胸腔
- 与 胸腔 相关的网络例句 [注:此内容来源于网络,仅供参考]
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Methods CT findings of the pleural effusion were analyzed respectively in 70 cases.
回顾性 分析 70例组织学或临床证实的胸腔积液的良、恶性胸膜改变的CT表现。
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Abstract] Objective: To investigate the features of pleural effusion caused by chronic congested heart failure.
摘要] 目的:探讨慢性充血性心力衰竭患者合并胸腔积液的特点和性质。
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Objective: To investigate the feasibility of drainage with deep venous catheter for the patient of pleural effusion.
目的:探讨应用深静脉导管进行胸腔积液引流的效果。
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Objectives To investigate the clinical characteristics and etiology of infant with pleural effusion .
目的 了解婴幼儿胸腔积液的临床特点与常见病因,为今后的临床实践提供参考。
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Objective To explore the diagnostic value of CD44v6 and CEA in distinguishing malignant pleural effusion from benign one.
目的探讨CD44v6和CEA在胸腔积液性质鉴别诊断中的应用价值。
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Objective: To study causes for pleural effusion after orthotopic liver transplantation and the preventive and therapeutic management.
目的:探讨原位肝移植术后病人胸腔积液的原因及相应防治措施。
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How to control malignant effusion is a critical step for effective treatment.
本研究探讨了重组改构的人肿瘤坏死因子治疗恶性胸腔积液的疗效和毒副反应。
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So, treating the pleural effusion actively was the effective method to prolong the survival time and improve the quality of life.
因此,积极治疗胸腔积液是延长中晚期肿瘤患者生存期和提高生存质量的有效措施之一。
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Methods Among 70 patients with pleural effusion, 35 patients suffered from benign disease and 35 patients suffered from malignant disease.
选取70名胸腔积液患者,其中良性疾病组患者35例,恶性疾病组患者35例。
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Methods:The clinical data of diagnosis and treatment in 64 cases of tuberculous pleural effusion from 2004 to 2006 in our department were analysed retrospectively.
对我科2004~2006年收治的64例结核性胸腔积液患者的临床诊治资料进行回顾性分析。
- 推荐网络例句
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The split between the two groups can hardly be papered over.
这两个团体间的分歧难以掩饰。
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This approach not only encourages a greater number of responses, but minimizes the likelihood of stale groupthink.
这种做法不仅鼓励了更多的反应,而且减少跟风的可能性。
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The new PS20 solar power tower collected sunlight through mirrors known as "heliostats" to produce steam that is converted into electricity by a turbine in Sanlucar la Mayor, Spain, Wednesday.
聚光:照片上是建在西班牙桑路卡拉马尤城的一座新型PS20塔式太阳能电站。被称为&日光反射装置&的镜子将太阳光反射到主塔,然后用聚集的热量产生蒸汽进而通过涡轮机转化为电力