elemental composition Search Results


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Confocal arrangement of the imaging probe and the high-intensity focused ultrasound <t>transducer</t>
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Confocal arrangement of the imaging probe and the high-intensity focused ultrasound <t>transducer</t>
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Image Search Results


Confocal arrangement of the imaging probe and the high-intensity focused ultrasound transducer

Journal: Journal of Medical Signals and Sensors

Article Title: Noninvasive Monitoring of Tissue Temperature Changes Induced by Focused Ultrasound Exposure using Sparse Expression of Ultrasonic Radio Frequency Echo Signals

doi: 10.4103/jmss.jmss_23_23

Figure Lengend Snippet: Confocal arrangement of the imaging probe and the high-intensity focused ultrasound transducer

Article Snippet: To this end, a piezo composite single-element spherically focused HIFU transducer (Model 6699A101, Imasonic SAS, Voray sur l’Ognon, France) with a frequency of 1 MHz and aperture diameter of 125 mm was used.

Techniques: Imaging

The timing sequence of high-intensity focused ultrasound exposure and radio frequency echo data acquisition

Journal: Journal of Medical Signals and Sensors

Article Title: Noninvasive Monitoring of Tissue Temperature Changes Induced by Focused Ultrasound Exposure using Sparse Expression of Ultrasonic Radio Frequency Echo Signals

doi: 10.4103/jmss.jmss_23_23

Figure Lengend Snippet: The timing sequence of high-intensity focused ultrasound exposure and radio frequency echo data acquisition

Article Snippet: To this end, a piezo composite single-element spherically focused HIFU transducer (Model 6699A101, Imasonic SAS, Voray sur l’Ognon, France) with a frequency of 1 MHz and aperture diameter of 125 mm was used.

Techniques: Sequencing

Illustration and comparison of the radio frequency signal of an arbitrary frame (frame 2) in the regions of interest before and after the initial transformation using high-intensity focused ultrasound data

Journal: Journal of Medical Signals and Sensors

Article Title: Noninvasive Monitoring of Tissue Temperature Changes Induced by Focused Ultrasound Exposure using Sparse Expression of Ultrasonic Radio Frequency Echo Signals

doi: 10.4103/jmss.jmss_23_23

Figure Lengend Snippet: Illustration and comparison of the radio frequency signal of an arbitrary frame (frame 2) in the regions of interest before and after the initial transformation using high-intensity focused ultrasound data

Article Snippet: To this end, a piezo composite single-element spherically focused HIFU transducer (Model 6699A101, Imasonic SAS, Voray sur l’Ognon, France) with a frequency of 1 MHz and aperture diameter of 125 mm was used.

Techniques: Comparison, Transformation Assay

Illustration and comparison of the radio frequency signal of an arbitrary frame (frame 2) before and after the sparse algorithm in high-intensity focused ultrasound data

Journal: Journal of Medical Signals and Sensors

Article Title: Noninvasive Monitoring of Tissue Temperature Changes Induced by Focused Ultrasound Exposure using Sparse Expression of Ultrasonic Radio Frequency Echo Signals

doi: 10.4103/jmss.jmss_23_23

Figure Lengend Snippet: Illustration and comparison of the radio frequency signal of an arbitrary frame (frame 2) before and after the sparse algorithm in high-intensity focused ultrasound data

Article Snippet: To this end, a piezo composite single-element spherically focused HIFU transducer (Model 6699A101, Imasonic SAS, Voray sur l’Ognon, France) with a frequency of 1 MHz and aperture diameter of 125 mm was used.

Techniques: Comparison

Schematic of the hypothetical window for the thermal distribution in an arbitrary frame of high-intensity focused ultrasound data

Journal: Journal of Medical Signals and Sensors

Article Title: Noninvasive Monitoring of Tissue Temperature Changes Induced by Focused Ultrasound Exposure using Sparse Expression of Ultrasonic Radio Frequency Echo Signals

doi: 10.4103/jmss.jmss_23_23

Figure Lengend Snippet: Schematic of the hypothetical window for the thermal distribution in an arbitrary frame of high-intensity focused ultrasound data

Article Snippet: To this end, a piezo composite single-element spherically focused HIFU transducer (Model 6699A101, Imasonic SAS, Voray sur l’Ognon, France) with a frequency of 1 MHz and aperture diameter of 125 mm was used.

Techniques:

Tissue thermal distribution during high-intensity focused ultrasound radiation at different powers using windows of 200 samples and 10 radio frequency lines

Journal: Journal of Medical Signals and Sensors

Article Title: Noninvasive Monitoring of Tissue Temperature Changes Induced by Focused Ultrasound Exposure using Sparse Expression of Ultrasonic Radio Frequency Echo Signals

doi: 10.4103/jmss.jmss_23_23

Figure Lengend Snippet: Tissue thermal distribution during high-intensity focused ultrasound radiation at different powers using windows of 200 samples and 10 radio frequency lines

Article Snippet: To this end, a piezo composite single-element spherically focused HIFU transducer (Model 6699A101, Imasonic SAS, Voray sur l’Ognon, France) with a frequency of 1 MHz and aperture diameter of 125 mm was used.

Techniques:

Tissue thermal distribution during high-intensity focused ultrasound radiation at different powers on a common scale by windows of 200 samples and 10 radio frequency lines

Journal: Journal of Medical Signals and Sensors

Article Title: Noninvasive Monitoring of Tissue Temperature Changes Induced by Focused Ultrasound Exposure using Sparse Expression of Ultrasonic Radio Frequency Echo Signals

doi: 10.4103/jmss.jmss_23_23

Figure Lengend Snippet: Tissue thermal distribution during high-intensity focused ultrasound radiation at different powers on a common scale by windows of 200 samples and 10 radio frequency lines

Article Snippet: To this end, a piezo composite single-element spherically focused HIFU transducer (Model 6699A101, Imasonic SAS, Voray sur l’Ognon, France) with a frequency of 1 MHz and aperture diameter of 125 mm was used.

Techniques: