首页> 外文期刊>Journal of Neurophysiology >A new type of recording chamber with an easy-to-exchange microdrive array for chronic recordings in macaque monkeys.
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A new type of recording chamber with an easy-to-exchange microdrive array for chronic recordings in macaque monkeys.

机译:一种新型记录室,带有易于更换的微驱动器阵列,可用于猕猴的长期记录。

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摘要

In monkeys, long-term recordings with chronically implanted microelectrodes frequently suffer from a continuously decreasing probability to record single units or even small multiunit clusters. This problem is associated with two technical limitations of the available devices: first, restrictions for electrode movement, and second, absent possibility to exchange electrodes easily on a regular basis. Permitting to adjust the recording site and to use new recording tracks with proper electrodes may avoid these problems and make chronic more similar to acute recordings. Here, we describe a novel type of implant tackling this issue. It consists of a new type of recording chamber combined with an exchangeable multielectrode array that precisely fits into it. The multielectrode array is reversibly fixed to the chamber, and within a minute it can be exchanged against another array equipped with new electrodes at the awake animal. The array allows for bidirectional movement of six electrodes for a distance of up to 12 mm. The recording chamber enables hermetical isolation of the intracranial space, resulting in long-lasting aseptic conditions and reducing dural thickening to a minimum, as confirmed by microbiological and histopathological analysis. The device has a simple design and is both easy to produce and low in cost. Functionality has been tested in primary and secondary visual cortex of three macaque monkeys over a period of up to 15 mo. The results show that even after more than a year, single and multiunit responses can be obtained with high incidence.
机译:在猴子中,长期植入微电极的长期记录经常遭受记录单个单位甚至很小的多单位簇的概率不断降低的困扰。该问题与可用设备的两个技术限制有关:第一,电极移动的限制,第二,不存在定期定期更换电极的可能性。允许调整记录位置并使用带有适当电极的新记录轨道可以避免这些问题,并使慢性病更类似于急性记录。在这里,我们描述了解决该问题的新型植入物。它由一种新型的记录室和精确地适合其中的可交换多电极阵列组成。多电极阵列可逆地固定在腔室上,在一分钟之内就可以与另一只在醒着的动物身上装有新电极的阵列交换。该阵列允许六个电极双向移动长达12 mm的距离。记录室可实现颅内空间的气密隔离,从而导致长期的无菌条件,并将硬脑膜增厚降至最低,这已通过微生物学和组织病理学分析证实。该装置设计简单,易于生产且成本低廉。在长达15个月的时间内,已对三只猕猴的初级和次级视皮层进行了功能测试。结果表明,即使超过一年,仍可以高发生率获得单反应和多反应。

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