首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Techniques for Processing Eyes Implanted with a Retinal Prosthesis for Localized Histopathological Analysis: Part 2 Epiretinal Implants with Retinal Tacks
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Techniques for Processing Eyes Implanted with a Retinal Prosthesis for Localized Histopathological Analysis: Part 2 Epiretinal Implants with Retinal Tacks

机译:用于处理植入视网膜假体的眼睛以进行局部组织病理学分析的技术:第二部分视网膜大头钉视网膜前植入物

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摘要

Retinal prostheses for the treatment of certain forms of blindness are gaining traction in clinical trials around the world with commercial devices currently entering the market. In order to evaluate the safety of these devices, in preclinical studies, reliable techniques are needed. However, the hard metal components utilised in some retinal implants are not compatible with traditional histological processes, particularly in consideration for the delicate nature of the surrounding tissue. Here we describe techniques for assessing the health of the eye directly adjacent to a retinal implant secured epiretinally with a metal tack.Retinal prostheses feature electrode arrays in contact with eye tissue. The most commonly used location for implantation is the epiretinal location (posterior chamber of the eye), where the implant is secured to the retina with a metal tack that penetrates all the layers of the eye. Previous methods have not been able to assess the proximal ocular tissue with the tack in situ, due to the inability of traditional histological techniques to cut metal objects. Consequently, it has been difficult to assess localized damage, if present, caused by tack insertion.Therefore, we developed a technique for visualizing the tissue around a retinal tack and implant. We have modified an established technique, used for processing and visualizing hard bony tissue around a cochlear implant, for the soft delicate tissues of the eye. We orientated and embedded the fixed eye tissue, including the implant and retinal tack, in epoxy resin, to stabilise and protect the structure of the sample. Embedded samples were then ground, polished, stained, and imaged under various magnifications at incremental depths through the sample. This technique allowed the reliable assessment of eye tissue integrity and cytoarchitecture adjacent to the metal tack.
机译:随着商业设备进入市场,用于治疗某些形式的失明的视网膜假体在世界范围内的临床试验中越来越受到关注。为了评估这些设备的安全性,在临床前研究中,需要可靠的技术。但是,在某些视网膜植入物中使用的硬质金属成分与传统的组织学过程不兼容,特别是考虑到周围组织的微妙特性。在这里,我们描述了一种评估与金属植入物固定在视网膜前的视网膜植入物直接相邻的眼睛健康的技术。视网膜假体具有与眼睛组织接触的电极阵列。最常用的植入位置是视网膜上位置(眼睛的后房),其中植入物通过可穿透眼睛所有层的金属钉固定在视网膜上。由于传统的组织学技术无法切割金属物体,因此先前的方法无法通过粘着钉原位评估近端眼组织。因此,很难评估由大头钉插入引起的局部损伤(如果存在)。因此,我们开发了一种可视化视网膜大头钉和植入物周围组织的技术。我们已经修改了一种已建立的技术,该技术用于处理和可视化人工耳蜗周围的硬骨组织,用于眼部的软组织。我们将固定眼组织(包括植入物和视网膜粘着剂)定向并嵌入环氧树脂中,以稳定并保护样品的结构。然后将嵌入的样品研磨,抛光,染色,并以各种放大倍数在整个样品的增量深度下成像。该技术可以可靠地评估邻近金属钉的眼组织完整性和细胞结构。

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