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pilot tone based gating signals for respiratory motion  (Respiratory Motion)

 
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    Structured Review

    Respiratory Motion pilot tone based gating signals for respiratory motion
    (Top) Comparison between the aperiodic respiratory ground truth signal (blue) of the phantom and the corresponding extracted <t>Pilot</t> <t>Tone</t> signal (red). (Bottom) The cardiac trigger of the phantom (blue) provided as ground truth is compared to the detected and recovered cardiac signal (red) of the Pilot Tone. For a better comparison between the cardiac <t>signals,</t> a discrete version of the Pilot Tone signal (green) is plotted as well. For both types of motion (respiratory and cardiac) the Pilot Tone can recover a signal similar to the ground truth.
    Pilot Tone Based Gating Signals For Respiratory Motion, supplied by Respiratory Motion, 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/pilot+tone+based+gating+signals+for+respiratory+motion/pilot+tone+based+gating+signals+for+respiratory+motion/pmc07039314-168-0-6
    Average 90 stars, based on 1 article reviews
    pilot tone based gating signals for respiratory motion - by Bioz Stars, 2026-09
    90/100 stars

    Images

    1) Product Images from "Respiratory Motion Detection and Correction for MR Using the Pilot Tone: Applications for MR and Simultaneous PET/MR Exams"

    Article Title: Respiratory Motion Detection and Correction for MR Using the Pilot Tone: Applications for MR and Simultaneous PET/MR Exams

    Journal: Investigative radiology

    doi: 10.1097/RLI.0000000000000619

    (Top) Comparison between the aperiodic respiratory ground truth signal (blue) of the phantom and the corresponding extracted Pilot Tone signal (red). (Bottom) The cardiac trigger of the phantom (blue) provided as ground truth is compared to the detected and recovered cardiac signal (red) of the Pilot Tone. For a better comparison between the cardiac signals, a discrete version of the Pilot Tone signal (green) is plotted as well. For both types of motion (respiratory and cardiac) the Pilot Tone can recover a signal similar to the ground truth.
    Figure Legend Snippet: (Top) Comparison between the aperiodic respiratory ground truth signal (blue) of the phantom and the corresponding extracted Pilot Tone signal (red). (Bottom) The cardiac trigger of the phantom (blue) provided as ground truth is compared to the detected and recovered cardiac signal (red) of the Pilot Tone. For a better comparison between the cardiac signals, a discrete version of the Pilot Tone signal (green) is plotted as well. For both types of motion (respiratory and cardiac) the Pilot Tone can recover a signal similar to the ground truth.

    Techniques Used: Comparison

    Respiratory signals for different volunteers extracted from Pilot Tone data acquired as described in Section 2.3, Setup a). The volunteer in a) started to breath unregularly towards the end of the RAVE (DCE) acquisition. For the second volunteer presented in b) the signal acquired with the respiratory belt is shown for comparison as well. In all cases the Pilot Tone signals look comparable to the signals provided by the belt.
    Figure Legend Snippet: Respiratory signals for different volunteers extracted from Pilot Tone data acquired as described in Section 2.3, Setup a). The volunteer in a) started to breath unregularly towards the end of the RAVE (DCE) acquisition. For the second volunteer presented in b) the signal acquired with the respiratory belt is shown for comparison as well. In all cases the Pilot Tone signals look comparable to the signals provided by the belt.

    Techniques Used: Comparison

    Related Articles

    Positron Emission Tomography:

    Article Title: Respiratory Motion Detection and Correction for MR Using the Pilot Tone: Applications for MR and Simultaneous PET/MR Exams
    Article Snippet: .. Pilot Tone based gating signals for respiratory motion extracted from the MR raw data were transferred to the PET listmode for the histogramming of 5 sinograms, one for each respective motion state. ..



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    Respiratory Motion pilot tone based gating signals for respiratory motion
    (Top) Comparison between the aperiodic respiratory ground truth signal (blue) of the phantom and the corresponding extracted <t>Pilot</t> <t>Tone</t> signal (red). (Bottom) The cardiac trigger of the phantom (blue) provided as ground truth is compared to the detected and recovered cardiac signal (red) of the Pilot Tone. For a better comparison between the cardiac <t>signals,</t> a discrete version of the Pilot Tone signal (green) is plotted as well. For both types of motion (respiratory and cardiac) the Pilot Tone can recover a signal similar to the ground truth.
    Pilot Tone Based Gating Signals For Respiratory Motion, supplied by Respiratory Motion, 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/pilot+tone+based+gating+signals+for+respiratory+motion/pilot+tone+based+gating+signals+for+respiratory+motion/pmc07039314-168-0-6
    Average 90 stars, based on 1 article reviews
    pilot tone based gating signals for respiratory motion - by Bioz Stars, 2026-09
    90/100 stars
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    Image Search Results


    (Top) Comparison between the aperiodic respiratory ground truth signal (blue) of the phantom and the corresponding extracted Pilot Tone signal (red). (Bottom) The cardiac trigger of the phantom (blue) provided as ground truth is compared to the detected and recovered cardiac signal (red) of the Pilot Tone. For a better comparison between the cardiac signals, a discrete version of the Pilot Tone signal (green) is plotted as well. For both types of motion (respiratory and cardiac) the Pilot Tone can recover a signal similar to the ground truth.

    Journal: Investigative radiology

    Article Title: Respiratory Motion Detection and Correction for MR Using the Pilot Tone: Applications for MR and Simultaneous PET/MR Exams

    doi: 10.1097/RLI.0000000000000619

    Figure Lengend Snippet: (Top) Comparison between the aperiodic respiratory ground truth signal (blue) of the phantom and the corresponding extracted Pilot Tone signal (red). (Bottom) The cardiac trigger of the phantom (blue) provided as ground truth is compared to the detected and recovered cardiac signal (red) of the Pilot Tone. For a better comparison between the cardiac signals, a discrete version of the Pilot Tone signal (green) is plotted as well. For both types of motion (respiratory and cardiac) the Pilot Tone can recover a signal similar to the ground truth.

    Article Snippet: Pilot Tone based gating signals for respiratory motion extracted from the MR raw data were transferred to the PET listmode for the histogramming of 5 sinograms, one for each respective motion state.

    Techniques: Comparison

    Respiratory signals for different volunteers extracted from Pilot Tone data acquired as described in Section 2.3, Setup a). The volunteer in a) started to breath unregularly towards the end of the RAVE (DCE) acquisition. For the second volunteer presented in b) the signal acquired with the respiratory belt is shown for comparison as well. In all cases the Pilot Tone signals look comparable to the signals provided by the belt.

    Journal: Investigative radiology

    Article Title: Respiratory Motion Detection and Correction for MR Using the Pilot Tone: Applications for MR and Simultaneous PET/MR Exams

    doi: 10.1097/RLI.0000000000000619

    Figure Lengend Snippet: Respiratory signals for different volunteers extracted from Pilot Tone data acquired as described in Section 2.3, Setup a). The volunteer in a) started to breath unregularly towards the end of the RAVE (DCE) acquisition. For the second volunteer presented in b) the signal acquired with the respiratory belt is shown for comparison as well. In all cases the Pilot Tone signals look comparable to the signals provided by the belt.

    Article Snippet: Pilot Tone based gating signals for respiratory motion extracted from the MR raw data were transferred to the PET listmode for the histogramming of 5 sinograms, one for each respective motion state.

    Techniques: Comparison