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摘要:
Introduction: Hyperthermia is a complementary therapy in oncology having various pros and contras for its application. Ascites, pleural effusion, edema and other electrolyte accumulations are frequently excluded from the treatability of the patients with heating locally or systemically. The special gathering of electrolytes is sometimes contraindicated, at times not mentioned in the clinical protocols. However, it is certainly challenging in the oncology where micro and macro edemas, as well as larger electrolyte accumulations (e.g. ascites, pleural effusion), are very frequent. Methods: Excluding patients with accumulation of free electrolytes limits the applications of hyperthermia. To find a solution we are studying the microvasculature and fluid dynamism together with the electric field effects, including the injury currents. The hyperthermia method which we investigate is the modulated electro-hyperthermia (mEHT). We use the Starling’s equation and the injury current in the frame of non-equilibrium thermodynamics and in connection with the biologically closed electric circuits. Results: It is shown that mEHT, unlike the conventional hyperthermia, is applicable for patients who have edema and other free-electrolytes in the volume which is targeted. The heterogeneous heating (unlike the homogeneous, isothermal conventional hyperthermia) promotes the development of tumor-specific immune actions, and so has less adverse-effects, and longer survival time for patients in advanced, metastatic cancers too. Conclusion: mEHT is well applicable in cases of ascites, pleural effusion, edema and other electrolyte accumulations when a patient is treated in complex (complementary) oncological therapy.
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篇名 Electrokinetics of Temperature for Development and Treatment of Effusions
来源期刊 生命科学与技术进展(英文) 学科 医学
关键词 EFFUSION ASCITES EDEMA Modulated Electro-Hyperthermia mEHT
年,卷(期) 2017,(11) 所属期刊栏目
研究方向 页码范围 434-449
页数 16页 分类号 R73
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EFFUSION
ASCITES
EDEMA
Modulated
Electro-Hyperthermia
mEHT
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生命科学与技术进展(英文)
月刊
2156-8456
武汉市江夏区汤逊湖北路38号光谷总部空间
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314
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0
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