Wang Lei, Sun Yang, Xu Xinmin, Dong Xiuzhen, Gao Feng
aSchool of Aerospace Medicine bDepartment of Biomedical Engineering cDepartment of Medical Engineering, the 323rd Hospital of the PLA dDepartment of Neurosurgery in Tangdu Hospital, the Fourth Military Medical University, Xi'an, China.
Neuroreport. 2017 Aug 2;28(11):689-693. doi: 10.1097/WNR.0000000000000823.
The presence of multiple or diffuse lesions on imaging is a contraindication to surgery for patients with intractable epilepsy. Theoretically, as a functional imaging technique, electrical impedance tomography (EIT) can accurately image epileptic foci. However, most current studies are limited to examining epileptic spikes and few studies use EIT for real-time imaging of seizure activity. Moreover, little is known about changes in electrical impedance during seizures. In this study, we used EIT to monitor seizure progression in real time and analyzed changes in electrical impedance during seizures. EIT and electroencephalography data were recorded simultaneously in rats. Sixty-three seizures were recorded from the cortices of eight rats. During 54 seizures, the average impedance decreased by between 4.86 and 9.17% compared with the baseline. Compared with the control group, the average impedance of the experimental group decreased significantly (P=0.004). Our results indicate that EIT can be used to detect and image electrical impedance reduction within lesions during epileptic seizures.
影像学上存在多个或弥漫性病变是难治性癫痫患者手术的禁忌症。从理论上讲,作为一种功能成像技术,电阻抗断层成像(EIT)可以准确地对癫痫病灶进行成像。然而,目前大多数研究仅限于检查癫痫棘波,很少有研究使用EIT对癫痫发作活动进行实时成像。此外,对于癫痫发作期间电阻抗的变化知之甚少。在本研究中,我们使用EIT实时监测癫痫发作进程,并分析癫痫发作期间电阻抗的变化。在大鼠中同时记录EIT和脑电图数据。从八只大鼠的皮层记录到63次癫痫发作。在54次癫痫发作期间,平均阻抗与基线相比下降了4.86%至9.17%。与对照组相比,实验组的平均阻抗显著下降(P=0.004)。我们的结果表明,EIT可用于检测和成像癫痫发作期间病灶内的电阻抗降低。