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首页> 外文期刊>Physiological measurement >Magnetic resonance electrical impedance tomography for measuring electrical conductivity during electroporation
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Magnetic resonance electrical impedance tomography for measuring electrical conductivity during electroporation

机译:用于测量电穿孔过程中电导率的磁共振电阻抗断层扫描

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摘要

The electroporation effect on tissue can be assessed by measurement of electrical properties of the tissue undergoing electroporation. The most prominent techniques for measuring electrical properties of electroporated tissues have been voltage-current measurement of applied pulses and electrical impedance tomography (EIT). However, the electrical conductivity of tissue assessed by means of voltage-current measurement was lacking in information on tissue heterogeneity, while EIT requires numerous additional electrodes and produces results with low spatial resolution and high noise. Magnetic resonance EIT (MREIT) is similar to EIT, as it is also used for reconstruction of conductivity images, though voltage and current measurements are not limited to the boundaries in MREIT, hence it yields conductivity images with better spatial resolution. The aim of this study was to investigate and demonstrate the feasibility of the MREIT technique for assessment of conductivity images of tissues undergoing electroporation. Two objects were investigated: agar phantoms and ex vivo liver tissue. As expected, no significant change of electrical conductivity was detected in agar phantoms exposed to pulses of all used amplitudes, while a considerable increase of conductivity was measured in liver tissue exposed to pulses of different amplitudes.
机译:可以通过测量进行电穿孔的组织的电特性来评估对组织的电穿孔效果。测量电穿孔组织电特性的最杰出技术是施加脉冲的电压-电流测量和电阻抗断层扫描(EIT)。然而,通过电压-电流测量评估的组织的电导率缺乏组织异质性的信息,而EIT需要大量额外的电极并产生具有低空间分辨率和高噪声的结果。磁共振EIT(MREIT)与EIT类似,因为它也用于重建电导率图像,尽管电压和电流测量不限于MREIT的边界,因此它可以产生具有更好空间分辨率的电导率图像。这项研究的目的是调查并证明MREIT技术用于评估进行电穿孔的组织的电导率图像的可行性。研究了两个对象:琼脂体模和离体肝组织。如预期的那样,在暴露于所有使用过的振幅脉冲的琼脂体模中,未检测到电导率的显着变化,而在暴露于不同振幅的脉冲的肝组织中,电导率显着增加。

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