Wassmann H, Moskopp D, Woesler B, Lücke A, Speckmann E J, Köhling R, Straub H, Hülsmann S, Greiner C
Klinik and Poliklinik für Neurochirurgie, Westfälische Wilhelms-Universität, Münster, Germany.
Neurol Res. 1996 Aug;18(4):367-9. doi: 10.1080/01616412.1996.11740438.
An in vitro hippocampal (CA 1 region, guinea pig) slice technique using repeated hypoxia was employed to model electrophysiological changes (DC-potentials and evoked potentials (EP) by stimulation of Schaffer-collaterals) occurring in the hypoxic CA1 pyramidal layer. A standardized neuronal response under repeated hypoxic conditions was observed in this model, consisting of disappearance of EP and a trend towards partially reversible, but progressive synaptic failure subsequent anoxic depolarisation (AD). Slices treated with the calcium antagonist nimodipine showed a prolongation of AD latency between the first and following hypoxias. So it seems possible to simulate hypoxic lesions of the brain tissue by using this in vitro slice model.
采用重复缺氧的体外海马(豚鼠CA1区)脑片技术,对缺氧的CA1锥体层发生的电生理变化(直流电位和刺激Schaffer侧支诱发的电位(EP))进行建模。在该模型中观察到重复缺氧条件下的标准化神经元反应,包括EP消失以及随后缺氧去极化(AD)后部分可逆但逐渐进展的突触功能障碍趋势。用钙拮抗剂尼莫地平处理的脑片在首次和随后的缺氧之间显示AD潜伏期延长。因此,使用这种体外脑片模型似乎有可能模拟脑组织的缺氧损伤。