Thiele A, Delicato L S, Roberts M J, Gieselmann M A
Department of Psychology, Henry Wellcome Building, University of Newcastle upon Tyne, NE2 4HH, UK.
J Neurosci Methods. 2006 Dec 15;158(2):207-11. doi: 10.1016/j.jneumeth.2006.05.032. Epub 2006 Jul 14.
We developed a novel design of an electrode-pipette combination (EPC) which allows access to brain structures in awake behaving primates without the need for guide tubes or to mechanically open the dura prior to electrode insertion. The EPC consists of an etched tungsten in glass electrode flanked by two pipettes which allow for local and highly controlled iontophoretic administration of neuroactive substances. These EPCs have excellent single cell isolation properties and are sturdy enough to penetrate the primate dura for up to 8 weeks following either a craniotomy or a dura scrape (i.e. even after substantial built up of fibrous scar tissue). We show that the EPCs can be used to selectively manipulate the cholinergic system in primate V1 during passive fixation and while animals perform an attentionally demanding task.
我们开发了一种新型的电极-移液管组合(EPC)设计,该设计能够在清醒的灵长类动物活动时接触脑结构,而无需使用导管,也无需在插入电极前机械打开硬脑膜。EPC由一根蚀刻在玻璃中的钨电极组成,两侧各有两个移液管,可进行局部且高度可控的神经活性物质离子导入给药。这些EPC具有出色的单细胞分离特性,并且坚固到足以在开颅手术或硬脑膜刮除术后(即便是在纤维瘢痕组织大量形成之后)穿透灵长类动物的硬脑膜长达8周。我们表明,EPC可用于在被动注视期间以及动物执行注意力要求较高的任务时选择性地操纵灵长类动物V1区的胆碱能系统。