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首页> 外文期刊>Anesthesia and Analgesia: Journal of the International Anesthesia Research Society >A vibro-tactile display for clinical monitoring: Real-time evaluation
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A vibro-tactile display for clinical monitoring: Real-time evaluation

机译:用于临床监测的触觉显示器:实时评估

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Background: Vibro-tactile displays use human skin to convey information from physiological monitors to anesthesiologists, providing cues about changes in the status of the patient. In this investigation, we evaluated, in a real-time clinical environment, the usability and wearability of a novel vibro-tactile display belt recently developed by our group, and determined its accuracy in identifying events when used by anesthesiologists. Methods: A prospective observational study design was used. During routine anesthesia, a standard physiological monitor was connected to a software tool that used algorithms to automatically identify changing trends in mean noninvasive arterial blood pressure, expired minute ventilation, peak airway pressure, and end-tidal carbon dioxide partial pressure. The software was wirelessly interfaced to a vibro-tactile belt worn by the anesthesiologist. Each physiological variable was mapped to 1 of 4 tactor locations within the belt. The direction (increase/decrease) and 2 levels of change (small/large) were encoded in the stimulation patterns. A training session was completed by each anesthesiologist. The system was activated in real-time during anesthesia alongside routine physiological monitors. When the algorithms detected changes in the patient, the belt vibrated at the appropriate location with the pattern corresponding to the level and direction of change. Using a touch screen monitor the anesthesiologist was to enter the vibro-tactile message by first identifying the variable, then identifying the level and direction of change. Usability and wearability questionnaires were to be completed. The percentage of correct identification of the physiological trend, the direction of change, and the level of change were primary outcome variables. The mean usability score and wearability results were secondary outcome variables. We hypothesized that anesthesiologists would correctly identify the events communicated to them through the vibro-tactile belt 90% of the time, and that anesthesiologists would find the vibro-tactile belt usable and wearable. Results: Seventeen anesthesiologists evaluated the display during 57 cases. The belt was operational for a mean (SD) duration of 75 (41) minutes per case. Seven cases were excluded from analysis because of technical failures. Eighty-one percent (confidence interval [CI], 77% to 84%) of all stimuli were decoded. The physiological trend, the direction of change, and the level of change were correctly identified for 97.7% (CI 96%-99%), 94.9% (CI 92%-97%), and 93.5% of these stimuli (CI, 91%-96%), respectively. Fourteen anesthesiologists completed the usability and wearability questionnaires. The mean usability score was 4.8 of a maximum usability score of 7. Conclusions: Anesthesiologists found a vibro-tactile belt to be wearable and usable and could accurately decode vibro-tactile messages in a real-time clinical environment.
机译:背景:触觉显示器利用人体皮肤将信息从生理监护仪传达到麻醉师,从而提供有关患者状况变化的线索。在这项调查中,我们在实时临床环境中评估了我们小组最近开发的新型震动触觉显示带的可用性和耐磨性,并确定了其在麻醉医生使用时识别事件的准确性。方法:采用前瞻性观察研究设计。在常规麻醉期间,将标准生理监护仪连接到软件工具,该软件工具使用算法自动识别平均无创动脉血压,呼出的通气量,峰值气道压力和潮气末二氧化碳分压的变化趋势。该软件通过无线方式连接到麻醉医师佩戴的振动触觉带上。每个生理变量被映射到传送带内4个触针位置中的1个。方向(增加/减少)和2个变化水平(小/大)被编码在刺激模式中。每位麻醉师都完成了一次培训。该系统在麻醉期间与常规生理监测仪一起实时激活。当算法检测到患者的变化时,皮带会在适当的位置以与变化的水平和方向相对应的模式振动。麻醉师使用触摸屏监视器通过首先识别变量,然后识别变化的程度和方向来输入震动信息。可用性和可穿戴性调查表将要完成。正确识别生理趋势,变化方向和变化水平的百分比是主要的结局变量。平均可用性评分和可穿戴性结果是次要结果变量。我们假设麻醉医师会正确地识别90%的时间通过振动触觉带传达给他们的事件,并且麻醉师会发现振动触觉带是可用且可穿戴的。结果:17位麻醉师对57例患者的显示进行了评估。传送带在每个案例中的平均(SD)持续时间为75(41)分钟。由于技术故障,有7个案例被排除在分析之外。解码了所有刺激的81%(置信区间[CI]为77%至84%)。正确识别了这些刺激的97.7%(CI 96%-99%),94.9%(CI 92%-97%)和93.5%的生理趋势,变化方向和变化水平(CI,91 %-96%)。 14位麻醉师完成了可用性和可穿戴性调查表。平均可用性评分为4.8,最高可用性评分为7。结论:麻醉师发现,振动触觉带可穿戴且可使用,并且可以在实时临床环境中准确解码振动触觉信息。

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