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Modulation of Neural Network Activity through Single Cell Ablation: An in Vitro Model of Minimally Invasive Neurosurgery

机译:通过单细胞消融对神经网络活动的调节:微创神经外科手术的体外模型。

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摘要

The technological advancement of optical approaches, and the growth of their applications in neuroscience, has allowed investigations of the physio-pathology of neural networks at a single cell level. Therefore, better understanding the role of single neurons in the onset and progression of neurodegenerative conditions has resulted in a strong demand for surgical tools operating with single cell resolution. Optical systems already provide subcellular resolution to monitor and manipulate living tissues, and thus allow understanding the potentiality of surgery actuated at single cell level. In the present work, we report an in vitro experimental model of minimally invasive surgery applied on neuronal cultures expressing a genetically encoded calcium sensor. The experimental protocol entails the continuous monitoring of the network activity before and after the ablation of a single neuron, to provide a robust evaluation of the induced changes in the network activity. We report that in subpopulations of about 1000 neurons, even the ablation of a single unit produces a reduction of the overall network activity. The reported protocol represents a simple and cost effective model to study the efficacy of single-cell surgery, and it could represent a test-bed to study surgical procedures circumventing the abrupt and complete tissue removal in pathological conditions.
机译:光学方法的技术进步及其在神经科学中的应用的增长,使得可以在单个细胞水平上研究神经网络的生理病理学。因此,更好地了解单个神经元在神经退行性疾病的发作和发展中的作用导致对以单细胞分辨率操作的手术工具的强烈需求。光学系统已经提供亚细胞分辨率来监视和操纵活体组织,因此可以了解在单细胞水平上进行手术的潜力。在本工作中,我们报告了微创外科手术的体外实验模型,该模型应用于表达遗传编码钙传感器的神经元培养物中。实验方案需要对单个神经元消融前后的网络活动进行连续监控,以提供对网络活动中诱发变化的可靠评估。我们报告说,在大约1000个神经元的亚群中,即使单个单元的消融也会降低整体网络活动。报告的方案代表了一种简单且具有成本效益的模型,用于研究单细胞手术的疗效,并且可以代表试验床,以研究在病理情况下规避突然而彻底的组织切除的外科手术程序。

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