Invention Grant
US08354841B2 Method for influencing and/or detecting magnetic particles in a region of action, magnetic particles and the use of magnetic particles 有权
用于影响和/或检测作用区域,磁性颗粒和使用磁性颗粒的磁性颗粒的方法

  • Patent Title: Method for influencing and/or detecting magnetic particles in a region of action, magnetic particles and the use of magnetic particles
  • Patent Title (中): 用于影响和/或检测作用区域,磁性颗粒和使用磁性颗粒的磁性颗粒的方法
  • Application No.: US12523548
    Application Date: 2008-01-18
  • Publication No.: US08354841B2
    Publication Date: 2013-01-15
  • Inventor: Hans Marc Bert BoeveDenis Markov
  • Applicant: Hans Marc Bert BoeveDenis Markov
  • Applicant Address: NL Eindhoven
  • Assignee: Koninklijke Philips Electronics N.V.
  • Current Assignee: Koninklijke Philips Electronics N.V.
  • Current Assignee Address: NL Eindhoven
  • Priority: EP07101071 20070124
  • International Application: PCT/IB2008/050186 WO 20080118
  • International Announcement: WO2008/090500 WO 20080731
  • Main IPC: G01N27/72
  • IPC: G01N27/72
Method for influencing and/or detecting magnetic particles in a region of action, magnetic particles and the use of magnetic particles
Abstract:
A method for influencing and/or detecting magnetic particles in a region of action, magnetic particles and the use of magnetic particles is disclosed, which method comprises the steps of: —introducing magnetic particles into a region of action, —generating a magnetic selection field having a pattern in space of its magnetic field strength such that a first sub-zone having a low magnetic field strength and a second sub-zone having a higher magnetic field strength are formed in the region of action —changing the position in space of the two sub-zones in the region of action by means of a magnetic drive field so that the magnetization of the magnetic particles change locally, —acquiring signals, which signals depend on the magnetization in the region of action, which magnetization is influenced by the change in the position in space of the first and second sub-zone, wherein the magnetic particles comprise a core region and a shell region, the core region comprising a magnetic material, wherein the magnetic material of the core region is provided as a mainly metallic material of comparably high saturation magnetization, wherein the shell region comprises mainly a metal oxide material or a noble metal material.
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