Laboratorio de Neurofisiología del Control y la Regulación, Mexico; Carrera de Psicología, Facultad de Estudios Superiores Zaragoza-UNAM, Ciudad de México, Mexico.
Laboratorio de Neurofisiología del Control y la Regulación, Mexico.
Neuroscience. 2017 Aug 15;357:99-109. doi: 10.1016/j.neuroscience.2017.05.035. Epub 2017 May 31.
Dysfunction of thalamo-cortical networks involving particularly the thalamic reticular nucleus (TRN) is implicated in schizophrenia. In the neonatal ventral hippocampal lesion (NVHL), a heuristic animal model of schizophrenia, brain oscillation changes similar to those of schizophrenic patients have been reported. The aim of this study was to analyze the effects of short-term deep brain stimulation (DBS) in the thalamic reticular nucleus on electroencephalographic (EEG) activity in the NVHL. Male and female Sprague-Dawley rats were used and the model was prepared by excitotoxicity damage of the ventral hippocampus on postnatal day 7 (PD-7). Chronic bilateral stainless steel electrodes were implanted in the TRN, thalamic dorsomedial nucleus and prelimbic area at PD-90. Rats were classified as follows: sham and NVHL groups, both groups received bilateral DBS in the TRN for one hour (100Hz, 100µs pulses, 200µA). All animals showed a sudden behavioral arrest accompanied by widespread symmetric bilateral spike-wave discharges, this activity was affected by DBS-TRN. Additionally, the power spectra of 0.5-100Hz and the coherence of 0.5-4.5 and 35-55Hz frequencies were modified by DBS-TRN. Our results suggest that DBS in the TRN may modify functional connectivity between different parts of the thalamo-cortical network. Additionally, our findings may suggest a beneficial effect of DBS-TRN on some preclinical aberrant oscillatory activities in a neurodevelopmental model of schizophrenia.
涉及丘脑网状核(TRN)的丘脑皮质网络功能障碍与精神分裂症有关。在新生腹侧海马损伤(NVHL)中,一种精神分裂症的启发式动物模型,已经报道了类似于精神分裂症患者的脑振荡变化。本研究的目的是分析丘脑网状核内短期深部脑刺激(DBS)对 NVHL 中脑电图(EEG)活动的影响。使用雄性和雌性 Sprague-Dawley 大鼠,并在出生后第 7 天(PD-7)通过兴奋性毒性损伤腹侧海马制备模型。在 PD-90 时,将慢性双侧不锈钢电极植入 TRN、丘脑背内侧核和前额叶区。大鼠分为以下几组:假手术和 NVHL 组,两组均在 TRN 中接受双侧 DBS 治疗 1 小时(100Hz,100µs 脉冲,200µA)。所有动物均表现出突然的行为停止,伴有广泛对称的双侧棘波放电,这种活动受到 DBS-TRN 的影响。此外,DBS-TRN 还改变了 0.5-100Hz 的功率谱和 0.5-4.5Hz 和 35-55Hz 频率的相干性。我们的结果表明,TRN 中的 DBS 可能会改变丘脑皮质网络不同部位之间的功能连接。此外,我们的发现可能表明 DBS-TRN 对精神分裂症神经发育模型中一些异常振荡活动具有有益的影响。