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首页> 外文期刊>Evidence-based complementary and alternative medicine: eCAM >Shin Takayama, Masashi Watanabe, Hiroko Kusuyama, Satoru Nagase, Takashi Seki, Toru Nakazawa, Nobuo Yaegashi
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Shin Takayama, Masashi Watanabe, Hiroko Kusuyama, Satoru Nagase, Takashi Seki, Toru Nakazawa, Nobuo Yaegashi

机译:新高山,渡边正史,Ku山裕子,长濑悟司,关贵隆,中泽彻,大矢伸

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摘要

Color Doppler imaging (CDI) can be used to noninvasively create images of human blood vessels and quantitatively evaluate blood flow in real-time. The purpose of this study was to assess the effects of acupuncture on the blood flow of the peripheral, mesenteric, and retrobulbar arteries by CDI. Statistical significance was defined as P values less than 0.05. Blood flow in the radial and brachial arteries was significantly lower during needle stimulation on LR3 than before in healthy volunteers, but was significantly higher after needle stimulation than before. LR3 stimulation also resulted in a significant decrease in the vascular resistance of the short posterior ciliary artery and no significant change of blood flow through the superior mesenteric artery (SMA) during acupuncture. In contrast, ST36 stimulation resulted in a significant increase in blood flow through the SMA and no significant change in the vascular resistance of the retrobulbar arteries. Additionally, acupuncture at previously determined acupoints in patients with open-angle glaucoma led to a significant reduction in the vascular resistance of the central retinal artery and short posterior ciliary artery. Our results suggest that acupuncture can affect blood flow of the peripheral, mesenteric, and retrobulbar arteries, and CDI can be useful to evaluate hemodynamic changes by acupuncture.
机译:彩色多普勒成像(CDI)可用于无创地创建人类血管图像并实时定量评估血流。这项研究的目的是通过CDI评估针刺对周围,肠系膜和后球动脉血流的影响。统计显着性定义为P值小于0.05。在LR3上进行针刺刺激期间,healthy动脉和肱动脉的血流显着低于健康志愿者,但在进行针刺刺激后,其显着高于之前。 LR3刺激还导致短睫状后动脉的血管阻力显着降低,并且在针刺过程中流经肠系膜上动脉(SMA)的血流没有明显变化。相比之下,ST36刺激导致通过SMA的血流量显着增加,而后球动脉的血管阻力无明显变化。此外,在开角型青光眼患者中以先前确定的穴位进行针灸会导致视网膜中央动脉和睫状后短动脉的血管阻力显着降低。我们的结果表明,针刺可影响周围,肠系膜和后球动脉的血流,CDI可用于评估针刺的血液动力学变化。

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