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首页> 外文期刊>Progress in Neuro-Psychopharmacology & Biological Psychiatry: An International Research, Review and News Journal >Efficient parameters of vagus nerve stimulation to enhance extinction learning in an extinction-resistant rat model of PTSD
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Efficient parameters of vagus nerve stimulation to enhance extinction learning in an extinction-resistant rat model of PTSD

机译:迷走神经刺激的高效参数,以增强灭绝抗病症的灭绝学习

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Vagus nerve stimulation (VNS) has shown promise as an adjuvant treatment for posttraumatic stress disorder (PTSD), as it enhances fear extinction and reduces anxiety symptoms in multiple rat models of this condition. Yet, identification of the optimal stimulation paradigm is needed to facilitate clinical translation of this potential therapy. Using an extinction-resistant rat model of PTSD, we tested whether varying VNS intensity and duration could maximize extinction learning while minimizing the total amount of stimulation. We confirmed that sham rats failed to extinguish after a week of extinction training. Delivery of the standard LONG VNS trains (30 s) at 0.4 mA enhanced extinction and reduced anxiety but did not prevent fear return. Increasing the intensity of LONG VNS trains to 0.8 mA prevented fear return and attenuated anxiety symptoms. Interestingly, delivering 1, 4 or 16 SHORT VNS bursts (0.5 s) at 0.8 mA during each cue presentation in extinction training also enhanced extinction. LONG VNS trains or multiple SHORT VNS bursts at 0.8 mA attenuated fear renewal and reinstatement, promoted extinction generalization and reduced generalized anxiety. Delivering 16 SHORT VNS bursts also facilitated extinction in fewer trials. This study provides the first evidence that brief bursts of VNS can enhance extinction training, reduce relapse and support symptom remission using much less VNS than previous protocols. These findings suggest that VNS parameters can be adjusted in order to minimize total charge delivery and maximize therapeutic effectiveness.
机译:迷走神经刺激(VNS)已作为对错误胁迫障碍(PTSD)的佐剂治疗所示,因为它增强了恐惧灭绝并减少了这种情况的多重大鼠模型中的焦虑症状。然而,需要鉴定最佳刺激范例以促进该潜在治疗的临床翻译。使用抗PTSD的抗灭绝大鼠模型,我们测试了不同VNS强度和持续时间是否可以最大化消失学习,同时最小化刺激总量。我们证实,在灭绝训练一周后,假大鼠未能灭亡。在0.4 mA增强的灭绝下递送标准长VNS列车(30秒),减少焦虑,但没有阻止恐惧率。将长VNS火车的强度增加到0.8 mA预防恐惧率恢复并减弱焦虑症状。有趣的是,在灭绝培训的每个提示介绍期间,在0.8 mA期间,在0.8 mA的情况下,在灭绝培训中提供1,4或16个短VNS爆发(0.5秒)也增强了灭绝。长VNS列车或多个短VNS爆发为0.8 mA减弱恐惧更新和恢复,促进了灭绝泛化和缩短焦虑。提供16个短VNS突发也有助于在更少的试验中灭绝。本研究提供了第一种证据,即VNS的短暂爆炸可以增强消失培训,减少复发和支持症状缓解,比以前的协议更少。这些发现表明可以调整VNS参数,以最小化总电荷传递并最大化治疗效果。

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