The Experts below are selected from a list of 309 Experts worldwide ranked by ideXlab platform

Marian Walter - One of the best experts on this subject based on the ideXlab platform.

  • SensInDenT—Noncontact Sensors Integrated Into Dental Treatment Units
    IEEE Transactions on Biomedical Circuits and Systems, 2017
    Co-Authors: Daniel Teichmann, Maren Teichmann, Philippe Weitz, Stefan Wolfart, Steffen Leonhardt, Marian Walter
    Abstract:

    This paper presents the first system design (SensInDenT) for noncontact cardiorespiratory monitoring during Dental Treatment. The system is integrated into a Dental Treatment unit, and combines sensors based on electromagnetic, optical, and mechanical coupling at different sensor locations. The measurement principles and circuits are described and a system overview is presented. Furthermore, a first proof of concept is provided by taking measurements in healthy volunteers under laboratory conditions.

  • SensInDenT-Noncontact Sensors Integrated Into Dental Treatment Units.
    IEEE Transactions on Biomedical Circuits and Systems, 2016
    Co-Authors: Daniel Teichmann, Maren Teichmann, Philippe Weitz, Stefan Wolfart, Steffen Leonhardt, Marian Walter
    Abstract:

    This paper presents the first system design (SensInDenT) for noncontact cardiorespiratory monitoring during Dental Treatment. The system is integrated into a Dental Treatment unit, and combines sensors based on electromagnetic, optical, and mechanical coupling at different sensor locations. The measurement principles and circuits are described and a system overview is presented. Furthermore, a first proof of concept is provided by taking measurements in healthy volunteers under laboratory conditions.

Daniel Teichmann - One of the best experts on this subject based on the ideXlab platform.

  • SensInDenT—Noncontact Sensors Integrated Into Dental Treatment Units
    IEEE Transactions on Biomedical Circuits and Systems, 2017
    Co-Authors: Daniel Teichmann, Maren Teichmann, Philippe Weitz, Stefan Wolfart, Steffen Leonhardt, Marian Walter
    Abstract:

    This paper presents the first system design (SensInDenT) for noncontact cardiorespiratory monitoring during Dental Treatment. The system is integrated into a Dental Treatment unit, and combines sensors based on electromagnetic, optical, and mechanical coupling at different sensor locations. The measurement principles and circuits are described and a system overview is presented. Furthermore, a first proof of concept is provided by taking measurements in healthy volunteers under laboratory conditions.

  • SensInDenT-Noncontact Sensors Integrated Into Dental Treatment Units.
    IEEE Transactions on Biomedical Circuits and Systems, 2016
    Co-Authors: Daniel Teichmann, Maren Teichmann, Philippe Weitz, Stefan Wolfart, Steffen Leonhardt, Marian Walter
    Abstract:

    This paper presents the first system design (SensInDenT) for noncontact cardiorespiratory monitoring during Dental Treatment. The system is integrated into a Dental Treatment unit, and combines sensors based on electromagnetic, optical, and mechanical coupling at different sensor locations. The measurement principles and circuits are described and a system overview is presented. Furthermore, a first proof of concept is provided by taking measurements in healthy volunteers under laboratory conditions.

Steffen Leonhardt - One of the best experts on this subject based on the ideXlab platform.

  • SensInDenT—Noncontact Sensors Integrated Into Dental Treatment Units
    IEEE Transactions on Biomedical Circuits and Systems, 2017
    Co-Authors: Daniel Teichmann, Maren Teichmann, Philippe Weitz, Stefan Wolfart, Steffen Leonhardt, Marian Walter
    Abstract:

    This paper presents the first system design (SensInDenT) for noncontact cardiorespiratory monitoring during Dental Treatment. The system is integrated into a Dental Treatment unit, and combines sensors based on electromagnetic, optical, and mechanical coupling at different sensor locations. The measurement principles and circuits are described and a system overview is presented. Furthermore, a first proof of concept is provided by taking measurements in healthy volunteers under laboratory conditions.

  • SensInDenT-Noncontact Sensors Integrated Into Dental Treatment Units.
    IEEE Transactions on Biomedical Circuits and Systems, 2016
    Co-Authors: Daniel Teichmann, Maren Teichmann, Philippe Weitz, Stefan Wolfart, Steffen Leonhardt, Marian Walter
    Abstract:

    This paper presents the first system design (SensInDenT) for noncontact cardiorespiratory monitoring during Dental Treatment. The system is integrated into a Dental Treatment unit, and combines sensors based on electromagnetic, optical, and mechanical coupling at different sensor locations. The measurement principles and circuits are described and a system overview is presented. Furthermore, a first proof of concept is provided by taking measurements in healthy volunteers under laboratory conditions.

Stefan Wolfart - One of the best experts on this subject based on the ideXlab platform.

  • SensInDenT—Noncontact Sensors Integrated Into Dental Treatment Units
    IEEE Transactions on Biomedical Circuits and Systems, 2017
    Co-Authors: Daniel Teichmann, Maren Teichmann, Philippe Weitz, Stefan Wolfart, Steffen Leonhardt, Marian Walter
    Abstract:

    This paper presents the first system design (SensInDenT) for noncontact cardiorespiratory monitoring during Dental Treatment. The system is integrated into a Dental Treatment unit, and combines sensors based on electromagnetic, optical, and mechanical coupling at different sensor locations. The measurement principles and circuits are described and a system overview is presented. Furthermore, a first proof of concept is provided by taking measurements in healthy volunteers under laboratory conditions.

  • SensInDenT-Noncontact Sensors Integrated Into Dental Treatment Units.
    IEEE Transactions on Biomedical Circuits and Systems, 2016
    Co-Authors: Daniel Teichmann, Maren Teichmann, Philippe Weitz, Stefan Wolfart, Steffen Leonhardt, Marian Walter
    Abstract:

    This paper presents the first system design (SensInDenT) for noncontact cardiorespiratory monitoring during Dental Treatment. The system is integrated into a Dental Treatment unit, and combines sensors based on electromagnetic, optical, and mechanical coupling at different sensor locations. The measurement principles and circuits are described and a system overview is presented. Furthermore, a first proof of concept is provided by taking measurements in healthy volunteers under laboratory conditions.

Philippe Weitz - One of the best experts on this subject based on the ideXlab platform.

  • SensInDenT—Noncontact Sensors Integrated Into Dental Treatment Units
    IEEE Transactions on Biomedical Circuits and Systems, 2017
    Co-Authors: Daniel Teichmann, Maren Teichmann, Philippe Weitz, Stefan Wolfart, Steffen Leonhardt, Marian Walter
    Abstract:

    This paper presents the first system design (SensInDenT) for noncontact cardiorespiratory monitoring during Dental Treatment. The system is integrated into a Dental Treatment unit, and combines sensors based on electromagnetic, optical, and mechanical coupling at different sensor locations. The measurement principles and circuits are described and a system overview is presented. Furthermore, a first proof of concept is provided by taking measurements in healthy volunteers under laboratory conditions.

  • SensInDenT-Noncontact Sensors Integrated Into Dental Treatment Units.
    IEEE Transactions on Biomedical Circuits and Systems, 2016
    Co-Authors: Daniel Teichmann, Maren Teichmann, Philippe Weitz, Stefan Wolfart, Steffen Leonhardt, Marian Walter
    Abstract:

    This paper presents the first system design (SensInDenT) for noncontact cardiorespiratory monitoring during Dental Treatment. The system is integrated into a Dental Treatment unit, and combines sensors based on electromagnetic, optical, and mechanical coupling at different sensor locations. The measurement principles and circuits are described and a system overview is presented. Furthermore, a first proof of concept is provided by taking measurements in healthy volunteers under laboratory conditions.