Department of Physiology and Pharmacology, SUNY Downstate Medical Center, Brooklyn, 450 Clarkson Av, Box# 31, Brooklyn, NY 11203, USA.
J Neurosci Methods. 2010 May 15;188(2):187-94. doi: 10.1016/j.jneumeth.2010.02.006. Epub 2010 Feb 11.
Many neurophysiological experiments on rodents and non-human primates involve the implantation of more than one multi-electrode array to record from many regions of the brain. So called 'floating' microelectrode arrays are implanted in cortical regions of interest and are coupled via a flexible cable to their connectors which are fixed to the skull by a cement cap or a titanium pedestal, such as the Cereport system, which has been approved for human use. The use of bone cement has several disadvantages including the creation of infection prone areas at the interface with the skull and surrounding skin. Alternatively, the more biocompatible Cereport has a limited carrying capacity and is far more expensive. In this paper, we describe a new implantation technique, which combines the biocompatibility of titanium, a high carrying capacity with a minimal skull footprint, and a decreased chance of infection, all in a relatively inexpensive package. This technique utilizes an in-house fabricated 'Nesting Platform' (NP), mounted on a titanium headpost to hold multiple connectors above the skin, making the headpost the only transcutaneous object. The use of delrin, a durable, lightweight and easily machinable material, allows easy customization of the NP for a wide variety of floating electrodes and their connectors. The ultimate result is a longer survival time with superior neural recordings that can potentially last longer than with traditional implantation techniques.
许多啮齿动物和非人类灵长类动物的神经生理学实验都涉及植入多个多电极阵列以记录大脑的多个区域。所谓的“浮动”微电极阵列被植入感兴趣的皮质区域,并通过柔性电缆与固定在颅骨上的连接器相连,连接器通过水泥帽或钛基座固定,如 Cereport 系统,该系统已获准用于人体。使用骨水泥有几个缺点,包括在与颅骨和周围皮肤的界面处形成易感染的区域。或者,生物相容性更好的 Cereport 承载能力有限,而且价格昂贵得多。在本文中,我们描述了一种新的植入技术,该技术结合了钛的生物相容性、高承载能力和最小的颅骨足迹,以及感染机会减少的优点,所有这些都在一个相对便宜的包装中实现。该技术利用内部制造的“嵌套平台”(NP),安装在钛制头柱上,将多个连接器固定在皮肤上方,使头柱成为唯一的经皮物体。使用耐用、轻便且易于加工的 Delrin 材料,允许轻松定制 NP 以适应各种浮动电极及其连接器。最终结果是具有更高的神经记录能力,生存时间更长,比传统植入技术潜在的持续时间更长。