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国际环境诱变剂和致癌物防护委员会。ICPEMC工作文件第10号。生殖细胞突变监测的新方法:对不明原因多发性先天性异常中组成要素的成对评估。

International Commission for Protection against Environmental Mutagens and Carcinogens. ICPEMC Working Paper No. 10. A new approach to germinal mutation surveillance: pair-wise evaluation of component elements in unidentified multiple congenital abnormalities.

作者信息

Kis-Varga A, Rudas T, Czeizel A

机构信息

Department of Human Genetics and Teratology, Eötvös University, Budapest, Hungary.

出版信息

Mutat Res. 1990 Jan;238(1):87-97. doi: 10.1016/0165-1110(90)90040-i.

Abstract

In the Hungarian population-based surveillance of germinal mutations, 3 indicator conditions of offspring are being followed, namely 15 sentinel anomalies, Down syndrome and unidentified multiple congenital abnormality. The latter is discussed here as a possible indicator of germinal dominant gene and chromosomal mutations. The component congenital abnormalities of unidentified multiple congenital abnormalities are classified into 45 groups. The component congenital abnormalities were reduced to pairs. A pair is a set of 2 independent component congenital abnormalities in index patients with 2 or more congenital abnormalities. Baseline figures of all component congenital abnormality pairs in 3722 unidentified multiple congenital abnormalities were determined in the study period 1973-1982. The observed data for 1983 were compared with expected occurrences based on baseline figures. This pair-wise evaluation of component elements within unidentified multiple congenital abnormalities seems to be an adequate surveillance method to detect any time cluster of congenital abnormality pairs due to environmental factors including germinal mutagens.

摘要

在匈牙利基于人群的生殖细胞突变监测中,对后代的3种指示性病症进行跟踪,即15种哨点异常、唐氏综合征和不明原因的多发性先天性异常。本文将后者作为生殖细胞显性基因和染色体突变的一种可能指示物进行讨论。不明原因的多发性先天性异常的组成性先天性异常被分为45组。将组成性先天性异常归纳为配对。一对是指在患有2种或更多先天性异常的索引患者中一组2种独立的组成性先天性异常。在1973 - 1982年研究期间确定了3722例不明原因的多发性先天性异常中所有组成性先天性异常配对的基线数据。将1983年的观察数据与基于基线数据的预期发生率进行比较。这种对不明原因的多发性先天性异常内组成要素的成对评估似乎是一种足够的监测方法,以检测由于包括生殖细胞诱变剂在内的环境因素导致的先天性异常配对的任何时间聚集。

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