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Effect of acupuncture at three different acupoints on electrical activity of gastric distention-affected neurons in rat medial vestibular nucleus 被引量:2
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作者 Liang Chao Wang Yuan +1 位作者 Xu Bin Yu Zhi 《Journal of Traditional Chinese Medicine》 SCIE CAS CSCD 2018年第1期125-131,共7页
OBJECTIVE: To observe the effect of gastric distention(GD) and acupuncture at three different acupoints on the spontaneous discharge of neurons in the medial vestibular nucleus(MVN), and to clarify the specific functi... OBJECTIVE: To observe the effect of gastric distention(GD) and acupuncture at three different acupoints on the spontaneous discharge of neurons in the medial vestibular nucleus(MVN), and to clarify the specific function of the MVN in the central integration mechanism underlying acupuncture regulation.METHODS: GD was conducted using a balloon inserted in the stomach cavity, and acupuncture was performed separately at each of three acupoints:Zusanli(ST 36), Quchi(LI 11), and Weishu(BL 21).The effect of acupuncture and GD on the spontaneous discharge of MVN neurons was assessed using a glass microelectrode filled with a sodium acetate electrolyte solution containing 1% pontamine sky blue; the discharge signals from the neurons were amplified by the microelectrode amplifier and recorded in the Spike2 system.RESULTS: GD and acupuncture significantly affected the spontaneous discharge of MVN neurons. Furthermore, acupuncture at Zusanli(ST 36) and Weishu(BL 21) was significantly more effective at altering the discharge of GD-responsive MVN neurons compared with GD-nonresponsive neurons.CONCLUSION: GD and acupuncture at three different acupoints affected the electrical activity of MVN neurons. The MVN is involved in the central integration mechanism underlying acupuncture regulation of gastric functions. The effects of acupuncture on gastric function may therefore be mediated via these particular MVN neurons. 展开更多
关键词 ACUPUNCTURE Vestibular nuclei Motion sickness Electrical activity spontaneous discharge Gastric distention
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Zinc modulates hippocampus CA1 neurons excitability and glutamatergic synaptic transmission
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作者 Yu Tao Tian Zhuo Yang Tao Zhang 《生物物理学报》 CAS CSCD 北大核心 2009年第S1期272-273,共2页
Zinc ion is key physiological importance in mammalian tissues. It is a major structural component of many proteins and acts as co-factors for the activity of many enzymes that
关键词 ZINC hippocampus neuron spontaneous discharges miniature EPSC spontaneous EPSC
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