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the incidence of acute radiation pneumonitis rises with an increase in the irradiation dosage and area following standard radiotherapy.

急性放射性肺炎的发生率随常规照射剂量和照射面积的增大而增加。

New AT technique with 3DCRT/IMRT did not offer survival benefit, but decreased incidence of radiation pneumonitis.

新的放射治疗技术(3DCRT or IMRT)并未增加存活率,似可降低放射性肺炎的机会。

Minerals, which she named "polonium" in honour of her

现了这些新放射性矿物中的第一种。

In July 1898, Madame Curie and her husband got a great success that they discovered the radioactive element, polonium.

1898年7月,居里夫人和她的丈夫获得了很大的成功—他们发现了放射性元素钋。

In 1898 Marie Curie and her husband discovered two other naturally occurring, strongly radioactive elements, radium and polonium .

1898年居里夫人和她的丈夫发现了另外两种天然存在的强放射性元素,镭和钋。

In 1898 Marie Curie and her husband discover ed two other naturally occurring, strongly radioactive elements, radium and polonium.

1898年居里夫人和她的丈夫发现了另外两种天然存在的强放射性元素,镭和钋。

In 1898 she discovered the first of these new radioactive minerals, which she named "polonium" in honour of her motherland — Poland ...

1898年,她现了这些新放射性矿物中的第一种。为向她的祖国—波兰表示敬意,她把这种矿物取名为"钋"。。。。。。。

Madame Curie was the physicist with expertise in chemistry that, in 1898, discovered the radioactive substances of radium and polonium in Paris, France.

居里夫人是一位具有化学专门知识的物理学家。1898年,她在法国巴黎发现了放射性物质的镭和钋。

In 1898 Madame Curie discovered the first of these new radioactive minerals, which she named "polonium" in honor of her motherland — Poland, and on which she wrote a research paper.

1898年居里夫人发现了这些新放射性矿物中的第一种。为了向祖国—波兰表示敬意,她把这种矿物取名为"钋",并写了一篇关于钋的研究论文。

In July 1898, Madame Curie and her husband got a great success that they discovered the radioactive element, polonium, which Marie named after Poland.

1898年7月,居里夫人和她的丈夫取得了一项极大的成就-----他们发现了一种放射性元素,玛丽以波兰这一名称的字头命名它为钋。

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This one mode pays close attention to network credence foundation of the businessman very much.

这一模式非常关注商人的网络信用基础。

Cell morphology of bacterial ghost of Pasteurella multocida was observed by scanning electron microscopy and inactivation ratio was estimated by CFU analysi.

扫描电镜观察多杀性巴氏杆菌细菌幽灵和菌落形成单位评价遗传灭活率。

There is no differences of cell proliferation vitality between labeled and unlabeled NSCs.

双标记神经干细胞的增殖、分化活力与未标记神经干细胞相比无改变。