The Experts below are selected from a list of 231 Experts worldwide ranked by ideXlab platform

Ryu Kato - One of the best experts on this subject based on the ideXlab platform.

  • investigation of a Cognitive Strain on hand grasping induced by sensory feedback for myoelectric hand
    International Conference on Robotics and Automation, 2016
    Co-Authors: Hiroshi Yamada, Yusuke Yamanoi, Ko Wakita, Ryu Kato
    Abstract:

    The purpose of this study is to investigate how sensory feedback affects the Cognitive Strain of grasping using a prosthesis and to develop an efficient method for decreasing the Cognitive Strain of grasping. We divided a grasping action into two phases, an “approaching phase” and a “grasping phase”, and assumed that the tactile feedback affect for the Cognitive Strain induced by grasping phase and the deep sensory feedback affect for Cognitive Strain induced by approaching phase. Using dual-task method, we compared the effect of sensory feedback method using strength-changed simulator or using spatially changed stimulators. As a result, we concluded that the sensory feedback can decrease the Cognitive Strain of grasping action, and the sensory feedback from one strength-changed stimulator is better than the one from spatially changed stimulators to decrease a Cognitive Strain caused by grasping action.

  • ICRA - Investigation of a Cognitive Strain on hand grasping induced by sensory feedback for myoelectric hand
    2016 IEEE International Conference on Robotics and Automation (ICRA), 2016
    Co-Authors: Hiroshi Yamada, Yusuke Yamanoi, Ko Wakita, Ryu Kato
    Abstract:

    The purpose of this study is to investigate how sensory feedback affects the Cognitive Strain of grasping using a prosthesis and to develop an efficient method for decreasing the Cognitive Strain of grasping. We divided a grasping action into two phases, an “approaching phase” and a “grasping phase”, and assumed that the tactile feedback affect for the Cognitive Strain induced by grasping phase and the deep sensory feedback affect for Cognitive Strain induced by approaching phase. Using dual-task method, we compared the effect of sensory feedback method using strength-changed simulator or using spatially changed stimulators. As a result, we concluded that the sensory feedback can decrease the Cognitive Strain of grasping action, and the sensory feedback from one strength-changed stimulator is better than the one from spatially changed stimulators to decrease a Cognitive Strain caused by grasping action.

Hiroshi Yamada - One of the best experts on this subject based on the ideXlab platform.

  • investigation of a Cognitive Strain on hand grasping induced by sensory feedback for myoelectric hand
    International Conference on Robotics and Automation, 2016
    Co-Authors: Hiroshi Yamada, Yusuke Yamanoi, Ko Wakita, Ryu Kato
    Abstract:

    The purpose of this study is to investigate how sensory feedback affects the Cognitive Strain of grasping using a prosthesis and to develop an efficient method for decreasing the Cognitive Strain of grasping. We divided a grasping action into two phases, an “approaching phase” and a “grasping phase”, and assumed that the tactile feedback affect for the Cognitive Strain induced by grasping phase and the deep sensory feedback affect for Cognitive Strain induced by approaching phase. Using dual-task method, we compared the effect of sensory feedback method using strength-changed simulator or using spatially changed stimulators. As a result, we concluded that the sensory feedback can decrease the Cognitive Strain of grasping action, and the sensory feedback from one strength-changed stimulator is better than the one from spatially changed stimulators to decrease a Cognitive Strain caused by grasping action.

  • ICRA - Investigation of a Cognitive Strain on hand grasping induced by sensory feedback for myoelectric hand
    2016 IEEE International Conference on Robotics and Automation (ICRA), 2016
    Co-Authors: Hiroshi Yamada, Yusuke Yamanoi, Ko Wakita, Ryu Kato
    Abstract:

    The purpose of this study is to investigate how sensory feedback affects the Cognitive Strain of grasping using a prosthesis and to develop an efficient method for decreasing the Cognitive Strain of grasping. We divided a grasping action into two phases, an “approaching phase” and a “grasping phase”, and assumed that the tactile feedback affect for the Cognitive Strain induced by grasping phase and the deep sensory feedback affect for Cognitive Strain induced by approaching phase. Using dual-task method, we compared the effect of sensory feedback method using strength-changed simulator or using spatially changed stimulators. As a result, we concluded that the sensory feedback can decrease the Cognitive Strain of grasping action, and the sensory feedback from one strength-changed stimulator is better than the one from spatially changed stimulators to decrease a Cognitive Strain caused by grasping action.

Ko Wakita - One of the best experts on this subject based on the ideXlab platform.

  • investigation of a Cognitive Strain on hand grasping induced by sensory feedback for myoelectric hand
    International Conference on Robotics and Automation, 2016
    Co-Authors: Hiroshi Yamada, Yusuke Yamanoi, Ko Wakita, Ryu Kato
    Abstract:

    The purpose of this study is to investigate how sensory feedback affects the Cognitive Strain of grasping using a prosthesis and to develop an efficient method for decreasing the Cognitive Strain of grasping. We divided a grasping action into two phases, an “approaching phase” and a “grasping phase”, and assumed that the tactile feedback affect for the Cognitive Strain induced by grasping phase and the deep sensory feedback affect for Cognitive Strain induced by approaching phase. Using dual-task method, we compared the effect of sensory feedback method using strength-changed simulator or using spatially changed stimulators. As a result, we concluded that the sensory feedback can decrease the Cognitive Strain of grasping action, and the sensory feedback from one strength-changed stimulator is better than the one from spatially changed stimulators to decrease a Cognitive Strain caused by grasping action.

  • ICRA - Investigation of a Cognitive Strain on hand grasping induced by sensory feedback for myoelectric hand
    2016 IEEE International Conference on Robotics and Automation (ICRA), 2016
    Co-Authors: Hiroshi Yamada, Yusuke Yamanoi, Ko Wakita, Ryu Kato
    Abstract:

    The purpose of this study is to investigate how sensory feedback affects the Cognitive Strain of grasping using a prosthesis and to develop an efficient method for decreasing the Cognitive Strain of grasping. We divided a grasping action into two phases, an “approaching phase” and a “grasping phase”, and assumed that the tactile feedback affect for the Cognitive Strain induced by grasping phase and the deep sensory feedback affect for Cognitive Strain induced by approaching phase. Using dual-task method, we compared the effect of sensory feedback method using strength-changed simulator or using spatially changed stimulators. As a result, we concluded that the sensory feedback can decrease the Cognitive Strain of grasping action, and the sensory feedback from one strength-changed stimulator is better than the one from spatially changed stimulators to decrease a Cognitive Strain caused by grasping action.

Yusuke Yamanoi - One of the best experts on this subject based on the ideXlab platform.

  • investigation of a Cognitive Strain on hand grasping induced by sensory feedback for myoelectric hand
    International Conference on Robotics and Automation, 2016
    Co-Authors: Hiroshi Yamada, Yusuke Yamanoi, Ko Wakita, Ryu Kato
    Abstract:

    The purpose of this study is to investigate how sensory feedback affects the Cognitive Strain of grasping using a prosthesis and to develop an efficient method for decreasing the Cognitive Strain of grasping. We divided a grasping action into two phases, an “approaching phase” and a “grasping phase”, and assumed that the tactile feedback affect for the Cognitive Strain induced by grasping phase and the deep sensory feedback affect for Cognitive Strain induced by approaching phase. Using dual-task method, we compared the effect of sensory feedback method using strength-changed simulator or using spatially changed stimulators. As a result, we concluded that the sensory feedback can decrease the Cognitive Strain of grasping action, and the sensory feedback from one strength-changed stimulator is better than the one from spatially changed stimulators to decrease a Cognitive Strain caused by grasping action.

  • ICRA - Investigation of a Cognitive Strain on hand grasping induced by sensory feedback for myoelectric hand
    2016 IEEE International Conference on Robotics and Automation (ICRA), 2016
    Co-Authors: Hiroshi Yamada, Yusuke Yamanoi, Ko Wakita, Ryu Kato
    Abstract:

    The purpose of this study is to investigate how sensory feedback affects the Cognitive Strain of grasping using a prosthesis and to develop an efficient method for decreasing the Cognitive Strain of grasping. We divided a grasping action into two phases, an “approaching phase” and a “grasping phase”, and assumed that the tactile feedback affect for the Cognitive Strain induced by grasping phase and the deep sensory feedback affect for Cognitive Strain induced by approaching phase. Using dual-task method, we compared the effect of sensory feedback method using strength-changed simulator or using spatially changed stimulators. As a result, we concluded that the sensory feedback can decrease the Cognitive Strain of grasping action, and the sensory feedback from one strength-changed stimulator is better than the one from spatially changed stimulators to decrease a Cognitive Strain caused by grasping action.

Stephan Zipfel - One of the best experts on this subject based on the ideXlab platform.

  • Cluster-randomised trial evaluating a complex intervention to improve mental health and well-being of employees working in hospital – a protocol for the SEEGEN trial
    BMC public health, 2019
    Co-Authors: Nadine Mulfinger, Anja Sander, Felicitas Stuber, Regina Brinster, Florian Junne, Ronald Limprecht, Marc N. Jarczok, Tanja Seifried-dübon, Monika A. Rieger, Stephan Zipfel
    Abstract:

    Health care employees in Germany and worldwide are exposed to a variety of stressors. However, most of the hospitals in Germany lack a systematic workplace health management. Thus, this study aims at the evaluation of the effects of a behavioural as well as organisational (´complex´) intervention on the mental health and well-being of hospital staff. Mental health in the hospital workplace (SEElische GEsundheit am Arbeitsplatz KrankeNhaus – SEEGEN) is an unblinded, multi-centred cluster-randomised open trial with two groups (intervention group (IG) and waitlist control group (CG)). Study participants in the intervention clusters will receive the complex intervention; study participants in the waitlist control clusters will receive the complex intervention after the last follow-up measurement. The intervention consists of five behavioural and organisational intervention modules that are specifically tailored to hospital employees at different hierarchical and functional levels. Hospital staff may select one specific module according to their position and specific needs or interests. Towards the end of the intervention roundtable discussions with representatives from all professional groups will be held to facilitate organisational change. Primary outcome is the change in emotional and Cognitive Strain in the working environment, from baseline (T0) to 6 month-follow up (T1), between IG and CG. In addition, employees who do not participate in the modules are included in the trial by answering shorter questionnaires (cluster participants). Furthermore, using mixed methods, a process evaluation will identify uptake of the intervention, and mediators and moderators of the effect. There seems to be growing psychological Strain on people working in the health care sector worldwide. This study will examine whether investing directly in the hospital staff and their interpersonal relationship may lead to measurable benefits in subjective well-being at the workplace and improved economic performance indicators of the hospital. In case of a positive outcome, health promotion strategies looking at behavioural as well as organisational components within the hospital may gain additional importance, especially in regard of the growing financial pressure within the health sector. The SEEGEN study is registered at the German Clinical Trial Register (DRKS) under the DRKS-ID DRKS00017249. Registered 08 October 2019, URL. https://www.drks.de/drks_web/navigate.do?navigationId=trial.HTML&TRIAL_ID=DRKS00017249.