Langhals Nicholas B, Urbanchek Melanie G, Ray Amrita, Brenner Michael J
aSection of Plastic Surgery, Department of Surgery bDepartment of Biomedical Engineering cDivision of Facial Plastic and Reconstructive Surgery, Department of Otolaryngology - Head and Neck Surgery, University of Michigan, Ann Arbor, Michigan, USA *Nicholas B. Langhals and Melanie G. Urbanchek contributed equally to the writing of this article.
Curr Opin Otolaryngol Head Neck Surg. 2014 Aug;22(4):291-9. doi: 10.1097/MOO.0000000000000062.
To present the recent advances in the treatment of facial paralysis, emphasizing the emerging technologies. This review will summarize the current state of the art in the management of facial paralysis and discuss the advances in nerve regeneration, facial reanimation, and use of novel biomaterials. This review includes surgical innovations in reinnervation and reanimation as well as progress with bioelectrical interfaces.
The last decade has witnessed major advances in the understanding of nerve injury and approaches for management. Key innovations include strategies to accelerate nerve regeneration, provide tissue-engineered constructs that may replace nonfunctional nerves, approaches to influence axonal guidance, limiting of donor-site morbidity, and optimization of functional outcomes. Approaches to muscle transfer continue to evolve, and new technologies allow for electrical nerve stimulation and use of artificial tissues.
The fields of biomedical engineering and facial reanimation increasingly intersect, with innovative surgical approaches complementing a growing array of tissue engineering tools. The goal of treatment remains the predictable restoration of natural facial movement, with acceptable morbidity and long-term stability. Advances in bioelectrical interfaces and nanotechnology hold promise for widening the window for successful treatment intervention and for restoring both lost neural inputs and muscle function.
介绍面瘫治疗的最新进展,重点强调新兴技术。本综述将总结面瘫管理的当前技术水平,并讨论神经再生、面部复建以及新型生物材料应用方面的进展。本综述包括神经再支配和复建的手术创新以及生物电接口的进展。
过去十年见证了在神经损伤理解和治疗方法方面的重大进展。关键创新包括加速神经再生的策略、提供可替代无功能神经的组织工程构建体、影响轴突导向的方法、减少供区并发症以及优化功能结果。肌肉转移方法不断发展,新技术允许进行电神经刺激和使用人工组织。
生物医学工程和面部复建领域的交叉日益增多,创新手术方法与越来越多的组织工程工具相辅相成。治疗目标仍然是可预测地恢复自然面部运动,同时具有可接受的并发症和长期稳定性。生物电接口和纳米技术的进展有望扩大成功治疗干预的窗口期,并恢复失去的神经输入和肌肉功能。