Perinatal hypoxic-ischemic encephalopathy is a leading cause of neonatal death and disability.Therapeutic hypothermia significantly reduces death and major disability associated with hypoxic-ischemic encephalopathy;ho...Perinatal hypoxic-ischemic encephalopathy is a leading cause of neonatal death and disability.Therapeutic hypothermia significantly reduces death and major disability associated with hypoxic-ischemic encephalopathy;however,many infants still experience lifelong disabilities to movement,sensation and cognition.Clinical guidelines,based on strong clinical and preclinical evidence,recommend therapeutic hypothermia should be started within 6 hours of birth and continued for a period of 72 hours,with a target brain temperature of 33.5 ±0.5℃ for infants with moderate to severe hypoxic-ischemic encephalopathy.The clinical guidelines also recommend that infants be re warmed at a rate of 0.5℃ per hour,but this is not based on strong evidence.There are no randomized controlled trials investigating the optimal rate of rewarming after therapeutic hypothermia for infants with hypoxic-ischemic encephalopathy.Preclinical studies of rewarming are conflicting and results were confounded by treatment with sub-optimal durations of hypothermia.In this review,we evaluate the evidence for the optimal start time,duration and depth of hypothermia,and whether the rate of rewarming after treatment affects brain injury and neurological outcomes.展开更多
Objective To study the changes of the nitric oxide(NO) in process of neonate hypoxic- ischemic encephalopathy(HIE) and the relations between the concentrations of NO and HIE. Methods Tested the concentrations of NO i...Objective To study the changes of the nitric oxide(NO) in process of neonate hypoxic- ischemic encephalopathy(HIE) and the relations between the concentrations of NO and HIE. Methods Tested the concentrations of NO in CSF of newborn infants suffered HIE the third day and in plasma of newborn infants suffered HIE just attacked instant(within 2 hours), the first day ,the third day and restoring stage and compared with them of normal contrast term. We tried to analyse the reasons and significance of NO change .Results The NO concentration is the highest in plasma of newborn infants suffered HIE the first day. There is significant difference(P<0.01) after comparing the NO concentrations in plasmas of newborn infants suffered HIE just attacked instant, the first day, the third day with of normal contrast team respectively. But there is not significant difference(P >0.05) between NO in plasmas of restoring stage and of normal contrast team. There is positive correlation between the NO concentration in plasma and in CSF of newborn infants suffered HIE the third day. The more serious the disease is, the higher the NO concentration is, the worse the prognosis is. Conclusion NO play along with the course of HIE and play an important role in neonate HIE. Testing the concentration of NO in plasma and in CSF can also help to judge the degree of disease.展开更多
Perinatal hypoxic-ischemic-encephalopathy significantly contributes to neonatal death and life-long disability such as cerebral palsy. Advances in signal processing and machine learning have provided the research comm...Perinatal hypoxic-ischemic-encephalopathy significantly contributes to neonatal death and life-long disability such as cerebral palsy. Advances in signal processing and machine learning have provided the research community with an opportunity to develop automated real-time identification techniques to detect the signs of hypoxic-ischemic-encephalopathy in larger electroencephalography/amplitude-integrated electroencephalography data sets more easily. This review details the recent achievements, performed by a number of prominent research groups across the world, in the automatic identification and classification of hypoxic-ischemic epileptiform neonatal seizures using advanced signal processing and machine learning techniques. This review also addresses the clinical challenges that current automated techniques face in order to be fully utilized by clinicians, and highlights the importance of upgrading the current clinical bedside sampling frequencies to higher sampling rates in order to provide better hypoxic-ischemic biomarker detection frameworks. Additionally, the article highlights that current clinical automated epileptiform detection strategies for human neonates have been only concerned with seizure detection after the therapeutic latent phase of injury. Whereas recent animal studies have demonstrated that the latent phase of opportunity is critically important for early diagnosis of hypoxic-ischemic-encephalopathy electroencephalography biomarkers and although difficult, detection strategies could utilize biomarkers in the latent phase to also predict the onset of future seizures.展开更多
目的探讨血清低氧诱导因子-1α(HIF-1α)、神经元特异性烯醇化酶(NSE)、胶质纤维酸性蛋白(GFAP)及相关临床特征与新生儿缺氧缺血性脑病(HIE)发生风险的关系。方法选取2020年1月—2023年1月苏州大学附属儿童医院收治的85例HIE患儿作为HIE...目的探讨血清低氧诱导因子-1α(HIF-1α)、神经元特异性烯醇化酶(NSE)、胶质纤维酸性蛋白(GFAP)及相关临床特征与新生儿缺氧缺血性脑病(HIE)发生风险的关系。方法选取2020年1月—2023年1月苏州大学附属儿童医院收治的85例HIE患儿作为HIE组,另选取同期在该院出生的120例健康新生儿作为对照组,分析两组的临床资料并检测新生儿出生后3 d血清HIF-1α、NSE、GFAP水平。绘制受试者工作特征(ROC)曲线分析血清HIF-1α、NSE、GFAP水平预测新生儿HIE发病的价值;多因素逐步Logistic回归模型分析新生儿HIE发病的影响因素。结果与对照组相比,HIE组宫内窘迫、脐带异常、羊水污染、1 min Apgar评分≤7分的患儿比例较高(P<0.05),并且血清HIF-1α、NSE、GFAP水平较高(P<0.05);两组孕妇年龄、孕妇文化程度、胎龄、新生儿性别、出生体重、产次、剖宫产、胎膜早破比较,差异均无统计学意义(P>0.05)。ROC曲线分析结果显示,HIF-1α、NSE、GFAP及三者联合预测新生儿HIE发病的敏感性分别为82.7%(95%CI:0.795,0.862)、78.7%(95%CI:0.705,0.849)、84.0%(95%CI:0.803,0.891)、85.3%(95%CI:0.788,0.922),特异性分别为85.3%(95%CI:0.816,0.907)、74.7%(95%CI:0.715,0.796)、72.0%(95%CI:0.692,0.771)、90.5%(95%CI:0.825,0.956),AUC分别为0.907(95%CI:0.884,0.930)、0.850(95%CI:0.816,0.884)、0.893(95%CI:0.827,0.959)、0.936(95%CI:0.905,0.967);多因素逐步Logistic回归分析显示,宫内窘迫[O^R=3.592(95%CI:2.017,6.397)]、脐带异常[O^R=4.905(95%CI:2.862,8.406)]、羊水污染[O^R=7.262(95%CI:3.603,14.637)]、1 min Apgar评分≤7分[O^R=3.139(95%CI:1.954,5.043)]、HIF-1α≥0.463 ng/mL[O^R=2.916(95%CI:1.422,5.980)]、NSE≥12.395μg/L[O^R=3.714(95%CI:1.955,7.056)]、GFAP≥3.962 ng/mL[O^R=3.556(95%CI:2.039,6.202)]均是新生儿HIE发病的危险因素(P<0.05)。结论宫内窘迫、脐带异常、羊水污染、出生后1 min Apgar评分低及血清HIF-1α、NSE、GFAP水平高是新生儿HIE发病的危险因素,临床通过检测血清HIF-1α、NSE、GFAP水平可为临床筛查HIE提供帮助,3项指标联合检测可进一步提高诊断价值。展开更多
基金supported by The Health Research Council of New Zealand(grant No.16/003,17/601)the Marsden Fund(grant No.17-UOA232)a Sir Charles Hercus Fellowship from the Health Research Council of New Zealand(grant No.16/003)
文摘Perinatal hypoxic-ischemic encephalopathy is a leading cause of neonatal death and disability.Therapeutic hypothermia significantly reduces death and major disability associated with hypoxic-ischemic encephalopathy;however,many infants still experience lifelong disabilities to movement,sensation and cognition.Clinical guidelines,based on strong clinical and preclinical evidence,recommend therapeutic hypothermia should be started within 6 hours of birth and continued for a period of 72 hours,with a target brain temperature of 33.5 ±0.5℃ for infants with moderate to severe hypoxic-ischemic encephalopathy.The clinical guidelines also recommend that infants be re warmed at a rate of 0.5℃ per hour,but this is not based on strong evidence.There are no randomized controlled trials investigating the optimal rate of rewarming after therapeutic hypothermia for infants with hypoxic-ischemic encephalopathy.Preclinical studies of rewarming are conflicting and results were confounded by treatment with sub-optimal durations of hypothermia.In this review,we evaluate the evidence for the optimal start time,duration and depth of hypothermia,and whether the rate of rewarming after treatment affects brain injury and neurological outcomes.
基金Foundation:Guangdong province board of health item (number 199906)
文摘Objective To study the changes of the nitric oxide(NO) in process of neonate hypoxic- ischemic encephalopathy(HIE) and the relations between the concentrations of NO and HIE. Methods Tested the concentrations of NO in CSF of newborn infants suffered HIE the third day and in plasma of newborn infants suffered HIE just attacked instant(within 2 hours), the first day ,the third day and restoring stage and compared with them of normal contrast term. We tried to analyse the reasons and significance of NO change .Results The NO concentration is the highest in plasma of newborn infants suffered HIE the first day. There is significant difference(P<0.01) after comparing the NO concentrations in plasmas of newborn infants suffered HIE just attacked instant, the first day, the third day with of normal contrast team respectively. But there is not significant difference(P >0.05) between NO in plasmas of restoring stage and of normal contrast team. There is positive correlation between the NO concentration in plasma and in CSF of newborn infants suffered HIE the third day. The more serious the disease is, the higher the NO concentration is, the worse the prognosis is. Conclusion NO play along with the course of HIE and play an important role in neonate HIE. Testing the concentration of NO in plasma and in CSF can also help to judge the degree of disease.
基金supported by the Auckland Medical Research Foundation,No.1117017(to CPU)
文摘Perinatal hypoxic-ischemic-encephalopathy significantly contributes to neonatal death and life-long disability such as cerebral palsy. Advances in signal processing and machine learning have provided the research community with an opportunity to develop automated real-time identification techniques to detect the signs of hypoxic-ischemic-encephalopathy in larger electroencephalography/amplitude-integrated electroencephalography data sets more easily. This review details the recent achievements, performed by a number of prominent research groups across the world, in the automatic identification and classification of hypoxic-ischemic epileptiform neonatal seizures using advanced signal processing and machine learning techniques. This review also addresses the clinical challenges that current automated techniques face in order to be fully utilized by clinicians, and highlights the importance of upgrading the current clinical bedside sampling frequencies to higher sampling rates in order to provide better hypoxic-ischemic biomarker detection frameworks. Additionally, the article highlights that current clinical automated epileptiform detection strategies for human neonates have been only concerned with seizure detection after the therapeutic latent phase of injury. Whereas recent animal studies have demonstrated that the latent phase of opportunity is critically important for early diagnosis of hypoxic-ischemic-encephalopathy electroencephalography biomarkers and although difficult, detection strategies could utilize biomarkers in the latent phase to also predict the onset of future seizures.
文摘目的探讨血清低氧诱导因子-1α(HIF-1α)、神经元特异性烯醇化酶(NSE)、胶质纤维酸性蛋白(GFAP)及相关临床特征与新生儿缺氧缺血性脑病(HIE)发生风险的关系。方法选取2020年1月—2023年1月苏州大学附属儿童医院收治的85例HIE患儿作为HIE组,另选取同期在该院出生的120例健康新生儿作为对照组,分析两组的临床资料并检测新生儿出生后3 d血清HIF-1α、NSE、GFAP水平。绘制受试者工作特征(ROC)曲线分析血清HIF-1α、NSE、GFAP水平预测新生儿HIE发病的价值;多因素逐步Logistic回归模型分析新生儿HIE发病的影响因素。结果与对照组相比,HIE组宫内窘迫、脐带异常、羊水污染、1 min Apgar评分≤7分的患儿比例较高(P<0.05),并且血清HIF-1α、NSE、GFAP水平较高(P<0.05);两组孕妇年龄、孕妇文化程度、胎龄、新生儿性别、出生体重、产次、剖宫产、胎膜早破比较,差异均无统计学意义(P>0.05)。ROC曲线分析结果显示,HIF-1α、NSE、GFAP及三者联合预测新生儿HIE发病的敏感性分别为82.7%(95%CI:0.795,0.862)、78.7%(95%CI:0.705,0.849)、84.0%(95%CI:0.803,0.891)、85.3%(95%CI:0.788,0.922),特异性分别为85.3%(95%CI:0.816,0.907)、74.7%(95%CI:0.715,0.796)、72.0%(95%CI:0.692,0.771)、90.5%(95%CI:0.825,0.956),AUC分别为0.907(95%CI:0.884,0.930)、0.850(95%CI:0.816,0.884)、0.893(95%CI:0.827,0.959)、0.936(95%CI:0.905,0.967);多因素逐步Logistic回归分析显示,宫内窘迫[O^R=3.592(95%CI:2.017,6.397)]、脐带异常[O^R=4.905(95%CI:2.862,8.406)]、羊水污染[O^R=7.262(95%CI:3.603,14.637)]、1 min Apgar评分≤7分[O^R=3.139(95%CI:1.954,5.043)]、HIF-1α≥0.463 ng/mL[O^R=2.916(95%CI:1.422,5.980)]、NSE≥12.395μg/L[O^R=3.714(95%CI:1.955,7.056)]、GFAP≥3.962 ng/mL[O^R=3.556(95%CI:2.039,6.202)]均是新生儿HIE发病的危险因素(P<0.05)。结论宫内窘迫、脐带异常、羊水污染、出生后1 min Apgar评分低及血清HIF-1α、NSE、GFAP水平高是新生儿HIE发病的危险因素,临床通过检测血清HIF-1α、NSE、GFAP水平可为临床筛查HIE提供帮助,3项指标联合检测可进一步提高诊断价值。