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        A Trial Study of Moxibustion with a Warming Needle on Edema

        Wen-Ping Zhang,Yuki Onose,Takahiko Fujikawa 사단법인약침학회 2017 Journal of Acupuncture & Meridian Studies Vol.10 No.1

        Edema is an accumulation of an excessive amount of watery fluid in cells or intercellular tissues. In order to examine the effects of acupuncture and moxibustion on edema, seven subjects were randomly divided into three groups, that was a Control group, an Acupuncture group (Acp), and an acupuncture and moxibustion group (Acp-Mox). After sitting for 60 minutes keeping their bodies still, the Acp and Acp-Mox subjects were administered acupuncture or acupuncture/moxibustion on the points of Zusanli (ST-36) and Sanyinjiao (SP-6), separately as against the Control group who only lied on the bed after modelization. After modelization at 60 minutes, the skin temperature and blood flow of all the groups were significantly lower in blood flow when compared with premodelization. But shortly after the procedure at 80 minutes, skin temperature in the Acp and Acp-Mox groups were significantly increased when compared with premodelization (vs. 60 minutes, p < 0.05). Moreover, the skin temperature and blood flow of the Acp-Mox group were significantly increased as compared to both the Control and the Acp group at the 80-minute time point. These results indicate that Acp and Mox-Acp could relieve edematous conditions significantly, especially the procedure of moxibustion with warming needle, was effective in improving edema which is often accompanied with cold intolerance and would be a recommended and superior therapy for edema.

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        Invite Review : Brain Activation via Exercise: Exercise conditions Leading to neuronal activation & hippocampal neurogenesis

        ( Hideaki Soya ),( Masahiro Okamoto ),( Takashi Matsui ),( Min Chul Lee ),( Koshiro Inoue ),( Shimpei Nishikawa ),( Shingo Soya ),( Takahiko Fujikawa ),( Rakwal Randeep ),( Hyuk Ki Chang ),( Takeshi N 한국운동영양학회 2011 Physical Activity and Nutrition (Phys Act Nutr) Vol.15 No.1

        The brain is considered to be an organ which can be affected by conditioning or exercise, just like muscles. Exercise activates the brain and enhances several neuronal functions and may lead to several neuronal plastic changes. Neuronal c-Fos accumulation in any hypothalamic nuclei increased only with supra-LT exercise, revealing a LT-like activation pattern. In the brain stem, both supra-LT and below-LT exercise activated the VLM and NTS. In case of hippocampus, its activation was induced by under-LT exercise, which increased regional blood flow through neurovascular coupling. Thus, we found that regions of brain activation were determined differently based on exercise intensity. In the further, more research on exercise intensive is indispensable. In this paper, we reviewed: (1) Hippocampal plasticity through exercise (2) Brain region-specific differential activation patterns with exercise below and above the lactate threshold (3) Hippocampal neuronal activity induced by mild exercise below the lactate threshold: regional blood flow monitoring in the hippocampus (4) Acute mild exercise induces BDNF and short-term training causes AHN (5) Why below-LT exercise is sufficient for hippocampal plasticity (6) Hippocampal activation mechanism during exercise. In particular, based on our recent findings, our focus was directed upon exercise-induced brain activation and neurogenesis.

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