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磁感应热疗 magnetic-induction hyperthermia英语短句 例句大全

时间:2020-08-26 10:59:23

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磁感应热疗 magnetic-induction hyperthermia英语短句 例句大全

磁感应热疗,magnetic-induction hyperthermia

1)magnetic-induction hyperthermia磁感应热疗

1.At the present, the study on tumormagnetic-induction hyperthermia is very hot, and thatmagnetic-induction hyperthermia treatment planning system is important content, its theory and technology including medical image standard, image processing, computer graphics, visualization, biomedicine, software engineering and so on.针对已研制的磁感应热疗样机系统,研究适用其使用的治疗计划系统,就其关键技术和计划理论包括医学影像存储与通信标准DICOM3。

2.At the present, the study onmagnetic-induction hyperthermia is a important branch of tumor hyperthermia method, and that clinical hyperthermia facility development as the research platform is a important contents, its theory and technology including medical image standard, image processing, biomedicine, software engineering, information technology and automatization, and so on.本论文针对国内首次研制成功的磁感应热疗临床机系统,就其关键技术和理论包括励磁电源设计、谐振电容与电感结构设计、磁芯设计以及电控系统设计等作了详细地阐述、分析和相关实验。

英文短句/例句

1.Application of Micro-nanometer Magnetic Materials in Magnetic Inductive Oncotherapy微纳米磁性材料在肿瘤磁感应热疗中的应用

2.Effect of Ni-Cu Thermoseeds on L-929 Cells and Muscle Tissues in Rabbits磁感应热疗用镍-铜热籽对L-929细胞及兔肌肉组织的影响

3.Researches on Hyperthermia Using Magnetite Thermoseed Combined with Astragalus Mongholicus to Mediate the Abcopal Antitumor Effect on the Rat Walker-256 Tumor磁感应热疗联合黄芪对大鼠Walker-256肿瘤异位效应的研究

4.Heating Effect of Ni-Cu Thermoseed Used in Magnetic Inductive Therapy and Effect of Au Coating磁感应治疗用Ni-Cu合金热籽的磁热效应

5.Effect of magnetic mediums in magnetic induction hyperthermia and influential factors磁感应热治疗中磁介质的作用与影响因素

6.Magnetocaloric Effect of Ni-Cu Thermoseed Used in Magnetic Inductive Therapy and Effect of Au Coating on the Heating Efficiency磁感应治疗用Ni-Cu合金铁磁热籽的磁热效应及Au镀层对发热效率的影响

7.The Heat Effect of Magnetite for Hyperthermia under Alternating Magnetic Field磁热疗用Fe_3O_4在交变磁场中的热效应

8.ectric heating by electromagnetic induction电磁感应产生的电热

9.Feasibility of inhibiting coronary artery restenosis after percutaneous transluminal coronary angioplasty by magnetic induction target hyperthermia treatment磁感应靶向热疗抑制冠状动脉支架置入后再狭窄的可能性研究

10.The Study of Electromagnetic Induction Heating and Design of Super Induction Heater;电磁感应加热理论研究及强力感应加热器设计

11.Application of PLC in Electromagnetic Induction Heated Dryer for Paper ProductionPLC在电磁感应加热造纸烘缸中的应用

12.Electromagnetic Press and Induction Heat Calomlation of EMC电磁铸造过程中电磁压力与感应热计算

13.Another possible heating mechanism is electromagnetic induction.另一个可能的加热机制是电磁感应。

14.ANALYSIS OF THE CAUSE OF CABLE GENERATING HEAT BYTHE PRINCIPLE OF ELECTROMAGNETIC INDUCTION;用电磁感应原理分析电缆发热的原因

15.Experimental Investigation on Electromagnetic Induction Heating Characteristics for High Temperature Air电磁感应高温空气加热特性试验研究

16.Therapeutic Effect of Fe_3O_4 Nanometer Magnetic Induction Hyperthermia on Walker-256 Tumor in Wistar RatsFe_3O_4磁纳米介导磁感应治疗Wistar大鼠Walker-256肿瘤

17.Research on the Numerical Simulation of Electromagnetic -Thermal Coupling Field of Slab in Floating Induction Heating;平板移动感应加热磁—热耦合场数值模拟研究

18.Numerical Simulation of Electromagnetic-Thermal Coupling Field and Regression Analysis of Temperature in Induction Heating;感应加热磁热耦合场数值模拟及温度回归分析

相关短句/例句

magnetic inductive hyperthermia肿瘤磁感应热疗

1.Objective: The objective of this paper is to research the biocompatibility of self-prepared gilded Ni-Cu thermoseed, which has the potential application in tumormagnetic inductive hyperthermia.结论:从实验目前的研究结果来看,自制的镀金镍-铜热籽具有良好的生物相容性,在肿瘤磁感应热疗方面具有良好的应用前景。

3)magnetic inductive therapy感应热疗

4)inductotherm apparatus感应热疗机

5)Radiofrequency-induced hyperthermia磁感应加热

6)inductothermy apparatus感应电热疗设备

延伸阅读

磁感应强度磁感应强度magneticinduction描述磁场强弱和方向的基本物理量。是矢量,常用符号B表示。点电荷q以速度v在磁场中运动时受到力f的作用。在磁场给定的条件下,f的大小与电荷运动的方向有关。当v沿某个特殊方向或与之反向时,受力为零;当v与此特殊方向垂直时受力最大,为fm。fm与|q|及v成正比,比值与运动电荷无关,反映磁场本身的性质,定义为磁感应强度的大小,即。B的方向定义为:由正电荷所受最大力fm的方向转向电荷运动方向v时,右手螺旋前进的方向。定义了B之后,运动电荷在磁场B中所受的力可表为f=qv×B,此即洛伦兹力公式。除利用洛伦兹力定义B外,也可以根据电流元Idl在磁场中所受安培力df=Idl×B来定义B,或根据磁矩m在磁场中所受力矩M=m×B来定义B,三种定义,方法雷同,完全等价。在国际单位制(SI)中,磁感应强度的单位是特斯拉,简称特(T)。在高斯单位制中,磁感应强度的单位是高斯(Gs),1T=104Gs。由于历史的原因,与电场强度E对应的描述磁场的基本物理量被称为磁感应强度B,而另一辅助量却被称为磁场强度H,名实不符,容易混淆。通常所谓磁场,均指的是B。

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