首页> 外文期刊>Medical Devices: Evidence and Research >Comparing the accuracy of ES-BC, EIS-GS, and ES Oxi on body composition, autonomic nervous system activity, and cardiac output to standardized assessments
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Comparing the accuracy of ES-BC, EIS-GS, and ES Oxi on body composition, autonomic nervous system activity, and cardiac output to standardized assessments

机译:将ES-BC,EIS-GS和ES Oxi在身体成分,自主神经系统活动和心输出量方面的准确性与标准化评估进行比较

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Background and purpose: The Electro Sensor Complex (ESC) is software that combines three devices using bioelectrical impedance, galvanic skin response, and spectrophotometry: (1) ES-BC (Electro Sensor-Body Composition; LD Technology, Miami, FL) to assess body composition, (2) EIS-GS (Electro Interstitial Scan-Galvanic Skin; LD Technology) to predict autonomic nervous system activity, and (3) ES Oxi (Electro Sensor Oxi; LD Technology) to assess cardiac output. The objective of this study was to compare each to a standardized assessment: ES-BC to dual-energy X-ray absorptiometry (DXA), EIS-GS to heart rate variability, and ES Oxi to BioZ Dx Diagnostic System (BioZ Dx; SonoSite Inc, Bothell, WA). Patients and methods: The study was conducted in two waves. Fifty subjects were assessed for body composition and autonomic nervous system activity. Fifty-one subjects were assessed for cardiac output. Results: We found adequate relative and absolute agreement between ES-BC and DXA for fat mass (r = 0.97, P < 0.001) with ES-BC overestimating fat mass by 0.1 kg and for body fat percentage (r = 0.92, P < 0.001) with overestimation of fat percentage by 0.4%. For autonomic nervous system activity, we found marginal relative agreement between EIS-GS and heart rate variability by using EIS-GS as the predictor in a linear regression equation (adjusted R2 = 0.56, P = 0.03). For cardiac output, adequate relative and absolute agreement was found between ES Oxi and BioZ Dx at baseline (r = 0.60, P < 0.001), after the first exercise stage (r = 0.79, P < 0.001), and after the second exercise stage (r = 0.86, P < 0.001). Absolute agreement was found at baseline and after both bouts of exercise; ES Oxi overestimated baseline and stage 1 exercise cardiac output by 0.3 L/minute and 0.1 L/minute, respectively, but exactly estimated stage 2 exercise cardiac output. Conclusion: ES-BC and ES Oxi accurately assessed body composition and cardiac output compared to standardized instruments, whereas EIS-GS showed marginal predictive ability for autonomic nervous system activity. The ESC software managing the three devices would be useful to help detect complications related to metabolic syndrome, diabetes, and cardiovascular disease and to noninvasively and rapidly manage treatment follow-up.
机译:背景和目的:电子传感器复合体(ESC)是结合了三种使用生物电阻抗,皮肤电响应和分光光度法的设备的软件:(1)ES-BC(电子传感器-身体成分; LD Technology,迈阿密,佛罗里达州)进行评估身体成分;(2)EIS-GS(电间隙扫描电化皮肤; LD技术)预测自主神经系统活动;(3)ES Oxi(电传感器Oxi; LD技术)评估心输出量。这项研究的目的是将每项评估与标准评估进行比较:ES-BC与双能X线骨密度仪(DXA),EIS-GS与心率变异性以及ES Oxi与BioZ Dx诊断系统(BioZ Dx; SonoSite公司,华盛顿州博塞尔)。患者和方法:本研究分两次进行。对五十名受试者的身体组成和自主神经系统活动进行了评估。评估了51名受试者的心输出量。结果:我们发现ES-BC和DXA在脂肪量(r = 0.97,P <0.001)与ES-BC高估脂肪量0.1 kg和体脂百分比(r = 0.92,P <0.001)之间具有相对和绝对的一致性),脂肪含量高估了0.4%。对于自主神经系统活动,我们通过使用EIS-GS作为线性回归方程中的预测变量(调整后的R2 = 0.56,P = 0.03),发现EIS-GS与心率变异性之间的边际相对一致性。对于心输出量,ES Oxi和BioZ Dx在基线(r = 0.60,P <0.001),第一个运动阶段(r = 0.79,P <0.001)和第二个运动阶段之后,已找到足够的相对和绝对一致(r = 0.86,P <0.001)。在基线和两次运动后都发现了绝对的一致性; ES Oxi将基线和第1阶段运动心输出量分别高估了0.3 L /分钟和0.1 L /分钟,但准确估计了第2阶段运动心输出量。结论:与标准仪器相比,ES-BC和ES Oxi可以准确评估身体成分和心输出量,而EIS-GS对自主神经系统活动显示出微弱的预测能力。管理这三个设备的ESC软件将有助于检测与代谢综合征,糖尿病和心血管疾病有关的并发症,并有助于无创且快速地管理治疗后续活动。

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