Johnson Cherie H, Christensen Jeffrey C
Division of Podiatry, Department of Orthopedics, Swedish Medical Center, Seattle, WA, USA.
J Foot Ankle Surg. 2005 Mar-Apr;44(2):114-20. doi: 10.1053/j.jfas.2005.01.003.
The positional change of the medial column of the foot in closed kinetic chain with variable Achilles tendon tension was investigated in seven fresh frozen cadaver specimens using a 3-dimensional radio wave tracking system. The distal tibia and fibula and the intact ankle and foot and were mounted on a non-metallic loading frame. The frame allowed positioning of the foot to simulate midstance phase of gait while the tibia and fibula were axially loaded to 400 N. To record osseous motion, receiving transducers were attached to the first metatarsal, medial cuneiform, navicular, and talus. Movements of these bones in 3-dimensional space were measured as specimens were axially loaded and midstance motor function was simulated using pneumatic actuators. To simulate a progressive equinus influence, force was applied to the Achilles tendon at tensile loads of 0%, 30%, and 60% of predicted maximum strength during each test trial. Osseous positions and orientations were collected and analyzed in all three cardinal planes utilizing data recorded. As Achilles load increased, the position of the first metatarsal became significantly more inverted ( P < .05). Although not statistically significant, remarkable trends of arch flattening motion were detected in the distal segments of the medial column with varied Achilles load. Increased Achilles load reduced the influence of peroneus longus on the medial column.
利用三维无线电波跟踪系统,在7个新鲜冷冻尸体标本中研究了在闭合动力链中跟腱张力变化时足内侧柱的位置变化。将胫腓骨远端以及完整的踝关节和足部安装在非金属加载框架上。该框架可对足部进行定位,以模拟步态的支撑中期阶段,同时对胫腓骨进行400N的轴向加载。为记录骨运动,将接收换能器附着于第一跖骨、内侧楔骨、舟骨和距骨。在对标本进行轴向加载并使用气动致动器模拟支撑中期运动功能时,测量这些骨骼在三维空间中的运动。为模拟进行性马蹄足影响,在每次测试试验中,以预测最大强度的0%、30%和60%的拉伸负荷向跟腱施加力。利用记录的数据,在所有三个基本平面上收集并分析骨的位置和方向。随着跟腱负荷增加,第一跖骨的位置变得明显更加内翻(P < .05)。尽管无统计学意义,但在跟腱负荷不同时,在内侧柱远端节段检测到明显的足弓变平运动趋势。跟腱负荷增加会降低腓骨长肌对内侧柱的影响。