Kwon H, Nagy J A, Taylor R, Rutkove S B, Sanchez B
Department of Neurology, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA 02215-5491, United States of America.
Phys Med Biol. 2017 Nov 1;62(22):8616-8633. doi: 10.1088/1361-6560/aa8c95.
The capability of measuring the complex permittivity of tissues has the potential to provide valuable new insights to inform medical assessment and diagnosis. However, existing electrical impedance approaches have practical limitations when aiming to measure tissues' anisotropy with accuracy. Here we present new methods that overcome the limitations of previous approaches by modeling the anisotropy in both the resistivity and reactivity of tissues measured in three or more different directions. These new methods are validated with numerical simulations and in situ experiments on healthy ovine skeletal muscle. The obtained data between 3 kHz and 1 MHz are also made publicly available in the supplementary information.
测量组织复介电常数的能力有可能为医学评估和诊断提供有价值的新见解。然而,现有的电阻抗方法在旨在精确测量组织各向异性时存在实际局限性。在此,我们提出了新的方法,通过对在三个或更多不同方向测量的组织电阻率和电导率中的各向异性进行建模,克服了先前方法的局限性。这些新方法通过数值模拟和对健康绵羊骨骼肌的原位实验得到了验证。在3kHz至1MHz之间获得的数据也在补充信息中公开提供。