Kundu Aritra, Wirenfeldt Martin, Harreby Kristian R, Jensen Winnie
1 Center for Sensory-Motor Interaction, Department of Health Science and Technology, Aalborg University, Aalborg - Denmark.
Int J Artif Organs. 2014 Jun;37(6):466-76. doi: 10.5301/ijao.5000342. Epub 2014 Jun 28.
Before a novel peripheral nerve interface can be applied in a neural prosthesis for human use, it is important to determine the biocompatibility of the device. The aim of the present study was to assess the biosafety of the recently developed transverse intrafascicular multi-channel electrode (TIME) in a large nerve animal model. Six TIMEs were implanted (33-38 days) into the median nerves of Göttingen minipigs, and nerve specimens were harvested for histological analysis. We analyzed samples from the area of the implant and from control regions. We found an expected layer of fibrosis around the implant and fibroblasts in both the implant and control region, however, we found no significant presence of inflammatory cells or necrosis. Our results indicated that the TIME may be an attractive, biocompatible neural interface for future neuroprosthesis applications in the clinic setting.
在一种新型外周神经接口能够应用于人体神经假体之前,确定该装置的生物相容性很重要。本研究的目的是在大型神经动物模型中评估最近开发的横向束内多通道电极(TIME)的生物安全性。将六个TIME植入 Göttingen 小型猪的正中神经中(33 - 38天),并采集神经标本进行组织学分析。我们分析了植入区域和对照区域的样本。我们在植入物周围发现了预期的纤维化层,并且在植入区域和对照区域均发现了成纤维细胞,然而,我们未发现炎症细胞或坏死的显著存在。我们的结果表明,TIME可能是一种有吸引力的、生物相容性良好的神经接口,可用于未来临床环境中的神经假体应用。