Department of Orthopaedics, The Queen Elizabeth Hospital King's Lynn, King's Lynn, UK.
Surgeon. 2012 Oct;10(5):257-9. doi: 10.1016/j.surge.2011.05.002. Epub 2011 Jul 16.
No direct intra-operative measurement to determine the ideal size of the femoral component of Oxford unicompartmental knee replacement (UKR) is currently present. The aim of this study is to assess the accuracy of patients' shoe size as a predictor of femoral component size.
A retrospective study was conducted to identify the correlation between patients' shoe size (British system) and the femoral component size. After excluding patients who died (n = 2) and patients in whom the implanted femoral component size was inaccurate (n = 13), the remaining cases (93 UKR in 88 patients) formed the study sample. Postoperative radiographs were reviewed to determine femoral component fit.
We found positive correlation between shoe size and femoral component size. In females; a shoe size from 2.5 to 6 predicted a small femoral component and shoe size from 6.5 to 8.0 predicted a medium femoral component. In males, a shoe size from 6 to 9.5 predicted a medium femoral component and a shoe size from 10 to 13 predicted a large femoral component. This relation predicted the femoral component size accurately in 80% of cases. A subgroup analysis, after excluding patients who changed their shoe size during adulthood after foot surgery or pathology (n = 20), showed an accuracy rate of 81%.
Shoe size is a simple method that predicts femoral component size more accurately than other methods currently used such as templating, tibial component size and height based on gender.
目前,尚无直接的术中测量方法来确定牛津单髁膝关节置换术(UKR)股骨部件的理想尺寸。本研究旨在评估患者鞋码作为股骨部件尺寸预测指标的准确性。
对患者鞋码(英制)与股骨部件尺寸之间的相关性进行回顾性研究。排除死亡患者(n=2)和植入股骨部件尺寸不准确的患者(n=13)后,其余病例(88 名患者中的 93 例 UKR)构成研究样本。术后 X 线片用于确定股骨部件的适配情况。
我们发现鞋码与股骨部件尺寸之间存在正相关关系。在女性中,鞋码 2.5 至 6 预测小尺寸股骨部件,鞋码 6.5 至 8.0 预测中尺寸股骨部件。在男性中,鞋码 6 至 9.5 预测中尺寸股骨部件,鞋码 10 至 13 预测大尺寸股骨部件。这种关系在 80%的病例中准确预测了股骨部件的尺寸。在排除成年后因足部手术或疾病而改变鞋码的患者(n=20)的亚组分析中,准确率为 81%。
鞋码是一种简单的方法,比目前使用的其他方法(如模板、基于性别和胫骨部件尺寸和高度的模板)更准确地预测股骨部件尺寸。