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A double-blind placebo-controlled heart rate variability investigation to evaluate the quantitative effects of the organic nanoscale aeon patch on the autonomic nervous system

  • Nazeran, Homer (Department of Electrical and Computer Engineering and Biomedical Engineering Graduate Programs University of Texas at El Paso)
  • 투고 : 2014.07.10
  • 심사 : 2014.10.29
  • 발행 : 2015.02.28

초록

In this first double-blind-placebo-controlled investigation of the Aeon Patch, electrocardiographic data were acquired from 50 well-hydrated volunteers [21 females and 29 males, age: 19-79, weight: 117-334 lbs, height: 5'-6',3"], under 3 different conditions for a total duration of 15 min (5 min/condition). Condition1: Control (C) - while wearing no Patch, Condition 2: Placebo (P) or Active (A) - after wearing either the Placebo or the Aeon Patch for 20 min, and Condition 3: Active (A) or Placebo (P) - after wearing either the Aeon or the Placebo Patch for 20 min. There was a washout period of 15 min between Conditions 2 and 3. All involved in the investigation were blind to the (A) and (P) Patches as they looked exactly the same and were assigned in a random fashion. The hypothesis to be tested was: Wearing the Aeon Patch for 20 min reduces stress. Data were first quality assured and those subjects who showed a parasympathetic response after wearing the Patch within 20 min were identified as early responders. Thirty subjects (60%) achieved a relaxed state after wearing the Aeon Patch as early as 20 min. Statistical analysis (one-sample inference) was used to compare the spectral features of the responders. The normalized LF/HF decreased significantly ($24%{\pm}9%$ after 20 min) in condition (A) compared to condition (P) with a p-value < 0.047 (n = 30) in responders. Therefore, the hypothesis that wearing the Aeon Patch for 20 min reduces stress was accepted as true.

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참고문헌

  1. Malik M. Task Force of the European Society of Cardiology the North American society of Pacing Electrophysiology. Heart rate variability. standards of measurement, physiological interpretation, and clinical use. Circulation. 1996;93:1043-1065. https://doi.org/10.1161/01.CIR.93.5.1043
  2. McMillan DE. Interpreting heart rate variability sleep/wake patterns in cardiac patients. J Cardiovas Nurs 2002;17:69-81. https://doi.org/10.1097/00005082-200210000-00007
  3. Nazeran H. Heart Rate Variability Signal Parameters Quantify Skin cooling Effect of Energy Patches During Rest and Exercise in Young Healthy Individuals. In Biomedical Engineering Recent Developments. Otto Wilson, Binh Tran, Jafar Vossoughi ed. (Maryland, USA; medical and engineering publishers, inc). pp. 13-19, 2007.
  4. Nazeran H, Blake-Greenberg S, Haltiwanger E. Mild stimulation of stomach 36 acupuncture point by organic nanoscale SP6 patch improves cellular physiologic functional status of different organs. TANG. 2012;2:e10.
  5. Pumprla J, Howorka K, Groves D, Chester M, Nolan J. Functional assessment of heart rate variability: physiological basis and practical applications. Int J Cardiol. 2002:84:1-14. https://doi.org/10.1016/S0167-5273(02)00057-8