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biomagnetic
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  生物
     (2) The technique of biomagnetic measurement system is introduced, whichincluding the development, the principle, the structure and the applications of thebiomagnetic measure system.
     2、介绍了生物医学磁测量系统技术,包括生物磁测量技术的发展,人体磁测量装置的原理、构成以及生物磁测量系统的应用。
短句来源
     Biomagnetic Application of Superconductivity
     超导性能在生物磁方面的应用
短句来源
     PRELIMINARY DESIGN OF THE SQUID BIOMAGNETIC GRADIOMETER
     SQUID生物磁梯度计初步设计
短句来源
     Study on the Cell Ultrastructure of Lentinus edodes with the Biomagnetic Effects
     香菇磁生物效应的超微结构研究
短句来源
     Base on the propcities of the source of magnetic dipole,an analysis for biomagnetic gradiometer on the relations of the base-length b,the distance Z0 between the lowest coil and source,the imbalance factorδ,the precision of measuring η are given in this paper.
     本文从磁偶极子的源性质出发分析了生物磁梯度计基线长度b与下检取线圈的源距z_0、不平衡因素δ、测量精度η的关系,得出。
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  生物磁
     (2) The technique of biomagnetic measurement system is introduced, whichincluding the development, the principle, the structure and the applications of thebiomagnetic measure system.
     2、介绍了生物医学磁测量系统技术,包括生物磁测量技术的发展,人体磁测量装置的原理、构成以及生物磁测量系统的应用。
短句来源
     Biomagnetic Application of Superconductivity
     超导性能在生物磁方面的应用
短句来源
     PRELIMINARY DESIGN OF THE SQUID BIOMAGNETIC GRADIOMETER
     SQUID生物磁梯度计初步设计
短句来源
     Base on the propcities of the source of magnetic dipole,an analysis for biomagnetic gradiometer on the relations of the base-length b,the distance Z0 between the lowest coil and source,the imbalance factorδ,the precision of measuring η are given in this paper.
     本文从磁偶极子的源性质出发分析了生物磁梯度计基线长度b与下检取线圈的源距z_0、不平衡因素δ、测量精度η的关系,得出。
短句来源
     The design of biomagnetic gradiomeler mainly includes designing pickup coil induction,optioning baselength b,determining the demand of coils balance and optioning the adjusting measure for coils balance.
     生物磁梯度计的设计主要包括线圈电感设计、基线长度选取、线圈平衡的要求确定和选定平衡调节措施等。
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  “biomagnetic”译为未确定词的双语例句
     BIOMAGNETIC FIELD AND ITS MEASUREMENT
     生物磁场及其测量
短句来源
     Application of Biomagnetic Technique in industry and the analysis Mechainism
     生物磁技术在工农业的应用及其机理探讨
短句来源
     Isolation Bacteria by Use the Principle of Magnetic Separation ——Isolate the Bioleaching Bacteria by Biomagnetic Seperation
     磁选育浸矿菌种新方法的研究——磁泳分离菌种
短句来源
     Magnetic separation technology has many potential applications in biochemistry and biomedicine, such as cell sorting, immunoassay, drug delivery, enzyme immobilization and affinity separation of biomedicine et al, In this review, the recent developments in preparation of magnetic carriers and surface chemical modification for biomagnetic separation are described.
     磁性分离在生物化学和生物医学工程中,特别是在细胞分离、免疫检测、靶向药物、固定化酶及亲和分离等诸多方面展现出重要的应用前景。 本文对磁性分离载体制备工艺和表面化学修饰方法的研究进展情况进行了综述。
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  biomagnetic
Biomagnetic fluid flow over a stretching sheet with non linear
      
Application of a Biomagnetic Measurement System (BMS) to the Evaluation of Gastrointestinal Transit of Intestinal Pressure-Contr
      
Tiny Signals from the Human Brain: Acquisition and Processing of Biomagnetic Fields in Magnetoencephalography
      
In the off-axis electronic gradiometers for biomagnetic measurements, we optimized low frequency noise and performed two-dimensional magnetic mapping of magnetic signal from human heart.
      
Results are presented from eddy-current NDE in an unshielded environment of aluminium plates with sub-surface flaws, and from biomagnetic measurements of spinal and peripheral nerve evoked fields.
      
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An approach to measure biomagnetic field by using a SQUID second order gradio-meter has been explored.Some results of measurement on the human hearts have been reported.While the MCG and the ECG are measured simultaneously,one U wave can be seen clearly in the MCG,and it can also te seen that the polarity of the T wave twith respact to the R wave and the relative strength of the T wave,the P wave and the U wave are obviously different between the MCG and the ECG.It is discoverd hat the T wave is late and...

An approach to measure biomagnetic field by using a SQUID second order gradio-meter has been explored.Some results of measurement on the human hearts have been reported.While the MCG and the ECG are measured simultaneously,one U wave can be seen clearly in the MCG,and it can also te seen that the polarity of the T wave twith respact to the R wave and the relative strength of the T wave,the P wave and the U wave are obviously different between the MCG and the ECG.It is discoverd hat the T wave is late and the S-T section deviates downward from the basis line in the MCG after a deep breathe.Seme prelinrnary maetic measurements of other organs have been made too.

本文阐述了使用SQUID二次梯度计进行生物磁研究的方法。报告了探测人体心磁场的结果。在与心电图(ECG)进行比较的同步测量中,清晰地观察到心磁图(MCG)中的U波,发现了波相对于R波的极性、R波的幅度和极性有明显地变化,实验还发现深吸气后MCG中的T波滞后。叙述了脑磁等的初步观测。

The design of biomagnetic gradiomeler mainly includes designing pickup coil induction,optioning baselength b,determining the demand of coils balance and optioning the adjusting measure for coils balance.Base on the propcities of the source of magnetic dipole,an analysis for biomagnetic gradiometer on the relations of the base-length b,the distance Z0 between the lowest coil and source,the imbalance factorδ,the precision of measuring η are given in this paper.It is obtained that Z0>b>(Z0/2) So that,in...

The design of biomagnetic gradiomeler mainly includes designing pickup coil induction,optioning baselength b,determining the demand of coils balance and optioning the adjusting measure for coils balance.Base on the propcities of the source of magnetic dipole,an analysis for biomagnetic gradiometer on the relations of the base-length b,the distance Z0 between the lowest coil and source,the imbalance factorδ,the precision of measuring η are given in this paper.It is obtained that Z0>b>(Z0/2) So that,in general,the value of baselength b,in fact,can be only decided according to the resolution of flux of the SQUID system.The response of flux of the first order gradiometer and the second order gradiomeler with different imbalance_factor are also compared heve.It is pointed out that the main factor to decide the space discrimination of the gradiometer is the imbalance factor against uniform magnetic field.From comparison with these curves,the requirement of coils balance is obtained.Finally,the data of designing a second ordet gradiometer met the SQUID system developed by ourselves are given.

生物磁梯度计的设计主要包括线圈电感设计、基线长度选取、线圈平衡的要求确定和选定平衡调节措施等。本文从磁偶极子的源性质出发分析了生物磁梯度计基线长度b与下检取线圈的源距z_0、不平衡因素δ、测量精度η的关系,得出。因而一般设计中的b的大小实际上只需要根据SQUID系统的磁通分辨能力来定。本文又比较了不同的不乎衡因素的一次梯度计、二次梯度计对磁偶极子源的磁通响应曲线,指出影响二次梯度计空间鉴别能力的主要因素是对磁场项的不平衡因素,从这一曲线的比较得出了对线圈平衡的要求。最后,给出了配合本单位研制的SQUID系统的第二次梯度计的设计数据。

With the advent of high Tc superconductor materials, since the spring of 1987, and an international need for cost-effective health care, the time has come for full utilization of SQUID's (Superconductive Quantum Interference Devices) ultra-high sensitivity to weak biomagnetic fields for non-invasive in vivo, real-time physiologic imaging to diagnose cardiac-vascular and cerebral vascular disease at early stages. Feasibility and future potentials of this new modality,SEPI (Superconductive Electro-physiologic...

With the advent of high Tc superconductor materials, since the spring of 1987, and an international need for cost-effective health care, the time has come for full utilization of SQUID's (Superconductive Quantum Interference Devices) ultra-high sensitivity to weak biomagnetic fields for non-invasive in vivo, real-time physiologic imaging to diagnose cardiac-vascular and cerebral vascular disease at early stages. Feasibility and future potentials of this new modality,SEPI (Superconductive Electro-physiologic Imaging) are presented.

随着1987年含有高临界温度(Tc)的超导物质的发现,和对于卫生保健注重经济效益的国际需求,充分利用了SQUID(超导量子干涉装置)的高级性能来处理很弱的生物磁埸的时代已经到来。对活体采用非创伤性的,即用生理显像方法可以早期诊断心脑血管疾病。本文对这种新型的物理显像装置SEPI(超导电生理显像)的可行性及其应用前景做了讨论。

 
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