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    • 2. 发明专利
    • DE69027459T2
    • 1997-02-20
    • DE69027459
    • 1990-02-15
    • SAITO YOSHIAKI
    • SAITO YOSHIAKI
    • A61F7/00A61N5/02H05B6/64H05B6/00A61B6/00
    • An electromagnetic heating device for heating a living body or an object (15), comprising a cavity resonator (11) made of hollow electroconductive material for receiving a living body or an object (15) therein and heating same by a high frequency electromagnetic field produced therein; and at least an electric field concentrator (14a, 14b) disposed in the cavity resonator (11) separately therefrom. Thus, it is possible to concentrate an electric field to a desired location to supply a strong current into a living body or an object (15). Further, since the electric field concentrator (14a, 14b) is electrically out of contact with the cavity resonator (11), a frequency adjusting element (17a, 17b) and an impedance matching element (19) may be easily provided in the vicinity for optimum transmission of high frequency electromagnetic energy thereby eliminating the need for adjusting the frequency of the high frequency electromagnetic energy source. Since an oscillator without the capability to change its frequency can be manufactured at a fraction of the cost for manufacturing a variable frequency oscillator, the cost of the overall heating device can be drastically reduced. By shaping the free end of the electric field concentrator (14a, 14b), it is possible to achieve a desired degree of energy concentration.
    • 4. 发明公开
    • Electromagnetic-wave-operated heating apparatus
    • Mittels elektromagnetischer Wellen wirkendesHeizgerät。
    • EP0459520A2
    • 1991-12-04
    • EP91108969.6
    • 1991-05-31
    • SAITO, Yoshiaki
    • SAITO, Yoshiaki
    • A61N1/40A61N5/02
    • A61N2/002A61N1/403
    • In an electromagnetic-wave-operated heating apparatus in which, with a body to be heated such as a living body (5) inserted into the cavity resonator (1) incorporating at least one reentrant (4), an electromagnetic wave produced by high frequency energy supplied into the cavity resonator (1) is used to heat the body; an electric field concentrating member (7) is provided between the reentrant (4) and the body (5) in such a manner that the electric field concentrating member (7) is provided to be electrically disconnected to the reentrant (4), whereby, under an ordinary condition that the body (5) held in the apparatus is not in parallel with the end face of the reentrant (4), a deep portion of the body (5) can be heated with high efficiency.
    • 在一种电磁波操作加热装置中,使用诸如被插入到具有至少一个折入件的空腔谐振器中的诸如生物体的被加热物体的加热体,将由提供到空腔谐振器的高频能量产生的电磁波用于 加热身体 电场集中部件设置在折返体与主体之间,使得电场集中部件被设置成与凹口电断开,从而在保持在装置中的主体不平行的普通条件下 随着折痕的端面,身体的深部可以高效率地被加热。
    • 5. 发明专利
    • DE69027459D1
    • 1996-07-25
    • DE69027459
    • 1990-02-15
    • SAITO YOSHIAKI
    • SAITO YOSHIAKI
    • A61F7/00A61N5/02H05B6/64H05B6/00A61B6/00
    • An electromagnetic heating device for heating a living body or an object (15), comprising a cavity resonator (11) made of hollow electroconductive material for receiving a living body or an object (15) therein and heating same by a high frequency electromagnetic field produced therein; and at least an electric field concentrator (14a, 14b) disposed in the cavity resonator (11) separately therefrom. Thus, it is possible to concentrate an electric field to a desired location to supply a strong current into a living body or an object (15). Further, since the electric field concentrator (14a, 14b) is electrically out of contact with the cavity resonator (11), a frequency adjusting element (17a, 17b) and an impedance matching element (19) may be easily provided in the vicinity for optimum transmission of high frequency electromagnetic energy thereby eliminating the need for adjusting the frequency of the high frequency electromagnetic energy source. Since an oscillator without the capability to change its frequency can be manufactured at a fraction of the cost for manufacturing a variable frequency oscillator, the cost of the overall heating device can be drastically reduced. By shaping the free end of the electric field concentrator (14a, 14b), it is possible to achieve a desired degree of energy concentration.