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局部快速冷却对人手指甲襞毛细血管血压和血细胞速度的影响。

The effect of rapid local cooling on human finger nailfold capillary blood pressure and blood cell velocity.

作者信息

Hahn M, Shore A C

机构信息

Department of Vascular Medicine, Postgraduate Medical School, University of Exeter.

出版信息

J Physiol. 1994 Jul 1;478 ( Pt 1)(Pt 1):109-14. doi: 10.1113/jphysiol.1994.sp020234.

Abstract
  1. The effect of a rapid local reduction in finger temperature on finger nailfold capillary blood pressure and blood cell velocity was investigated in healthy subjects. 2. Cooling was achieved by placing the finger into an adjustable copper cylindrical finger holder, which incorporated a Peltier element within its base; thus the entire finger from just distal to the nailfold to the interphalangeal joint was cooled. The Peltier element was cooled to 8 degrees C for 5 min. 3. Finger tip temperature was reduced to 76 +/- 12% of its resting value during cooling (28.8 +/- 4.8 degrees C (mean +/- S.D.) baseline versus 22.1 +/- 6.4 degrees C in the fifth minute of cooling, P = 0.012); this was accompanied by a reduction in capillary blood cell velocity similar to that described previously in cooling experiments using cold air (baseline median, 671 microns s-1 (range, 29-4421 microns s-1) versus median during cooling, 221 microns s-1 (range, 6.7-2579 microns s-1), P = 0.012). 4. The magnitude and timing of the capillary pressure response to cooling and recovery varied between individuals. In the group as a whole, there was no significant fall in capillary pressure during cooling (basal before cooling, 16.7 +/- 3.7 mmHg versus minimum during cooling, 15.1 +/- 3.5 mmHg, P = 0.12), whereas capillary pulse pressure amplitude was reduced (basal before cooling, 5.3 +/- 3.1 mmHg versus minimum during cooling, 3.7 +/- 2.6 mmHg, P = 0.028). 5. During the recovery phase, post cooling, both capillary pressure and capillary pulse pressure amplitude were markedly elevated compared to baseline or the cooling phase.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 在健康受试者中,研究了手指温度快速局部降低对指甲襞毛细血管血压和血细胞流速的影响。2. 通过将手指放入一个可调节的铜制圆柱形手指固定器中来实现冷却,该固定器在其底部装有一个珀耳帖元件;这样,从指甲襞远端到指间关节的整个手指都被冷却。珀耳帖元件被冷却至8摄氏度并保持5分钟。3. 在冷却过程中,指尖温度降至其静息值的76±12%(冷却前基线为28.8±4.8摄氏度(平均值±标准差),冷却第5分钟时为22.1±6.4摄氏度,P = 0.012);与此同时,毛细血管血细胞流速降低,类似于先前使用冷空气进行的冷却实验中所描述的情况(冷却前基线中位数为671微米/秒(范围为29 - 4421微米/秒),冷却期间中位数为221微米/秒(范围为6.7 - 2579微米/秒),P = 0.012)。4. 毛细血管压力对冷却和恢复的反应幅度和时间在个体之间有所不同。在整个组中,冷却期间毛细血管压力没有显著下降(冷却前基础值为16.7±3.7 mmHg,冷却期间最小值为15.1±3.5 mmHg,P = 0.12),而毛细血管脉压幅度降低(冷却前基础值为5.3±3.1 mmHg,冷却期间最小值为3.7±2.6 mmHg,P = 0.028)。5. 在恢复阶段,冷却后,毛细血管压力和毛细血管脉压幅度均比基线或冷却阶段显著升高。(摘要截取自250字)

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