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A new method for detecting cerebral hemorrhage in rabbits by magnetic inductive phase shift

机译:磁感应相移检测兔脑出血的新方法

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摘要

Cerebral hemorrhage, which is an important clinical problem, is often monitored and studied using expensive devices, such as magnetic resonance imaging (MRI) and positron emission tomography (PET) that are unavailable in economically underdeveloped regions. Magnetic induction tomography (MIT) is a new type of non-contact, non-invasive, and low-cost detection technology, and exhibits prospects for wide application, especially for the detection of brain diseases. However, the previous studies on MIT have focused on laboratory models and rarely on in vivo applications because the induced signals produced by biological tissues are notably weak. Based on the symmetry between the two brain hemispheres and the fact that a local brain hemorrhage will not affect the contra-lateral hemisphere, a symmetric cancellation-type sensor detection system, which is characterized by one excitation coil and two receiving coils, was designed to improve the detection sensitivity of MIT. This method was subsequently used to detect the occurrence of cerebral hematomas in rabbits. The average phase drift induced by a 3-ml injection of autologous blood was 1.885°, which is a fivefold improvement compared with the traditional single excitation coil and single receiving coil method. The results indicate that this system has high sensitivity and anti-interference ability and high practical value.
机译:脑出血是一个重要的临床问题,经常使用昂贵的设备进行监测和研究,例如在经济欠发达地区无法获得的磁共振成像(MRI)和正电子发射断层扫描(PET)。磁感应断层扫描(MIT)是一种新型的非接触,无创且低成本的检测技术,具有广阔的应用前景,尤其是在脑疾病检测方面。但是,先前对MIT的研究集中在实验室模型上,很少在体内应用,因为生物组织产生的诱导信号明显较弱。基于两个脑半球的对称性和局部脑出血不会影响对侧半球的事实,设计了一种对称抵消型传感器检测系统,该系统以一个励磁线圈和两个接收线圈为特征。提高MIT的检测灵敏度。该方法随后被用于检测兔子中脑血肿的发生。 3 ml注射自体血引起的平均相移为1.885°,比传统的单激励线圈和单接收线圈方法提高了五倍。结果表明,该系统具有较高的灵敏度和抗干扰能力,具有较高的实用价值。

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