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An ovine model of cerebral catheter venography for implantation of an endovascular neural interface

机译:一种脑导管静脉静脉静脉静脉静脉血管神经界面的绵羊模型

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摘要

OBJECTIVE Neural interface technology may enable the development of novel therapies to treat neurological conditions, including motor prostheses for spinal cord injury. Intracranial neural interfaces currently require a craniotomy to achieve implantation and may result in chronic tissue inflammation. Novel approaches are required that achieve less invasive implantation methods while maintaining high spatial resolution. An endovascular stent electrode array avoids direct brain trauma and is able to record electrocorticography in local cortical tissue from within the venous vasculature. The motor area in sheep runs in a parasagittal plane immediately adjacent to the superior sagittal sinus (SSS). The authors aimed to develop a sheep model of cerebral venography that would enable validation of an endovascular neural interface.
机译:客观的神经界面技术可以使新疗法的开发能够治疗神经系统条件,包括用于脊髓损伤的电机假体。 颅内神经界面目前需要开颅术以实现植入,并且可能导致慢性组织炎症。 需要新的方法,以实现更少的侵入性植入方法,同时保持高空间分辨率。 血管内支架电极阵列避免直接脑创伤,并且能够从静脉脉管系统内从局部皮质组织中记录电凝。 绵羊的电机区域在紧邻邻近的卓越矢状窦(SSS)的放射线面积中运行。 作者旨在开发一种脑静脉造影的绵羊模型,其能够验证血管内神经界面。

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