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甲状腺Hurthle细胞瘤11例
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作者 成立新 沈毅 周新华 《山东大学耳鼻喉眼学报》 CAS 2008年第1期35-36,共2页
目的探讨甲状腺Hurthle细胞瘤的临床病理特点及诊治原则。方法对11例Hurthle细胞瘤患者资料进行回顾性分析。结果11例Hurthle腺瘤均为良性。所有患者均行术前细针穿刺细胞学检查(Fine-needle aspiration cytology,FNAC),确诊7例,... 目的探讨甲状腺Hurthle细胞瘤的临床病理特点及诊治原则。方法对11例Hurthle细胞瘤患者资料进行回顾性分析。结果11例Hurthle腺瘤均为良性。所有患者均行术前细针穿刺细胞学检查(Fine-needle aspiration cytology,FNAC),确诊7例,确诊率为63.6%;术中冰冻切片检查11例,确诊9例,诊断准确率达81.8%。11例患者均经手术切除,随访16~80个月,无复发、死亡病例。结论术前FNAC检查结合术中冰冻检查,能提高Hurthle细胞瘤的术前、术中确诊率,有助于手术方式的选择。 展开更多
关键词 甲状腺hurtle细胞瘤 诊断 治疗结果
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Diffraction of Water Waves by A Vertically Floating Cylinder in A Two-Layer Fluid 被引量:3
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作者 石强 尤云祥 缪国平 《China Ocean Engineering》 SCIE EI 2008年第2期181-193,共13页
In this paper, the diffraction of water waves by a vertically floating cylinder in a two-layer fluid of a finite depth is studied. Analytical expressions for the hydrodynamic loads on the vertically floating cylinder ... In this paper, the diffraction of water waves by a vertically floating cylinder in a two-layer fluid of a finite depth is studied. Analytical expressions for the hydrodynamic loads on the vertically floating cylinder are obtained by use of the method of eigenfunction expansions. The hydrodynamic loads on the vertically floating cylinder in a two-layer fluid inelude not only the surge, heave and pitch exciting forces due to the incident wave of the surface-wave mode, but also those due to the incident wave of the internal-wave mode. This is different from the case of a homogenous fluid. Some given examples show that, for a two-layer fluid system with a small density difference, the hydrodynamic loads for the surface-wave mode do not differ significantly from those due to surface waves in a single-layer fluid, but the hydrodynamic loads for the internal-wave mode are important over a wide range of frequencies. Moreover, also considered are the free surface and interface elevations generated by the diffraction wave due to the incident wave of the surface-wave and interhal-wave modes, and transfer of energy between modes. 展开更多
关键词 two-layer fluid vertically floating cylinder hydrodynamic loads surface-wave mode internal-wave hurtle
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