我国热带病学巨星——钟惠澜

来源 :广东史志 | 被引量 : 0次 | 上传用户:tangtang132
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
蜚声国内外的热带医学、寄生虫病学专家钟惠澜,又名亮畴,原籍广东省梅县雁洋。其父因生活所迫,卖身到葡属东帝汶岛当苦工,生有四子一女。1901年,钟惠澜便出生在那里,居幼。由于生活十分贫苦,钟惠澜四岁时父亲便离开人世,全靠母亲和大哥将其抚养长大。也因迫于生活,钟惠澜幼年曾被迫当了两年童工,十三岁才上小学,三年便念完了小学课程。十六岁那年,得到机会回国,就读于梅县广益中学。 Renowned domestic and international tropical medicine, parasitology expert Zhong Huilan, also known as bright domain, originating in Meizhou, Guangdong Province Yan Yang. His father was forced by his life to work as a hard worker in the Portuguese island of Timor-Leste. He had four children and one daughter. In 1901, Zhong Huilan was born there, young. Due to the very poor living conditions, when Zhong Huilan was four years old, his father left his life and raised him up thanks to his mother and brother. As a result of her life, Zhong Huilan was forced to work as a child laborian for two years at her young age. She started her elementary school at the age of 13 and finished her elementary school after three years. At the age of 16, I got the opportunity to return to China and attend the Guangyi High School in Meixian County.
其他文献
以改变中华民族经济与经济学的双重贫困为最大追求—记青年经济学家杨欢进教授本刊特约记者世玲笑梅在改革开放的时代潮中,在古老的燕赵大地上,出现了这样一位引人注目而又知名
值此世纪之交,人类迎接知识经济时代来临,中国实施“科教兴国”方略起步之际,我们对曾为人类作出过杰出贡献的科学家尤感钦佩.我们将永远铭记他们的功绩.在我的友人中,有两位辰学家
李福清是俄罗斯汉学家,俄罗斯科学院院士,他的汉学研究包括五个领域:民间文学、古典及现代文学、民间文化、台湾原住民文化和探寻逸失海外的古籍。他在几十年的汉学研究中形
Four new aminooligosaccharides, isovalertatins M33 1, D13 2, D33 3, and D43 4, were isolated from the culture filtrate of Streptomyces luteogriseus. Their struc
中国古代的商队从长安出发,穿越楼兰,走向大马士革,向波斯湾和地中海进发。楼兰成为丝绸之路的重要枢纽,通过楼兰出土的文书残纸可以看出中国古代的经济繁盛,政治互通和文化
虔诚的基督徒美国选手迈·普林斯顿,在第2届奥运会男子跳远预赛中,以7米·75领先。决赛决定在第二天举行,人们都看好普林斯顿。可是,普林斯顿决赛时却轻易弃权了,局外人不知
各位代表:自第三届会员代表大会换届以来,我会先后在原国家石化局、国家经贸委和国资委、中国石油和化学工业协会的领导下,经过全行业上下的努力,使会员队伍不断壮大,产品体
AIM: To investigate the possibility whether THPB-18 (l-12-shloroscoulerine) possesses the D1 agonist-D2 antago- nist action on meso-accumbens-mPFC DA system. M
随着社会的发展,人类意识的改变,终生体育的思想已被我国体育界和教育界所接受。学校体育要为人的终生体育奠定基础,就必须加强学生体育能力的培养。培养学生体育能力之所以
人卵透明带(hZP)在精卵识别与结合、诱发顶体胞吐(AE)以及阻止多重受精等方面起关键作用。目前已知hZP由4种糖蛋白构成,即hZP1、hZP2、hZP3和hZP4。本文就重组DNA技术获得的r