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    • 6. 发明授权
    • Therapy and imaging probe and therapeutic treatment apparatus utilizing
it
    • 治疗和成像探针和治疗仪器利用它
    • US5720287A
    • 1998-02-24
    • US659581
    • 1996-06-06
    • Jean-Yves ChapelonEmmanuel BlancFrancois Lacoste
    • Jean-Yves ChapelonEmmanuel BlancFrancois Lacoste
    • A61B1/00A61B8/12A61B17/00A61B18/00A61N7/02G10K11/35
    • A61B8/4461A61B18/00A61B8/12A61B8/4209A61B8/445A61N7/022G10K11/35G10K11/355A61B2017/00106
    • The therapy and imaging probe of the invention comprises a probe body (20') of an elongate shape defining a general axis (X--X), one imaging transducer (40') for transmitting imaging waves, and one therapy transducer (30') for transmitting therapy waves. The imaging transducer is mounted on first support means providing translational movement of the imaging transducer within the probe, parallel to the general axis (X--X) of the probe, between a withdrawn position and an extended position. The therapy transducer is mounted on second support means providing rotation of the therapy transducer within the probe, about an axis of rotation (X1--X1) parallel to the general axis (X--X) of the probe but offset with respect to the imaging transducer, to allow rotation of the therapy transducer between a withdrawn position and a treatment position. In the withdrawn or non-active position of the therapy transducer, the imaging transducer may be brought by translational movement to its extended position to occupy the place occupied by the therapy transducer in its treatment position. Thus, the imaging transducer may form an image of a region for treatment by the therapy transducer. In the treatment position of the therapy transducer, the imaging transducer is at its withdrawn position. The therapy transducer, during the transmission of therapy waves, directly transmits the therapy waves in a direction substantially identical to the direction in which the imaging transducer transmits the imaging waves when imaging waves are being transmitted.
    • 本发明的治疗和成像探针包括限定总轴线(XX)的细长形状的探针体(20'),用于传输成像波的一个成像传感器(40')和用于传输成像波的一个治疗传感器(30') 治疗波。 成像传感器安装在第一支撑装置上,其提供平行于探针的总轴(X-X)的探针内的成像传感器在撤回位置和延伸位置之间的平移运动。 所述治疗传感器安装在第二支撑装置上,所述第二支撑装置提供所述探针内的所述治疗换能器的旋转,所述第二支撑装置绕所述探针的平行于所述探针的所述总轴线(XX)的旋转轴线(X1-X1)相对于所述成像换能器偏移, 允许治疗换能器在撤回位置和治疗位置之间旋转。 在治疗换能器的撤回或非活动位置,成像换能器可以通过平移运动而被带到其延伸位置,以占据治疗换能器处于其治疗位置所占据的位置。 因此,成像换能器可以形成用于由治疗换能器进行治疗的区域的图像。 在治疗传感器的治疗位置,成像换能器处于其撤回位置。 治疗传感器在治疗波的传送期间,在成像波被传送时,以与成像传感器发射成像波的方向基本相同的方向直接传递治疗波。
    • 10. 发明申请
    • THERAPEUTIC PROBE FOR TREATING TISSUE USING FOCUSED INTERSECTING ULTRASONIC WAVES
    • 使用聚焦的超声波进行治疗组织的治疗性探针
    • US20140081300A1
    • 2014-03-20
    • US14007333
    • 2012-03-15
    • David MelodelimaJeremy VincenotEmmanuel BlancJean-Yves Chapelon
    • David MelodelimaJeremy VincenotEmmanuel BlancJean-Yves Chapelon
    • A61B17/32
    • A61B17/320068A61B2090/378A61N7/02A61N2007/0065A61N2007/0078A61N2007/027
    • The invention relates to a therapeutic probe comprising a transducer (2) for focusing the ultrasonic waves into a first focal area (Z1), the emission surface (8) of which has, within a profile plane (Pp), two concave curve segments (s1) which have a finite length and which are symmetrical relative to a plane of symmetry (A1) or to an axis of symmetry (S).According to the invention: within the profile plane (Pp), both concave curve segments (s1) extend along arcs of first and second non-coincident circles that intersect each other. each curve segment (s1) has an acoustic axis (a) intersecting the axis of symmetry (S) or the plane of symmetry (A1) between the first focal area (Z1) and the emission surface (8), the acoustic axes (a) being spaced apart from each other such that the beams from the emission surface (8) intersect each other so as to create a second focal area (Z2) located in situated between the first focal area (Z1) and the emission surface (8).
    • 本发明涉及一种治疗探针,其包括用于将超声波聚焦到第一焦点区域(Z1)中的换能器(2),其发射表面(8)在轮廓平面(Pp)内具有两个凹曲线段 s1),其具有有限的长度并且相对于对称平面(A1)或对称轴线(S)对称。 根据本发明:在轮廓平面(Pp)内,两个凹曲线段(s1)沿着彼此相交的第一和第二非重合圆弧线延伸。 每个曲线段(s1)具有与第一焦点区域(Z1)和发射表面(8)之间的对称轴(S)或对称平面(A1)相交的声轴(a),声轴(a )彼此间隔开,使得来自发射表面(8)的光束彼此相交,以便产生位于第一焦点区域(Z1)和发射表面(8)之间的第二焦点区域(Z2) 。