Evidence-based Complementary and Alternative Medicine · 2007 · 28 citations · 14 references
HypertensionHeart FailureBlood Pressure WaveformsYogaCardiovascular FunctionBlood PressureDiastolic FunctionElectrophysiological EvaluationKinesiologyZen MeditationApplied PhysiologyCardiologyCardiac MechanicHealth SciencesCardiovascular ImagingArtery ElasticityMeditationRehabilitationCardiovascular DiseaseVariation AnalysisPhysiologyMedicineAnesthesiology
In this article, we studied how meditation affects the characteristics of the cardiovascular system, mainly based on blood pressure waveforms (BPW). Four parameters derived from BPW include the rising slope (h(1)/t(1)), normalized height of T wave (h(3)/h(1)), normalized height of V(3) valley (h(4)/h(1)) and normalized height of D wave (h(5)/h(1)), where t(1) and h(i), i = 1, ... ,5 are quantitative features of the BPW waveform pattern. A larger value of h(1)/t(1) reflects better heart ejection ability and aorta compliance. A larger value of h(3)/h(1) may infer an arterial system with good elasticity. The decrease (increase) of h(4)/h(1) parameter indicates the decrease (increase) of peripheral resistance of vessels. A larger value of h(5)/h(1) indicates better artery elasticity and aortic valve function. In comparison with the control group, Zen-meditation practitioners have more after-meditation h(1)/t(1), h(3)/h(1) and h(5)/h(1) increase, with more h(4)/h(1) decrease, with statistical significance (P < 0.05). The observation allows us to infer that Zen meditation may effectively improve relevant characteristics of the cardiovascular system.
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Noninvasive Pulse Wave Analysis for the Early Detection of Vascular Disease
Jay N. Cohn, Stanley M. Finkelstein, Gary E. McVeigh et al. · Hypertension · 1995 · 476 citations