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1
Brain regions for sound processing and song release in a small grasshopper.一种小型蝗虫中用于声音处理和鸣声释放的脑区。
J Insect Physiol. 2017 May;99:15-24. doi: 10.1016/j.jinsphys.2017.03.006. Epub 2017 Mar 9.
2
Electrophoresis of polar fluorescent tracers through the nerve sheath labels neuronal populations for anatomical and functional imaging.通过神经鞘电泳的极性荧光示踪剂可对神经元群体进行解剖和功能成像标记。
Sci Rep. 2017 Jan 13;7:40433. doi: 10.1038/srep40433.
3
An auditory feature detection circuit for sound pattern recognition.用于声音模式识别的听觉特征检测电路。
Sci Adv. 2015 Sep 11;1(8):e1500325. doi: 10.1126/sciadv.1500325. eCollection 2015 Sep.
4
Multielectrode recordings from auditory neurons in the brain of a small grasshopper.对一只小草蜢大脑中听觉神经元的多电极记录。
J Neurosci Methods. 2015 Dec 30;256:63-73. doi: 10.1016/j.jneumeth.2015.08.024. Epub 2015 Aug 31.
5
Construction of a simple suction electrode for extracellular recording and stimulation.用于细胞外记录和刺激的简易吸引电极的构建。
J Undergrad Neurosci Educ. 2007 Fall;6(1):A21-6. Epub 2007 Oct 15.
6
Parallel processing via a dual olfactory pathway in the honeybee.通过蜜蜂的双嗅觉途径进行并行处理。
J Neurosci. 2013 Feb 6;33(6):2443-56. doi: 10.1523/JNEUROSCI.4268-12.2013.
7
Neural activity in the central complex of the cockroach brain is linked to turning behaviors.蟑螂大脑中央复合体内的神经活动与转向行为有关。
J Exp Biol. 2013 Mar 15;216(Pt 6):992-1002. doi: 10.1242/jeb.080473. Epub 2012 Nov 29.
8
Calling song recognition in female crickets: temporal tuning of identified brain neurons matches behavior.雌蟋蟀叫声识别:鉴定出的脑神经元的时间调谐与行为相匹配。
J Neurosci. 2012 Jul 11;32(28):9601-12. doi: 10.1523/JNEUROSCI.1170-12.2012.
9
Solutions to the cocktail party problem in insects: selective filters, spatial release from masking and gain control in tropical crickets.昆虫鸡尾酒会问题的解决方案:选择性滤波器、热带蟋蟀的掩蔽释放和增益控制。
PLoS One. 2011;6(12):e28593. doi: 10.1371/journal.pone.0028593. Epub 2011 Dec 6.
10
Processing of species-specific auditory patterns in the cricket brain by ascending, local, and descending neurons during standing and walking.在蟋蟀行走和静止时,上行、局部和下行神经元对特定物种的听觉模式进行处理。
J Neurophysiol. 2011 May;105(5):2181-94. doi: 10.1152/jn.00416.2010. Epub 2011 Feb 23.

表面电极记录并标记昆虫大脑中的神经元。

Surface electrodes record and label brain neurons in insects.

作者信息

Kostarakos Konstantinos, Hedwig Berthold

机构信息

Institute for Zoology, Karl Franzens-University, Graz, Austria; and.

Department of Zoology, University of Cambridge, Cambridge, United Kingdom

出版信息

J Neurophysiol. 2017 Nov 1;118(5):2884-2889. doi: 10.1152/jn.00490.2017. Epub 2017 Sep 13.

DOI:10.1152/jn.00490.2017
PMID:28904103
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5680355/
Abstract

We used suction electrodes to reliably record the activity of identified ascending auditory interneurons from the anterior surface of the brain in crickets. Electrodes were gently attached to the sheath covering the projection area of the ascending interneurons and the ringlike auditory neuropil in the protocerebrum. The specificity and selectivity of the recordings were determined by the precise electrode location, which could easily be changed without causing damage to the tissue. Different nonauditory fibers were recorded at other spots of the brain surface; stable recordings lasted for several hours. The same electrodes were used to deliver fluorescent tracers into the nervous system by means of electrophoresis. This allowed us to retrograde label the recorded auditory neurons and to reveal their cell body and dendritic structure in the first thoracic ganglion. By adjusting the amount of dye injected, we specifically stained the ringlike auditory neuropil in the brain, demonstrating the clusters of cell bodies contributing to it. Our data provide a proof that surface electrodes are a versatile tool to analyze neural processing in small brains of invertebrates. We show that surface suction electrodes can be used to monitor the activity of auditory neurons in the cricket brain. They also allow delivering electrophoretically a fluorescent tracer to label the structure of the recorded neurons and the local neuropil to which the electrode was attached. This new extracellular recording and labeling technique is a versatile and useful method to explore neural processing in invertebrate sensory and motor systems.

摘要

我们使用吸力电极,从蟋蟀大脑前表面可靠地记录已识别的升支听觉中间神经元的活动。电极轻轻地附着在覆盖升支中间神经元投射区域和原脑环形听觉神经纤维网的鞘上。记录的特异性和选择性由精确的电极位置决定,该位置可轻松改变而不会对组织造成损伤。在脑表面的其他部位记录到了不同的非听觉纤维;稳定的记录持续了几个小时。同样的电极用于通过电泳将荧光示踪剂输送到神经系统中。这使我们能够逆行标记所记录的听觉神经元,并揭示它们在第一胸神经节中的细胞体和树突结构。通过调整注入染料的量,我们特异性地标记了脑中的环形听觉神经纤维网,展示了对其有贡献的细胞体簇。我们的数据证明,表面电极是分析无脊椎动物小脑中神经处理的一种多功能工具。我们表明,表面吸力电极可用于监测蟋蟀脑中听觉神经元的活动。它们还允许通过电泳输送荧光示踪剂,以标记所记录神经元的结构以及电极所附着的局部神经纤维网。这种新的细胞外记录和标记技术是探索无脊椎动物感觉和运动系统中神经处理的一种多功能且有用的方法。