A piglet survival model of posthypoxic encephalopathy

被引:129
作者
Thoresen, M
Haaland, K
Loberg, EM
Whitelaw, A
Apricena, F
Hanko, E
Steen, PA
机构
[1] UNIV OSLO,NATL HOSP,DEPT SURG,OSLO,NORWAY
[2] UNIV OSLO,NATL HOSP,DEPT PEDIAT RES,OSLO,NORWAY
[3] UNIV OSLO,ULLEVAAL HOSP,DEPT PATHOL,N-0407 OSLO,NORWAY
[4] UNIV OSLO,ULLEVAAL HOSP,DEPT ANESTHESIOL,N-0407 OSLO,NORWAY
[5] UNIV OSLO,AKER HOSP,DEPT PEDIAT,OSLO,NORWAY
关键词
D O I
10.1203/00006450-199611000-00014
中图分类号
R72 [儿科学];
学科分类号
100202 ;
摘要
The aim of this study was to produce a neonatal piglet mode which, avoiding vessel ligation, exposed the whole animal to hypoxia and produced dose-dependent clin encephalopathy and neuropathologic damage similar to that seen after birth asphyxia. Twenty-three piglets were halothane-anesthezied. Hypoxia was induced in 19 piglets by reducing the fractional concentration of inspired oxygen (Fio(2)) to the maximum concentration at which the EEG amplitude was below 7 mu V (low amplitude) for 17-55 min. There were transient increases in Fio(2) to correct bradycardia or hypotension. Posthypoxia, the piglets were extubated when breathing was stable. Four were sham-treated controls. We aimed at 72-h survival; seven died prematurely due to posthypoxic complications. EEG and a videotaped itemized neurologic assessment were recorded We found that 95% of the animals showed neuropathologic damage. The duration of low amplitude EEG during the insult and the arterial pH at the end of the insult correlated with cortical/white matter damage; r = 0.75 and 0.81, respectively. Early postinsult EEG background amplitude (r = 0.86 at 3 h) and neurologic score (r = 0.79 at 8 h) correlated with neuropathology. Epileptic seizures in seven animals were always associated with severe neuropathologic damage. We conclude that EEG-controlled hypoxia and subsequent intensive care enabled the animals to survive with an encephalopathy which correlated with the cerebral hypoxic insult. The encephalopathy was clinically, electrophysiologically, and neuropathologically similar to that in the asphyxiated term infant. This model is suitable for examining mechanisms of damage and evaluation of potential protective therapies after birth asphyxia.
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页码:738 / 748
页数:11
相关论文
共 53 条
[1]  
AZZARELLI B, 1980, CHILD BRAIN, V7, P132
[2]   PERIVENTRICULAR LEUKOMALACIA OF INFANCY - A FORM OF NEONATAL ANOXIC ENCEPHALOPATHY [J].
BANKER, BQ ;
LARROCHE, JC .
ARCHIVES OF NEUROLOGY, 1962, 7 (05) :386-&
[3]  
BIGGE CF, 1994, ANNU REP MED CHEM, P13
[4]   NATURE AND TIME COURSE OF NEURONAL ALTERATIONS RESULTING FROM OLIGAEMIA AND HYPOGLYCAEMIA IN BRAIN OF MACACA-MULATTA [J].
BRIERLEY, JB ;
BROWN, AW ;
MELDRUM, BS .
BRAIN RESEARCH, 1971, 25 (03) :483-&
[5]   SEIZURES IN THE NEONATAL INTENSIVE-CARE UNIT OF THE 1980S - TYPES, ETIOLOGIES, TIMING [J].
CALCIOLARI, G ;
PERLMAN, JM ;
VOLPE, JJ .
CLINICAL PEDIATRICS, 1988, 27 (03) :119-123
[6]  
CAVENESS WF, 1962, EPILEPSIA, V3, P137
[7]   MATURATIONAL CHANGES IN CEREBRAL FUNCTION IN INFANTS DETERMINED BY F-18 DG POSITRON EMISSION TOMOGRAPHY [J].
CHUGANI, HT ;
PHELPS, ME .
SCIENCE, 1986, 231 (4740) :840-843
[8]   CONTINUOUS EEG MONITORING OF NEONATAL SEIZURES - DIAGNOSTIC AND PROGNOSTIC CONSIDERATIONS [J].
CONNELL, J ;
OOZEER, R ;
DEVRIES, L ;
DUBOWITZ, LMS ;
DUBOWITZ, V .
ARCHIVES OF DISEASE IN CHILDHOOD-FETAL AND NEONATAL EDITION, 1989, 64 (04) :452-458
[9]  
DIGIACOMO JE, 1992, BIOL NEONATE, V61, P25, DOI 10.1159/000243527
[10]   CARBOHYDRATE AND ENERGY METABOLISM IN PERINATAL RAT-BRAIN - RELATION TO SURVIVAL IN ANOXIA [J].
DUFFY, TE ;
KOHLE, SJ ;
VANNUCCI, RC .
JOURNAL OF NEUROCHEMISTRY, 1975, 24 (02) :271-276