 96 stars, based on 2340 article reviews
    ultrasound data - by Bioz Stars, 2026-10
    96/100 stars

    Images

    1) Product Images from "Reliability of 3-D/4-D Ultrasound Contouring of Tongue Surface During Swallowing."

    Article Title: Reliability of 3-D/4-D Ultrasound Contouring of Tongue Surface During Swallowing.

    Journal: Ultrasound in medicine & biology

    doi: 10.1016/j.ultrasmedbio.2025.03.016

    Figure 1. Experimental setup. A participant was seated in a chair that was able to recline. The image here shows a participant in the “reclined” position (40 degrees), but data for this study only used swallows collected in the upright position (75−90 degrees). Superimposed graphic shows the ultrasound image with respect to the participant’s mouth. The ultrasound machine (Philips EPIQ, Phillips Healthcare, Andover, MA, USA) was kept in a separate room (not shown) to keep the data collection area quiet.
    Figure Legend Snippet: Figure 1. Experimental setup. A participant was seated in a chair that was able to recline. The image here shows a participant in the “reclined” position (40 degrees), but data for this study only used swallows collected in the upright position (75−90 degrees). Superimposed graphic shows the ultrasound image with respect to the participant’s mouth. The ultrasound machine (Philips EPIQ, Phillips Healthcare, Andover, MA, USA) was kept in a separate room (not shown) to keep the data collection area quiet.

    Techniques Used:

    Figure 2. Representative images depicting the manual contour on the WASL Program in MATLab across three planes. The white arrow indicates points representing manual tracing. The corresponding scale (color bar) is the same for all three ultrasound images and shows the ultrasound image voxel intensity at 8-bit quan- tization (0−255).
    Figure Legend Snippet: Figure 2. Representative images depicting the manual contour on the WASL Program in MATLab across three planes. The white arrow indicates points representing manual tracing. The corresponding scale (color bar) is the same for all three ultrasound images and shows the ultrasound image voxel intensity at 8-bit quan- tization (0−255).

    Techniques Used:

    Related Articles

    other:

    Article Title: SUPRA: open-source software-defined ultrasound processing for real-time applications : A 2D and 3D pipeline from beamforming to B-mode.
    Article Snippet: Besides those efforts, a group of researchers recently announced the UltraSound ToolBox for MATLAB [11].



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    Image Search Results


    Figure 1. Experimental setup. A participant was seated in a chair that was able to recline. The image here shows a participant in the “reclined” position (40 degrees), but data for this study only used swallows collected in the upright position (75−90 degrees). Superimposed graphic shows the ultrasound image with respect to the participant’s mouth. The ultrasound machine (Philips EPIQ, Phillips Healthcare, Andover, MA, USA) was kept in a separate room (not shown) to keep the data collection area quiet.

    Journal: Ultrasound in medicine & biology

    Article Title: Reliability of 3-D/4-D Ultrasound Contouring of Tongue Surface During Swallowing.

    doi: 10.1016/j.ultrasmedbio.2025.03.016

    Figure Lengend Snippet: Figure 1. Experimental setup. A participant was seated in a chair that was able to recline. The image here shows a participant in the “reclined” position (40 degrees), but data for this study only used swallows collected in the upright position (75−90 degrees). Superimposed graphic shows the ultrasound image with respect to the participant’s mouth. The ultrasound machine (Philips EPIQ, Phillips Healthcare, Andover, MA, USA) was kept in a separate room (not shown) to keep the data collection area quiet.

    Article Snippet: Method for 3-D/4-D ultrasound analysis of swallowing Ultrasound data were analyzed using an open-source WASL toolbox (WASL 10.3.6; Lulich [37]) for MATLAB (MATLAB; Mathworks, Natick, MA, USA) software program [37,39].

    Techniques:

    Figure 2. Representative images depicting the manual contour on the WASL Program in MATLab across three planes. The white arrow indicates points representing manual tracing. The corresponding scale (color bar) is the same for all three ultrasound images and shows the ultrasound image voxel intensity at 8-bit quan- tization (0−255).

    Journal: Ultrasound in medicine & biology

    Article Title: Reliability of 3-D/4-D Ultrasound Contouring of Tongue Surface During Swallowing.

    doi: 10.1016/j.ultrasmedbio.2025.03.016

    Figure Lengend Snippet: Figure 2. Representative images depicting the manual contour on the WASL Program in MATLab across three planes. The white arrow indicates points representing manual tracing. The corresponding scale (color bar) is the same for all three ultrasound images and shows the ultrasound image voxel intensity at 8-bit quan- tization (0−255).

    Article Snippet: Method for 3-D/4-D ultrasound analysis of swallowing Ultrasound data were analyzed using an open-source WASL toolbox (WASL 10.3.6; Lulich [37]) for MATLAB (MATLAB; Mathworks, Natick, MA, USA) software program [37,39].

    Techniques: