France E P, Paulos L E, Jayaraman G, Rosenberg T D
Salt Lake City Knee and Sports Medicine Clinic, Utah 84103.
Am J Sports Med. 1987 Sep-Oct;15(5):430-8. doi: 10.1177/036354658701500502.
In Part I of our study on lateral knee bracing, we evaluated brace effectiveness using cadaveric knees and two commercially available braces (McDavid and Omni). The results indicated that for low-rate dynamic valgus loading, neither brace provided significant protection against MCL injury. Also, four potentially adverse effects were noted. The goals in Part II were to: 1) determine the clinical significance of brace induced MCL preload; 2) define the functional character of an "ideal" brace; 3) design and validate a surrogate knee model for testing brace effectiveness; and 4) determine brace performance under impact loading using the surrogate knee and six commercially available brace types (manufactured by DonJoy, McDavid, Mueller, Omni Scientific, Stromgren-Scott, and Tru-Fit). Knee braces, modified to measure varus/valgus bending force, were used to determine MCL preload effects in 13 human volunteers. An anatomically correct surrogate knee model, instrumented to measure ligament/tendon tension and medial joint opening, was developed and validated using information from our previous cadaver studies and results of analyses on the effects of high strain rates (100% versus 1000% strain/sec) on MCL failure. Over 500 impact tests were performed on the surrogate knee in unbraced versus braced conditions. Tests were conducted for three impactor masses, two flexion angles, and free or constrained limb positions. Impact safety factors (ISF) were calculated for each test condition and brace type. An ISF of 1.50 (MCL load reduction of 30%) was considered significant.(ABSTRACT TRUNCATED AT 250 WORDS)
在我们关于膝关节外侧支撑的研究的第一部分中,我们使用尸体膝关节和两种市售支撑装置(麦克戴维和全向)评估了支撑装置的有效性。结果表明,对于低速率动态外翻负荷,两种支撑装置均未对内侧副韧带损伤提供显著保护。此外,还注意到四个潜在的不利影响。第二部分的目标是:1)确定支撑装置引起的内侧副韧带预负荷的临床意义;2)定义“理想”支撑装置的功能特性;3)设计并验证用于测试支撑装置有效性的替代膝关节模型;4)使用替代膝关节和六种市售支撑装置类型(由唐乔伊、麦克戴维、穆勒、全向科学、斯特伦格伦 - 斯科特和特鲁 - 菲特制造)确定支撑装置在冲击负荷下的性能。经过改装以测量内翻/外翻弯曲力的膝关节支撑装置用于确定13名人类志愿者的内侧副韧带预负荷影响。利用我们之前尸体研究的信息以及关于高应变率(100% 与1000% 应变/秒)对内侧副韧带失效影响的分析结果,开发并验证了一个解剖结构正确的替代膝关节模型,该模型配备了测量韧带/肌腱张力和内侧关节开口的仪器。在未使用支撑装置和使用支撑装置的情况下,对替代膝关节进行了500多次冲击测试。针对三种冲击器质量、两个屈曲角度以及自由或受限肢体位置进行了测试。计算了每种测试条件和支撑装置类型的冲击安全系数(ISF)。ISF为1.50(内侧副韧带负荷降低30%)被认为具有显著意义。(摘要截断于250字)