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Combined optical tweezers and laser dissector for controlled ablation of functional connections in neural networks

机译:结合了光镊和激光解剖器,可控制烧蚀神经网络中的功能连接

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摘要

Regeneration of functional connectivity within a neural network after different degrees of lesion is of utmost clinical importance. To test pharmacological approaches aimed at recovering from a total or partial damage of neuronal connections within a circuit, it is necessary to develop a precise method for controlled ablation of neuronal processes. We combined a UV laser microdissector to ablate neural processes in vitro at single neuron and neural network level with infrared holographic optical tweezers to carry out force spectroscopy measurements. Simultaneous force spectroscopy, down to the sub-pico-Newton range, was performed during laser dissection to quantify the tension release in a partially ablated neurite. Therefore, we could control and measure the damage inflicted to an individual neuronal process. To characterize the effect of the inflicted injury on network level, changes in activity of neural subpopulations were monitored with subcellular resolution and overall network activity with high temporal resolution by concurrent calcium imaging and microelectrode array recording. Neuronal connections have been sequentially ablated and the correlated changes in network activity traced and mapped. With this unique combination of electrophysiological and optical tools, neural activity can be studied and quantified in response to controlled injury at the subcellular, cellular, and network level.
机译:在不同程度的病变后,神经网络内功能连接的再生具有最大的临床意义。为了测试旨在从回路中神经元连接的全部或部分损坏中恢复的药理学方法,有必要开发一种精确的方法来控制神经元过程的消融。我们将紫外激光显微解剖仪与红外全息光学镊子结合起来,在单个神经元和神经网络水平上消融体外的神经过程,以进行力谱测量。在激光解剖过程中,进行了同时力光谱检查,直至皮下亚微微牛顿范围,以量化部分烧蚀的神经突中的张力释放。因此,我们可以控制和测量对单个神经元过程造成的损害。为了表征遭受伤害对网络水平的影响,通过同时进行的钙成像和微电极阵列记录,以亚细胞分辨率和整体网络活动以及高时间分辨率来监视神经亚群的活动变化。神经元连接已被顺序消融,网络活动的相关变化被跟踪和映射。通过这种电生理学和光学工具的独特组合,可以对亚细胞,细胞和网络水平的受控损伤做出反应,从而研究和量化神经活动。

著录项

  • 来源
    《Journal of biomedical optics》 |2011年第5期|p.051306.1-051306.9|共9页
  • 作者单位

    Italian Institute of Technology, Department of Neuroscience and Brain Technologies, Via Morego 30,Genoa, 161 63 Italy;

    Italian Institute of Technology, Department of Neuroscience and Brain Technologies, Via Morego 30,Genoa, 161 63 Italy;

    Italian Institute of Technology, Department of Neuroscience and Brain Technologies, Via Morego 30,Genoa, 161 63 Italy;

    Italian Institute of Technology, Department of Neuroscience and Brain Technologies, Via Morego 30,Genoa, 161 63 Italy;

    Italian Institute of Technology, Department of Neuroscience and Brain Technologies, Via Morego 30,Genoa, 161 63 Italy;

    Italian Institute of Technology, Department of Neuroscience and Brain Technologies, Via Morego 30,Genoa, 161 63 Italy;

    Italian Institute of Technology, Department of Neuroscience and Brain Technologies, Via Morego 30,Genoa, 161 63 Italy;

    Italian Institute of Technology, Department of Neuroscience and Brain Technologies, Via Morego 30,Genoa, 161 63 Italy;

    Italian Institute of Technology, Department of Neuroscience and Brain Technologies, Via Morego 30,Genoa, 161 63 Italy;

    Italian Institute of Technology, Department of Neuroscience and Brain Technologies, Via Morego 30,Genoa, 161 63 Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    holography; optical tweezers; laser dissection; neural network; microelectrode array electrophysiology; force spectroscopy;

    机译:全息术光学镊子;激光解剖神经网络;微电极阵列电生理;力谱;

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