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Correlation of the Cerebral Microvascular Blood Flow with Brain Temperature and Electro-Acupuncture Stimulation 被引量:4
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作者 张栋 李林 +3 位作者 马慧敏 叶翠飞 王淑友 陈丁生 《Journal of Traditional Chinese Medicine》 SCIE CAS CSCD 2010年第4期243-248,共6页
Objective:To investigate the relationship between the temperature and the microvascular blood flow of the cerebral cortex, and the influence of electro-acupuncture (EA) on the cortical microcirculation. Methods: High ... Objective:To investigate the relationship between the temperature and the microvascular blood flow of the cerebral cortex, and the influence of electro-acupuncture (EA) on the cortical microcirculation. Methods: High temperature spots on the anterior ectosylvian and low temperature spots on the posterior suprasylvian on the cortical surface of 20 cats were identified using cortical infrared thermography (CIT); the blood flow in the microcirculation on these spots was measured with laser-Doppler flowmetry. EA was given at Zusanli (ST 36) and changes in the blood flow in the cerebral cortex microcirculation were detected. Results: 1) The mean temperatures on the high (34.83±0.24°C) and low (32.28±0.27°C) temperature spots were significantly different (P<0.001); this was indicative of a temperature difference on the cortical surface; 2) The average blood flow in the microcirculation of the high (266.8±19.2 PU) and low (140.8±9.9 PU) temperature spots was significantly different (P<0.001). 3) On the cortical high temperature spots, the mean blood flow in the microcirculation significantly increased from 266.8±86.8 PU before EA, to 422.5±47.4 PU following 5 minutes of EA (58.35%; P<0.01), and 431.8±52.8 PU 5 minutes after ceasing EA (61.84%; P<0.01). 4) On the low temperature spots, there were no significant differences in blood flow following 5 minutes of EA (146.3±11.5 PU), and 5 minutes after ceasing EA (140.5±11.6 PU), when compared with that before acupuncture (140.8±9.9 PU; P>0.9). Conclusion: The high temperature spots of the cortex are active functional regions of neurons with higher blood flow and a stronger response to EA. EA induces a significant increase in blood flow in the high temperature spots of the cortex. 展开更多
关键词 大脑皮质 电针刺激 微血管 液流量 平均气温 血流量 表面温度 聚氨酯
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大脑皮层不同温度区微血管血流量的比较 被引量:17
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作者 张栋 李林 +4 位作者 马惠敏 叶翠飞 王淑友 付卫星 陈丁生 《中国医学物理学杂志》 CSCD 2000年第3期179-181,共3页
目的:了解大脑皮层温度与微循环血流量的关系,研究皮层表面高低温形成的机理。方法:用皮层红外热像温度显示法在20只开颅家猫大脑表面选择高低温度点,并在其上使用激光多普勒微循环测量仪进行血流量测量。结果:(1)皮层表面存在... 目的:了解大脑皮层温度与微循环血流量的关系,研究皮层表面高低温形成的机理。方法:用皮层红外热像温度显示法在20只开颅家猫大脑表面选择高低温度点,并在其上使用激光多普勒微循环测量仪进行血流量测量。结果:(1)皮层表面存在温度差,所选择的高温点平均温度为(34.83±1.08)℃,低温点为(32.28±1.19)℃,两者P <0.001;(2)在高温点上测量的微血管血流量为311±85.8,低温点上测量的微血管血流量为134±41.7,二者有极显著性差异(P <0.001);(3)在硬脑膜和软脑膜上测量到的血流量无显著性差异(P >0.05)。结论:皮层温度的高低与血流量有直接的关系。 展开更多
关键词 大脑皮层 温度 微循环 红外热像技术
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