Auckland Bone and Joint Surgery, Auckland, New Zealand.
Surg Technol Int. 2022 May 19;40:315-320. doi: 10.52198/22.STI.40.OS1561.
The VELYS™ Robotic-Assisted Solution (VRAS) (DePuy Synthes, Warsaw, Indiana) utilises new technology to accurately collect the bony anatomy and soft tissue envelope of the knee. This enables surgeons to use this information to intraoperatively plan anatomical placement of a total knee arthroplasty (TKA) with preservation of the soft tissues with the aim of restoring functional knee motion. The robotic-assisted saw delivers precise, accurate, and efficient delivery of this implantation plan. This article describes the patient-specific TKA technique which maximises the full potential of VRAS; however, all TKA techniques and alignment philosophies can be accommodated with VRAS. The first case was performed in late 2020. An early outcome study shows an improvement in knee function and pain with activity at discharge and six weeks and a neutral surgical time comparable with the author's extensive experience with patient-specific balanced TKA with navigation. Only a limited number of patients have one-year results. However, the data of this limited cohort demonstrates favourable outcome scores and high patient satisfaction.
VELYS™ 机器人辅助解决方案 (VRAS)(DePuy Synthes,印第安纳州华沙)利用新技术准确采集膝关节的骨骼解剖结构和软组织包绕。这使外科医生能够利用这些信息在术中规划全膝关节置换术 (TKA) 的解剖放置,保留软组织,以恢复膝关节的功能运动。机器人辅助锯可精确、准确和高效地执行此植入计划。本文介绍了最大限度发挥 VRAS 全部潜力的个体化 TKA 技术;然而,所有 TKA 技术和对线理念都可以与 VRAS 相适应。首例手术于 2020 年末进行。一项早期结果研究显示,在出院时和六周时活动时膝关节功能和疼痛得到改善,手术时间与作者使用个体化平衡 TKA 导航的丰富经验相当。只有少数患者有一年的结果。然而,该有限队列的数据显示出良好的结果评分和高患者满意度。