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An improved cochlear implant electrode array for use in experimental studies.

机译:一种改进的耳蜗植入电极阵列,用于实验研究。

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Experimental studies play an important role in establishing the safety and efficacy of cochlear implants and they continue to provide insight into a new generation of electrode arrays and stimulation strategies. One drawback has been the limited depth of insertion of an electrode array in experimental animals. We compared the insertion depth and trauma associated with the insertion of Cochlear Ltd's Hybrid-L (HL) array with a standard 8 ring array in cat cochleae. Both arrays were inserted into cadaver cochleae and an X-ray recorded their anatomical location. The implanted cochlea was serially sectioned and photographed at 300 mum intervals for evidence of electrode insertion trauma. Subsequently two cats were chronically implanted with HL arrays and electrically-evoked potentials recorded over a three month period. Mean insertion depth for the HL arrays was 334.8 degrees (SD = 21 degrees ; n = 4) versus 175.5 degrees (SD = 6 degrees ; n = 2) for the standard array. This relates to approximately 10.5 mm and 6 mm respectively. A similar insertion depth was measured in a chronically implanted animal with an HL array. Histology from each cadaver cochleae showed that the electrode array was always located in the scala tympani; there was no evidence of electrode insertion trauma to the basilar membrane, the osseous spiral lamina or the spiral ligament. Finally, evoked potential data from the chronically implanted animals exhibited significantly lower thresholds compared with animals implanted with a standard 8 ring array, with electrical thresholds remaining stable over a three-month observation period. Cochlear Ltd's HL electrode array can be safely inserted approximately 50% of the length of the cat scala tympani, placing the tip of the array close to the 4 kHz place. This insertion depth is considerably greater than is routinely achieved using a standard 8-ring electrode array ( approximately 12 kHz place). The HL array evokes low thresholds that remain stable over three months of implantation. This electrode array has potential application in a broad area of cochlear implant related research.
机译:实验研究在建立耳蜗植入物的安全性和有效性方面起着重要作用,并且它们继续为新一代电极阵列和刺激策略提供见识。一个缺点是实验动物中电极阵列的插入深度有限。我们比较了在猫耳蜗中插入Cochlear Ltd的Hybrid-L(HL)阵列与标准8环阵列相关的插入深度和创伤。将两个阵列都插入尸体的耳蜗中,并用X射线记录其解剖位置。对植入的耳蜗进行连续切片,并以300微米的间隔拍照,以证明电极插入有创伤。随后,将两只猫长期植入HL阵列,并在三个月的时间内记录其电诱发电位。 HL阵列的平均插入深度为334.8度(SD = 21度; n = 4),而标准阵列为175.5度(SD = 6度; n = 2)。这分别涉及大约10.5mm和6mm。在带有HL阵列的长期植入动物中测量了相似的插入深度。每个尸体耳蜗的组织学表明,电极阵列始终位于鼓膜中。没有证据表明电极插入会损伤基底膜,骨螺旋膜或螺旋韧带。最后,与植入标准8环阵列的动物相比,长期植入的动物的诱发电位数据显示出明显更低的阈值,在三个月的观察期内电阈值保持稳定。 Cochlear Ltd的HL电极阵列可以安全地插入猫斯卡拉鼓膜长度的50%左右,并将阵列的尖端靠近4 kHz放置。该插入深度比使用标准的8环电极阵列(大约12 kHz的位置)常规实现的插入深度大得多。 HL阵列的阈值较低,可在植入三个月后保持稳定。该电极阵列在耳蜗植入物相关研究的广泛领域中具有潜在的应用。

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