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How to lower perinatal mortality? Perinatal care in Japan.

OBJECTIVE: To review the 30-year history of perinatal medical care in Japan, and the recently initiated regionalization system of perinatal centers, new technologies and treatments in obstetric and neonatal medicine developed in Japan. STATISTICAL DATA: Maternal and neonatal health statistics of Japan released by the Ministry of Health and Welfare, Japanese Society of Obstetrics and Gynecology, Japanese Pediatric Society, and Tokyo Women's Medical University. LABORATORY DATA: Serological assay and immunohistochemical staining employing TKH-2 antibody for the diagnosis of amniotic fluid embolism, and assaying granulocyte elastase as a specific inflammatory marker in mucous samples from the uterine cervical canal for the prediction of preterm labor or premature rupture of membranes. TREATMENTS: Urinary trypsin inhibitor (Urinastatin) for the prevention of preterm delivery, and a double-blind, placebo-controlled, randomized trial of antithrombin-III therapy in severe preeclampsia. CONCLUSION: Over the last 30 years, the statistical data of perinatal health care, such as maternal and perinatal mortality rates, have markedly improved in Japan. These results are supported by the advanced technologies and newly developed treatments in obstetric and neonatal medicine. The regionalization of perinatal centers, a national project in order to assure a systematic collaboration among primary, secondary, and tertiary centers, has just started in Japan. It also aims at systematization of the function of perinatal centers on the national level through the informative promoting action.

Female↗

Estimation of perinatal mortalities in the world's countries from maternal mortalities.

Perinatal mortality was estimated by the regression equation log10 Y = 0.7826log10X + 0.08, obtained by perinatal mortality (Y) and maternal mortality (X) in Japan in 1960-1990. The error rate was approximately 9% in the estimation. Unpublished Japanese perinatal mortality in 1899-1947 was estimated from maternal mortality by using the equation, and appropriate results were obtained. Perinatal mortalities of the world's countries were estimated from their maternal mortalities listed in UNICEF reports with use of the above equation. Two peaks were noted in the country number distribution at 0-19 and 120-140 of estimated perinatal mortality. The mortality was 20-99 in 43% of 111 countries analyzed and 100 or more in 25%. The results suggest that further efforts should be made for the improvement of worldwide maternal and child health.

Australia↗

[Infant mortality and perinatal mortality in Poland in the eighties. II. Deaths by birthweight].

The dynamics of the changes in the level of the birthweight-specific infant mortality and perinatal mortality rates by age and cause during the eighties is presented. The strongest decline in the birthweight-specific infant and perinatal mortality rates is observed among the newborns weighing less than 2500 g. The level of the low birth weight (7.9% in 1989) and despite the decrease--the infant and perinatal mortality rates among the newborns weighing 1001-2500 g (100.5 and 109.4 respectively in 1989) and among the newborns weighing 601-1000 g (865.3 and 851.1 respectively in 1989) are high comparing to the developed countries.

Birth Weight↗

An assessment of the effects of maternal age and parity in different components of perinatal mortality.

Perinatal mortality has several components which may have distinct epidemiologic features. In an investigation of the total singleton birth population of New York City in 1976-1978 (n = 320,726), the authors divided perinatal mortality into four components: late fetal deaths that occurred before labor (late antepartum fetal deaths), fetal deaths during labor (intrapartum fetal deaths), neonatal deaths, and perinatal deaths attributed to congenital anomalies, and they assessed the relation of each of these to maternal age and parity, controlling for relevant confounding factors. In analyses which controlled for prior fetal loss, type of service (public vs. private), race, marital status, and mother's educational attainment in a multiple logistic regression model, the authors found that: 1) increasing maternal age was strongly associated with antepartum fetal deaths but not with intrapartum fetal deaths, while older maternal age was also associated with perinatal deaths attributed to congenital anomalies; 2) high parity bore a strong relationship to intrapartum fetal deaths, but none to antepartum fetal deaths, neonatal deaths, or congenital anomaly deaths; and 3) for neonatal death, there was a statistically significant (p less than 0.001) interaction between parity and age such that mothers over 34 years old having their first birth were at especially high risk.

Adult↗

An audit of perinatal mortality.

Perinatal mortality rates are considered in the western world to be a quantitative barometer of maternity care. This 6-year prospective perinatal audit was conducted at a tertiary hospital in order to determine foetal outcome, and the common causes of foetal and early neonatal deaths. Of a total of 30,987 births, there were 469 stillbirths and 391 early neonatal deaths, giving a perinatal mortality rate of 27.7 per 1000 total births. The leading causes of stillbirths were the hypertensive disorders of pregnancy, abruptio placentae, diabetes mellitus, intrapartum foetal distress and lethal congenital anomalies. Neonatal deaths were mainly due to the respiratory distress syndrome (57.8%), birth asphyxia (22.2%) and sepsis (13.5%). A dedicated medical team, including a neonatologist, to manage pre-eclampsia, and more senior obstetric involvement in the labour ward are recommended.

Birth Weight↗

[Infant mortality and perinatal mortality in Poland in the eighties].

The dynamics of the changes in the level of infant mortality and perinatal mortality in Poland during 1980-89 by age and cause is presented. The statistical definitions concerning the perinatal period are used according to the World Health Organization's recommendations. There is stronger decline in postneonatal mortality rates then in neonatal rates during the eighties. The level of neonatal mortality rates (14.8 in 1989) and perinatal mortality rates (19.6 in 1989) is high comparing to the developed countries.

Humans↗

Perinatal mortality in triplet births in Japan: time trends and factors influencing mortality.

Perinatal mortality rates (PMRs) in triplets were analyzed using Japanese Vital Statistics during the period of 1980-1998. The total number of perinatal deaths in triplets was 1051. The PMR significantly decreased from 214 per 1000 births in 1980 to 39 in 1998, a reduction of 82%. PMRs in triplets were 11.1-fold higher in 1980 and 6.9-fold higher in 1998 than in singletons, indicating that PMRs improved more in triplets than in singletons during the last two decades in Japan. The PMR was the highest in the third-born, followed by the second- and the first-born triplets in each period. As for maternal age, the PMR was 1.5-3.7 times higher in the < 25 years of age group than the other age groups. Additionally, the PMR was the lowest for birthweight (BW) >or= 2000 g during the entire period. In addition, the PMR decreased with gestational age (GA) of up to 38-39 weeks and increased thereafter. The effects of BW on the PMR were stronger than the effects of GA. The proportion of perinatal deaths in triplets with extremely low BW (< 1000 g) was 74% in 1980-1989 and increased to 82% in 1990-1998. The declining PMR was unlikely to be due to the improvement in BW in triplets. It is likely that it was related to the improved medical management of triplets during the perinatal period and the first week of life. Information obtained in the present study may be useful in counseling pregnant woman about triplet births.

Birth Order↗

Changes in social and biological factors in New Zealand perinatal mortality.

Perinatal mortality in New Zealand decreased substantially during the 1970s. In 1979 it had fallen by five per 1000 to 12. The decrease applied to both high risk and low risk infants. The greater reductions occurred in infants born to mothers younger than 20 or older than 35, in infants with birthweights under 2500 g and in infants of fathers with semiskilled or unskilled occupations. The differential between the rates for nuptial and ex-nuptial infants narrowed.

Age Factors↗

Socio-demographic risk factors for perinatal mortality. A study of perinatal mortality in the French district of Seine-Saint-Denis.

OBJECTIVES: To investigate the impact of a set of socio-demographic risk factors commonly associated with perinatal mortality -- age, parity, marital status, educational attainment, occupation, and ethnic origin in the French district of Seine-Saint-Denis. METHODS: The study has a case-control design with prospective identification of cases. It includes all singleton non-malformed perinatal deaths which occurred between October 1, 1989 and September 30, 1992. Logistic regression is used to estimate odds ratios. Base incidence rates are generated by incorporating sampling information for the controls. RESULTS: All socio-demographic variables are significantly related to the risk of perinatal mortality in univariate analyses. Some of the increased risk due to social factors is explained by differential age and parity distributions. In multivariate models, however, only parity and country of origin are significant. Women born in the French overseas departments and territories and Sub-Saharan Africa have the highest odds ratios. CONCLUSIONS: Women born outside of continental France face an elevated risk of experiencing a perinatal death even after controlling for age, parity and socioeconomic factors. Although, this excess risk may reflect residual variation in socioeconomic status, alternative explanations such as standards of prenatal care, medical problems during pregnancy and delivery, and cultural practices should be explored.

Adult↗

The interrelationship of maternal smoking and increased perinatal mortality with other risk factors. Further analysis of the Ontario Perinatal Mortality Study, 1960-1961.

Increased perinatal mortality among smokers' babies has been observed in many but not in all studies, with a statistically significant difference in some. This paper explores the hypothesis that maternal smoking may interact with other risk factors, so that a dose-related increase in perinatal mortality may be enhance or masked depending upon the presence or absence of these factors. Data are from the Ontario Perinatal Mortality Study of all single b irths in 10 teaching hospitals in Ontario in 1960-1961 a total of 51,490 births, including 701 fetal deaths and 655 early neonatal deaths. Perinatal mortality increased significantly with smoking, and was also affected by such factors as maternal age, parity, hospital status, previous pregnancy history, hemoglobin level, and others. Smoking frequencies also varied by many of these characteristics. Perinatal mortality was therefore analyzed by the amount smoked during pregnancy within subgroups of these antecedent risk factors. When smoking and other risk factors were cross-tabulated among 52 data subgroups, only the light smokers (less than 1 pack per day) under age 20 had lower perinatal mortality rates than their nonsmoking counterparts. In almost all subgroups the mortality increase with smoking was dose-related, but not in a simple, linear way. The increased risk of perinatal mortality associated with light smoking among young, low-parity, non-anemic mothers was less than 10 percent. At the other extreme, mothers of high parity, public hospital status, with previous low birthweight births, or with hemoglobin less than 11 gm had increased perinatal mortality risks of 70-100 percent when they were heavy smokers. The failure of some studies to find a significant increase in perinatal mortality with maternal smoking may be due to selection of study populations from the end of the spectrum where light smoking is associated with only a slight increase in perinatal risk. Other studies may select higher risk populations, where the influence of smoking on mortality is stronger. Depending on the magnitude of the difference, the amount smoked, and the size of the study, results might or might not be statistically significant.

Adult↗