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高+Gz负荷下犬心血管系统反应特性
引用本文:师绿江,张宏金,汤维平,李广道,谈诚,宋蕾.高+Gz负荷下犬心血管系统反应特性[J].航天医学与医学工程,1999,12(3):214-216.
作者姓名:师绿江  张宏金  汤维平  李广道  谈诚  宋蕾
作者单位:空军航空医学研究所,北京,100036
摘    要:目的探讨犬+Gz负荷中、负荷后心电图、动脉血压反应特性。方法将压力传感器导管置于6只麻醉犬的升主动脉和髂总动脉,以测量犬暴露于+1Gz、+3Gz、+5Gz、+7Gz的血压,并采用A导联持续监测心电图。结果(1)P波高度受+Gz负荷的影响,负荷前、后1min内差异显著(+Gz负荷前P波2.3±0.2mV,+3Gz后4.5±0.5mV,+5Gz后4.8±0.3mV,+7Gz后5.3±0.7mVP<0.05)。(2)高+Gz负荷时,髂总动脉血压表现为平均动脉压增高,脉压减低。(3)+Gz终止后,升主动脉血压(AP)出现一过性增高(+7Gz前AP17.29±5.59/11.31±3.86kPa,+7Gz后第30s27.53±6.12/20.62±1.86kPa,P<0.01)。结论P波高度的变化反映心房移位,这可能是心律失常的原因。在高+Gz负荷条件下,心血管功能不全,组织灌注压是一个重要的生理参数。+Gz负荷终止后即刻,动脉血压极度增高,为血管性衰竭的表现

关 键 词:血液动力学  加速度应激(生理)  导管插入术  
文章编号:1002-0837(1999)03-0214-03
修稿时间:1998-07-09

Cardiovascular Response to High Sustained +Gz Stress in Dogs
SHI Lu-jiang,ZHANG Hong-jin,TANG Wei-ping,LI Guang-dao,TAN Cheng,SONG Lei.Cardiovascular Response to High Sustained +Gz Stress in Dogs[J].Space Medicine & Medical Engineering,1999,12(3):214-216.
Authors:SHI Lu-jiang  ZHANG Hong-jin  TANG Wei-ping  LI Guang-dao  TAN Cheng  SONG Lei
Institution:Institute of Aviation Medicine, Air Force, Beijing.
Abstract:Objective To investigate features of electrocardiography(ECG) and arterial pressure in dog during and after Gz stress. Method Six anesthetized dogs were catheterized for the measurement of ascending aortic pressure(AP)and common iliac arterial pressure(CIAP).A lead of ECG was monitored continuously.Then, dogs were placed supine in rotatable plaform on one arm of an 1.7 m radius centrifuge.The animals were exposed serially to acceleration profiles of up to 7 Gz,consisting of a slow onset to peak acceleration,90 s peak G,and a rapid decline back to control.A recovery time of at least 20 min was allowed after each acceleration profile. Results (1) The amplitude of Pwave was influenced by the magnitude of the acceleration (2.30.2 mV at rest vs.4.50.5 mV at 3 Gz,4.80.3 mV at 5 Gz and 5.30.7 mV at 7 Gz, respectively P <0.05).(2)It appeared that arteria mean pressure increased and pusle pressure decreased in CIAP during high Gz stress.(3)AP increased greatly after Gz stress(17. 295.59/11.313.86 kPa at rest vs.27.536.12/20.621.86 kPa 30s after 7 Gz P <0.01). Conclusion (1)The change of the amplitude of Pwave reflected the atrial displacement which may be the reason of arrhythmia.(2)The perfusion pressure is an important physiological parameter to the cardiovascular dysfunction during high Gz stress.(3)Greatly higher AP after Gz stress could be a feature of vascular exhaustion.
Keywords:hemodynamics  acceleration    stress(physiology)  catheterization  dogs  
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