Senders Craig W, Tollefson Travis T, Curtiss Shane, Wong-Foy AnnJoe, Prahlad Harsha
Department of Otolaryngology-Head and Neck Surgery, University of California, Davis Medical Center, Sacramento, 95817, USA.
Arch Facial Plast Surg. 2010 Jan-Feb;12(1):30-6. doi: 10.1001/archfacial.2009.111.
To determine the force requirements, optimal vector, and appropriate materials of a novel eyelid sling device that will be used to rehabilitate eyelid closure (blink) in congenital or acquired permanent facial paralysis with an artificial muscle.
The force required to close the eyelids in human cadavers (n = 6) were measured using a load cell system. The eyelid sling using either expanded polytetrafluoroethylene (ePTFE) or temporalis muscle fascia was implanted. The ideal vector of force and placement within the eyelid for a natural eyelid closure were compared.
The eyelid sling concept was successful at creating eyelid closure in a cadaver model using an upper eyelid sling attached to the distal tarsal plate. Less force was necessary to create eyelid closure using a temporalis muscle fascia sling (627 +/- 128 mN) than for the ePTFE eyelid sling (1347 +/- 318 mN).
The force and stroke required to close an eyelid with the eyelid sling are well within the attainable range of the electroactive polymer artificial muscle (EPAM). This may allow the creation of a realistic and functional eyelid blink that is symmetric and synchronous with the contralateral, normally functioning blink. Future aims include consideration of different sling materials and development of both the EPAM device and an articulation between the EPAM and sling. The biocompatibility and durability studies of EPAM in a gerbil model are under way. The successful application of artificial muscle technology to create an eyelid blink would be the first of many potential applications.
确定一种新型眼睑悬吊装置的力需求、最佳矢量和合适材料,该装置将用于通过人工肌肉修复先天性或后天性永久性面瘫患者的眼睑闭合(眨眼)功能。
使用测力传感器系统测量6具人类尸体眼睑闭合所需的力。植入使用膨体聚四氟乙烯(ePTFE)或颞肌筋膜的眼睑悬吊装置。比较自然眼睑闭合时力的理想矢量和在眼睑内的放置位置。
在尸体模型中,通过将上睑悬吊装置连接到睑板远端成功实现了眼睑闭合。使用颞肌筋膜悬吊装置实现眼睑闭合所需的力(627±128毫牛)比ePTFE眼睑悬吊装置(1347±318毫牛)要小。
使用眼睑悬吊装置闭合眼睑所需的力和行程完全在电活性聚合物人工肌肉(EPAM)可达到的范围内。这可能有助于创造出与对侧正常眨眼对称且同步的逼真且功能性的眼睑眨眼。未来的目标包括考虑不同的悬吊材料以及开发EPAM装置和EPAM与悬吊装置之间的关节。EPAM在沙鼠模型中的生物相容性和耐久性研究正在进行中。人工肌肉技术成功应用于创造眼睑眨眼将只是众多潜在应用中的第一个。