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停搏哺乳动物心脏的最佳保护性低温

Optimal protective hypothermia in arrested mammalian hearts.

作者信息

Ning Xue-Han, Villet Outi M, Ge Ming, Sekhar Laigam N, Corson Marshall A, Tylee Tracy S, Fan Lu-Ping, Yao Lin, Zhu Chun, Olson Aaron K, Buroker Norman E, Xu Cheng-Su, Anderson David L, Soh Yong-Kian, Wang Elise, Chen Shi-Han, Portman Michael A

机构信息

1 Division of Cardiology, Department of Pediatrics, University of Washington , Seattle, Washington.

出版信息

Ther Hypothermia Temp Manag. 2015 Mar;5(1):40-7. doi: 10.1089/ther.2014.0022. Epub 2014 Dec 16.

Abstract

Many therapeutic hypothermia recommendations have been reported, but the information supporting them is sparse, and reveals a need for the data of target therapeutic hypothermia (TTH) from well-controlled experiments. The core temperature ≤35°C is considered as hypothermia, and 29°C is a cooling injury threshold in pig heart in vivo. Thus, an optimal protective hypothermia (OPH) should be in the range 29-35°C. This study was conducted with a pig cardiopulmonary bypass preparation to decrease the core temperature to 29-35°C range at 20 minutes before and 60 minutes during heart arrest. The left ventricular (LV) developed pressure, maximum of the first derivative of LV (dP/dtmax), cardiac power, heart rate, cardiac output, and myocardial velocity (Vmax) were recorded continuously via an LV pressure catheter and an aortic flow probe. At 20 minutes of off-pump during reperfusion after 60 minutes arrest, 17 hypothermic hearts showed that the recovery of Vmax and dP/dtmax established sigmoid curves that consisted of two plateaus: a good recovery plateau at 29-30.5°C, the function recovered to baseline level (BL) (Vmax=118.4%±3.9% of BL, LV dP/dtmax=120.7%±3.1% of BL, n=6); another poor recovery plateau at 34-35°C (Vmax=60.2%±2.8% of BL, LV dP/dtmax=28.0%±5.9% of BL, p<0.05, n=6; ), which are similar to the four normothermia arrest (37°C) hearts (Vmax=55.9%±4.8% of BL, LV dP/dtmax=24.5%±2.1% of BL, n=4). The 32-32.5°C arrest hearts showed moderate recovery (n=5). A point of inflection (around 30.5-31°C) existed at the edge of a good recovery plateau followed by a steep slope. The point presented an OPH that should be the TTH. The results are concordant with data in the mammalian hearts, suggesting that the TTH should be initiated to cool core temperature at 31°C.

摘要

已有许多关于治疗性低温的建议被报道,但支持这些建议的信息并不充分,这表明需要来自严格对照实验的目标治疗性低温(TTH)数据。核心体温≤35°C被视为低温,29°C是猪心脏在体的冷却损伤阈值。因此,最佳保护性低温(OPH)应在29 - 35°C范围内。本研究采用猪体外循环准备,在心脏停搏前20分钟和停搏期间60分钟将核心体温降至29 - 35°C范围。通过左心室压力导管和主动脉流量探头连续记录左心室(LV)发育压力、LV的一阶导数最大值(dP/dtmax)、心脏功率、心率、心输出量和心肌速度(Vmax)。在60分钟停搏后再灌注的非体外循环20分钟时,17个低温心脏显示Vmax和dP/dtmax的恢复呈现S形曲线,该曲线由两个平台组成:在29 - 30.5°C有良好恢复平台,功能恢复到基线水平(BL)(Vmax = BL的118.4%±3.9%,LV dP/dtmax = BL的120.7%±3.1%,n = 6);在34 - 35°C有另一个恢复较差的平台(Vmax = BL的60.2%±2.8%,LV dP/dtmax = BL的28.0%±5.9%,p < 0.05,n = 6),这与四个正常体温停搏(37°C)心脏相似(Vmax = BL的55.9%±4.8%,LV dP/dtmax = BL的24.5%±2.1%,n = 4)。32 - 32.5°C停搏的心脏显示出中等程度的恢复(n = 5)。在良好恢复平台边缘存在一个拐点(约30.5 - 31°C),随后是一个陡坡。该点呈现出一个应作为TTH的OPH。结果与哺乳动物心脏的数据一致,表明应在核心体温降至31°C时开始TTH。

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