School of Biomedical Engineering, The Fourth Military Medical University, Changle West Road No. 169, Xi'an, People's Republic of China.
Phys Med Biol. 2013 May 21;58(10):3163-76. doi: 10.1088/0031-9155/58/10/3163. Epub 2013 Apr 19.
A simulative study was performed to measure the dielectric properties of anisotropic tissue using several in vivo and in vitro probes. COMSOL Multiphysics was selected to carry out the simulation. Five traditional probes and a newly designed probe were used in this study. One of these probes was an in vitro measurement probe and the other five were in vivo. The simulations were performed in terms of the minimal tissue volume for in vivo measurements, the calibration of a probe constant, the measurement performed on isotropic tissue and the measurement performed on anisotropic tissue. Results showed that the in vitro probe can be used to measure the in-cell dielectric properties of isotropic and anisotropic tissues. When measured with the five in vivo probes, the dielectric properties of isotropic tissue were all measured accurately. For the measurements performed on anisotropic tissue, large errors were observed when the four traditional in vivo probes were used, but only a small error was observed when the new in vivo probe was used. This newly designed five-electrode in vivo probe may indicate the dielectric properties of anisotropic tissue more accurately than these four traditional in vivo probes.
进行了一项模拟研究,使用几种体内和体外探头来测量各向异性组织的介电特性。选择 COMSOL Multiphysics 进行模拟。本研究使用了五种传统探头和一种新设计的探头。其中一个探头是体外测量探头,其余五个是体内探头。模拟是根据体内测量的最小组织体积、探头常数的校准、各向同性组织的测量和各向异性组织的测量进行的。结果表明,体外探头可用于测量各向同性和各向异性组织的细胞内介电特性。使用这五个体内探头进行测量时,各向同性组织的介电特性均能准确测量。对于各向异性组织的测量,当使用四个传统的体内探头时,观察到较大的误差,但当使用新的体内探头时,仅观察到较小的误差。与这四个传统的体内探头相比,这种新设计的五电极体内探头可能更能准确地指示各向异性组织的介电特性。