University of Cambridge, Electrical Engineering Division, 9 JJ Thomson Ave, Cambridge, CB3 0FA, United Kingdom.
University of Cambridge, Department of Chemical Engineering and Biotechnology, Cambridge, CB2 0QQ, United Kingdom.
Nat Commun. 2024 Aug 30;15(1):7523. doi: 10.1038/s41467-024-51988-1.
Implantable devices interfacing with peripheral nerves exhibit limited longevity and resolution. Poor nerve-electrode interface quality, invasive surgical placement and development of foreign body reaction combine to limit research and clinical application of these devices. Here, we develop cuff implants with a conformable design that achieve high-quality and stable interfacing with nerves in chronic implantation scenarios. When implanted in sensorimotor nerves of the arm in awake rats for 21 days, the devices record nerve action potentials with fascicle-specific resolution and extract from these the conduction velocity and direction of propagation. The cuffs exhibit high biocompatibility, producing lower levels of fibrotic scarring than clinically equivalent PDMS silicone cuffs. In addition to recording nerve activity, the devices are able to modulate nerve activity at sub-nerve resolution to produce a wide range of paw movements. When used in a partial nerve ligation rodent model, the cuffs identify and characterise changes in nerve C fibre activity associated with the development of neuropathic pain in freely-moving animals. The developed implantable devices represent a platform enabling new forms of fine nerve signal sensing and modulation, with applications in physiology research and closed-loop therapeutics.
植入式设备与外周神经的接口具有有限的寿命和分辨率。不良的神经-电极接口质量、侵入性的手术放置以及异物反应的发展,共同限制了这些设备的研究和临床应用。在这里,我们开发了具有顺应性设计的袖套植入物,可在慢性植入场景中实现与神经的高质量和稳定接口。当在清醒大鼠的感觉运动神经中植入 21 天时,这些设备以纤维束特异性分辨率记录神经动作电位,并从中提取传导速度和传播方向。袖套具有很高的生物相容性,产生的纤维性瘢痕比临床等效的 PDMS 硅酮袖套少。除了记录神经活动外,这些设备还能够以亚神经分辨率调节神经活动,从而产生广泛的爪子运动。当用于部分神经结扎啮齿动物模型时,袖套可以识别和描述与神经 C 纤维活动相关的变化,这些变化与动物自由活动时神经病理性疼痛的发展有关。所开发的植入式设备代表了一种能够实现精细神经信号传感和调节的平台,可应用于生理学研究和闭环治疗。