Simultaneous suppression of disturbing fields and localization of magnetic markers by means of multipole expansion.

Bernd Hilgenfeld, Jens Haueisen
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引用次数: 4

Abstract

BACKGROUND: Magnetically marked capsules serve for the analysis of peristalsis and throughput times within the intestinal tract. Moreover, they can be used for the targeted disposal of drugs. The capsules get localized in time by field measurements with a superconducting quantum interference device (SQUID) magnetometer array. Here it is important to ensure an online localization with high speed and high suppression of disturbing fields. In this article we use multipole expansions for the simultaneous localization and suppression of disturbing fields. METHODS: We expand the measurement data in terms of inner and outer multipoles. Thereby we obtain directly a separation of marker field and outer disturbing fields. From the inner dipoles and quadrupoles we compute the magnetization and position of the capsule. The outer multipoles get eliminated. RESULTS: The localization goodness has been analyzed depending on the order of the multipoles used and depending on the systems noise level. We found upper limits of the noise level for the usage of certain multipole moments. Given a signal to noise ratio of 40 and utilizing inner dipoles and quadrupoles and outer dipoles, the method enables an accuracy of 5 mm with a speed of 10 localizations per second. CONCLUSION: The multipole localization is an effective method and is capable of online-tracking magnetic markers.

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用多极展开法同时抑制干扰场和定位磁标记。
背景:磁标记胶囊用于分析肠道内的蠕动和吞吐时间。此外,它们还可用于药物的定向处置。利用超导量子干涉装置(SQUID)磁强计阵列进行现场测量,得到胶囊的时间定位。在这种情况下,保证高速、高抑制干扰场的在线定位是很重要的。在本文中,我们使用多极展开来同时定位和抑制干扰场。方法:从内、外多极扩展测量数据。从而直接得到了标记场与外部干扰场的分离。从内部偶极子和四极子我们计算了胶囊的磁化强度和位置。外层的多极被消去了。结果:根据所使用的多极子的顺序和系统噪声水平对定位优度进行了分析。我们发现了使用某些多极矩时噪声级的上限。在信噪比为40的情况下,利用内偶极子、四极子和外偶极子,该方法能够以每秒10个定位的速度实现5毫米的精度。结论:多极定位是一种有效的磁标记物在线定位方法。
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