Rai D V, Kohli K S
Department of Biophysics, Panjab University, Chandigarh, India.
Electromagn Biol Med. 2006;25(3):155-62. doi: 10.1080/15368370600873351.
Impedance characteristics of lens tissue has been studied using the AC impedance system (EG&G PARC, model 318) at different low voltage excitations using a Cole-Cole Plot. The extracellular resistance (Re), intracellular resistance (Ri), depressed angle (theta), total impedance (/Z/), and phase angle (phi) of the tissue were measured. The impedance locus between the real part (Z') and imaginary part (Z'') of the complex impedance of lens was examined at discrete frequencies ranging from 10 mHz to 10 Hz. A decrease in extra-cellular resistance (Re) and increase in distribution of the factor (alpha) of 56.8 KOmega, 48.1 KOmega, 32.8 KOmega, 13.4 KOmega, and 0.40, 0.43, 0.46, 0.53 were found at 0 mV, 50 mV, 100 mV, and 200 mV, respectively. The total impedance (/Z/) and phase angle (phi) were also evaluated and the observed frequency dependent for the frequency range was tested as a function of excitation voltage. An attempt has been made to explain the effect of voltage stress on lens impedance.
利用交流阻抗系统(EG&G PARC,型号318),通过科尔 - 科尔图在不同的低电压激励下研究了晶状体组织的阻抗特性。测量了组织的细胞外电阻(Re)、细胞内电阻(Ri)、凹陷角(theta)、总阻抗(/Z/)和相角(phi)。在10 mHz至10 Hz的离散频率范围内,检查了晶状体复阻抗的实部(Z')和虚部(Z'')之间的阻抗轨迹。分别在0 mV、50 mV、100 mV和200 mV时发现,细胞外电阻(Re)降低,56.8 KΩ、48.1 KΩ、32.8 KΩ、13.4 KΩ的因子(alpha)分布增加,以及0.40、0.43、0.46、0.53增加。还评估了总阻抗(/Z/)和相角(phi),并测试了在该频率范围内观察到的频率依赖性作为激励电压的函数。已尝试解释电压应力对晶状体阻抗的影响。