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插入速度对慢性植入硅基神经探针的组织反应和插入力学的影响。

Effect of insertion speed on tissue response and insertion mechanics of a chronically implanted silicon-based neural probe.

机构信息

Department of Neurosciences, Katholieke Universiteit Leuven, Leuven, Belgium.

出版信息

IEEE Trans Biomed Eng. 2011 Nov;58(11):3250-9. doi: 10.1109/TBME.2011.2166963. Epub 2011 Sep 1.

Abstract

In this study, the effect of insertion speed on long-term tissue response and insertion mechanics was investigated. A dummy silicon parylene-coated probe was used in this context and implanted in the rat brain at 10 μm/s (n = 6) or 100 μm/s (n = 6) to a depth of 9 mm. The insertion mechanics were assessed by the dimpling distance, and the force at the point of penetration, at the end of the insertion phase, and after a 3-min rest period in the brain. After 6 weeks, the tissue response was evaluated by estimating the amount of gliosis, inflammation, and neuronal cell loss with immunohistochemistry. No difference in dimpling, penetration force, or the force after a 3-min rest period in the brain was observed. However, the force at the end of the insertion phase was significantly higher when inserting the probes at 100 μm/s compared to 10 μm/s. Furthermore, an expected tissue response was seen with an increase of glial and microglial reactivity around the probe. This reaction was similar along the entire length of the probe. However, evidence for a neuronal kill zone was observed only in the most superficial part of the implant. In this region, the lesion size was also greatest. Comparison of the tissue response between insertion speeds showed no differences.

摘要

在这项研究中,研究了插入速度对长期组织反应和插入力学的影响。在这方面使用了假的硅聚对二甲苯涂层探头,并以 10 μm/s(n = 6)或 100 μm/s(n = 6)的速度将其植入大鼠大脑,深度为 9mm。通过压痕距离和插入阶段结束时以及在大脑中休息 3 分钟后的穿透点的力来评估插入力学。6 周后,通过免疫组织化学评估神经胶质增生、炎症和神经元细胞丢失的程度来评估组织反应。压痕、穿透力或在大脑中休息 3 分钟后的力没有差异。然而,与以 10 μm/s 的速度插入相比,以 100 μm/s 的速度插入探针时,插入阶段结束时的力明显更高。此外,在探针周围观察到预期的组织反应,即胶质和小胶质细胞的反应性增加。这种反应沿着探针的整个长度相似。然而,仅在植入物的最浅层部分观察到神经元杀伤区的证据。在该区域,损伤大小也最大。比较插入速度之间的组织反应没有差异。

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