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    • 3. 发明授权
    • Capacitive type proximity sensor
    • 电容式接近传感器
    • US08269178B2
    • 2012-09-18
    • US12746928
    • 2008-12-09
    • Antonius Hermanus Maria BlomCarsten HeinksRonald Jan Asjes
    • Antonius Hermanus Maria BlomCarsten HeinksRonald Jan Asjes
    • G01T1/164
    • G01D5/2417A61B6/102A61B6/4441G01D5/24
    • It is provided a capacitive type proximity sensor, comprising a sensing electrode, whereas the sensing electrode has a surface with electroconductive areas 113 and not-electroconductive areas 117, whereas the sensor is adapted for measuring an electrical field 110, 112 between the sensing electrode and an object 109, 111. Further it is described an apparatus for medical x-ray diagnosis and/or x-ray therapy and/or nuclear diagnosis/therapy, e.g. SPECT, a system for medical x-ray diagnosis and/or x-ray therapy and/or nuclear diagnosis/therapy, e.g. SPECT, a method for avoiding collision between an apparatus for medical x-ray diagnosis and/or x-ray therapy and/or nuclear diagnosis/therapy, e.g. SPECT, and an object, a program element and a computer readable medium. It is disclosed a capacitance type proximity sensor whose sensitivity of approaching objects has an improved independence from the special geometry of the sensor itself.
    • 提供了一种电容型接近传感器,其包括感测电极,而感测电极具有具有导电区域113和非导电区域117的表面,而传感器适于测量感测电极与感测电极之间的电场110,112 对象109,111。此外,还描述了用于医疗x射线诊断和/或X射线治疗和/或核诊断/治疗的装置,例如 SPECT,用于医疗x射线诊断和/或x射线治疗和/或核诊断/治疗的系统,例如。 SPECT,用于避免用于医疗x射线诊断和/或X射线治疗和/或核诊断/治疗的装置之间的碰撞的方法。 SPECT,以及对象,程序元素和计算机可读介质。 公开了一种电容型接近传感器,其接近物体的灵敏度与传感器本身的特殊几何形状具有改进的独立性。
    • 4. 发明申请
    • CAPACITIVE TYPE PROXIMITY SENSOR
    • 电容式接近传感器
    • US20100264321A1
    • 2010-10-21
    • US12746928
    • 2008-12-09
    • Antonius Hermanus Maria BlomCarsten HeinksRonald Jan Asjes
    • Antonius Hermanus Maria BlomCarsten HeinksRonald Jan Asjes
    • G01T7/00G01R27/26A61B6/00G01T1/166A61N5/10
    • G01D5/2417A61B6/102A61B6/4441G01D5/24
    • It is provided a capacitive type proximity sensor, comprising a sensing electrode, whereas the sensing electrode has a surface with electroconductive areas 113 and not-electroconductive areas 117, whereas the sensor is adapted for measuring an electrical field 110, 112 between the sensing electrode and an object 109, 111. Further it is described an apparatus for medical x-ray diagnosis and/or x-ray therapy and/or nuclear diagnosis/therapy, e.g. SPECT, a system for medical x-ray diagnosis and/or x-ray therapy and/or nuclear diagnosis/therapy, e.g. SPECT, a method for avoiding collision between an apparatus for medical x-ray diagnosis and/or x-ray therapy and/or nuclear diagnosis/therapy, e.g. SPECT, and an object, a programme element and a computer readable medium. It is disclosed a capacitance type proximity sensor whose sensitivity of approaching objects has an improved independence from the special geometry of the sensor itself.
    • 提供了一种电容型接近传感器,其包括感测电极,而感测电极具有具有导电区域113和非导电区域117的表面,而传感器适于测量感测电极与感测电极之间的电场110,112 对象109,111。此外,还描述了用于医疗x射线诊断和/或X射线治疗和/或核诊断/治疗的装置,例如 SPECT,用于医疗x射线诊断和/或x射线治疗和/或核诊断/治疗的系统,例如。 SPECT,用于避免用于医疗x射线诊断和/或X射线治疗和/或核诊断/治疗的装置之间的碰撞的方法。 SPECT,以及对象,程序元素和计算机可读介质。 公开了一种电容型接近传感器,其接近物体的灵敏度与传感器本身的特殊几何形状具有改进的独立性。
    • 6. 发明授权
    • Device for positioning electrodes on a user's scalp
    • 用于将电极定位在用户头皮上的装置
    • US08731633B2
    • 2014-05-20
    • US13504220
    • 2010-11-02
    • Ronald Jan AsjesMark Christoph JaegerSima Asvadi
    • Ronald Jan AsjesMark Christoph JaegerSima Asvadi
    • A61B5/0478A61B5/0476
    • A61B5/04085A61B5/0476A61B5/6803
    • A device (1) is described for positioning electrodes on a user's scalp. It comprises a housing (3), for example a headpiece of a headphones device, which can be put around a user's head. An elastic element (11) and a plurality of electrodes are positioned, so that once the housing (3) is put around the user's head, the elastic element (11) at least partly follows the curvature of the user's head. The stress in the elastic element (11) due to stretching thereof caused by putting the housing around the user's head causes the elastic element (11) to exert pressure on at least some of the plurality of electrodes towards the scalp. Hereby, effective contact of the plurality of electrodes to the scalp is facilitated.
    • 描述了用于将电极定位在用户头皮上的装置(1)。 它包括壳体(3),例如耳机装置的头戴耳机,其可以放在使用者的头部周围。 定位弹性元件(11)和多个电极,使得一旦壳体(3)被放置在用户的头部周围,弹性元件(11)至少部分地跟随使用者头部的曲率。 弹性元件(11)由于通过将外壳放置在使用者头部引起的拉伸而引起的应力使得弹性元件(11)对多个电极中的至少一些施加压力,朝向头皮。 因此,有助于多个电极与头皮的有效接触。
    • 10. 发明申请
    • DEVICE FOR POSITIONING ELECTRODES ON A USER'S SCALP
    • 用于在用户标准上定位电极的装置
    • US20120226127A1
    • 2012-09-06
    • US13504220
    • 2010-11-02
    • Ronald Jan AsjesMark Christoph JaegerSima Asvadi
    • Ronald Jan AsjesMark Christoph JaegerSima Asvadi
    • A61B5/0478
    • A61B5/04085A61B5/0476A61B5/6803
    • A device (1) is described for positioning electrodes on a user's scalp. It comprises a housing (3), for example a headpiece of a headphones device, which can be put around a user's head. An elastic element (11) and a plurality of electrodes are positioned, so that once the housing (3) is put around the user's head, the elastic element (11) at least partly follows the curvature of the user's head. The stress in the elastic element (11) due to stretching thereof caused by putting the housing around the user's head causes the elastic element (11) to exert pressure on at least some of the plurality of electrodes towards the scalp. Hereby, effective contact of the plurality of electrodes to the scalp is facilitated.
    • 描述了用于将电极定位在用户头皮上的装置(1)。 它包括壳体(3),例如耳机装置的头戴耳机,其可以放在使用者的头部周围。 定位弹性元件(11)和多个电极,使得一旦壳体(3)被放置在用户的头部周围,弹性元件(11)至少部分地跟随使用者头部的曲率。 弹性元件(11)由于通过将外壳放置在使用者头部引起的拉伸而引起的应力使得弹性元件(11)对多个电极中的至少一些施加压力,朝向头皮。 因此,有助于多个电极与头皮的有效接触。