Schneble Christopher A, Yu Kristin, Venkadesan Madhusudhan, Cooperman Daniel, Beitler Brian, Sieberer Johannes, Fulkerson John
Orthopedic Sports Medicine, Rothman Orthopaedic Institute, Philadelphia, Pennsylvania, U.S.A.
Orthopaedic Surgery, Mayo Clinic Foundation, Rochester, Minnesota, U.S.A.
Arthroscopy. 2025 Jan;41(1):130-140. doi: 10.1016/j.arthro.2024.04.010. Epub 2024 Apr 30.
Three-dimensional (3D) modeling using digital or printed models provides a unique perspective that caters to cognitive spatial ability in a way that can add to our understanding and mental representations of human anatomy. This is particularly useful in the setting of trochlear dysplasia, where the morphology of the groove can exhibit substantial variability and complexity. Using 3D reformatted images and models, a pragmatic understanding of how morphology influences patellofemoral pathology can be gleaned. Further, this perspective facilitates cognition of what patellar tracking may look like after realignment procedures. Using 3D modeling, concepts such as patella alta, trochlear depth, lateralization of the patellar entry point, trochlear curvature, and the presence of a proximal trochlear spur can help afford a better understanding of how trochlear anatomy may influence tracking while also providing insight as to the ideal tracking path. The use of 3D has recently emerged as a useful tool in multiple surgical subspecialties, particularly in situations involving surgical planning or complex anatomy. Given the complexity and variation in trochlear morphology in patients with trochlear dysplasia who develop either patellar instability or focal overloading, 3D modeling is well-suited to provide a perspective that can add to our understanding of trochlear dysplasia, and potentially even how we diagnose and treat it. LEVEL OF EVIDENCE: Level V, expert opinion.
使用数字模型或打印模型进行三维(3D)建模提供了一个独特的视角,以一种能够增进我们对人体解剖结构的理解和心理表征的方式,迎合了认知空间能力。这在滑车发育不良的情况下特别有用,其中滑车沟的形态可能表现出很大的变异性和复杂性。使用3D重建图像和模型,可以切实了解形态学如何影响髌股关节病理学。此外,这种视角有助于认识在重新排列手术后髌股轨迹可能是什么样的。通过3D建模,诸如高位髌骨、滑车深度、髌骨进入点的外侧化、滑车曲率以及近端滑车棘的存在等概念,有助于更好地理解滑车解剖结构如何影响轨迹,同时也能洞察理想的轨迹路径。3D的应用最近已成为多个外科亚专业中的一种有用工具,特别是在涉及手术规划或复杂解剖结构的情况下。鉴于患有滑车发育不良且出现髌股不稳定或局部过载的患者滑车形态的复杂性和变异性,3D建模非常适合提供一种视角,增进我们对滑车发育不良的理解,甚至可能影响我们对其的诊断和治疗方式。证据级别:V级,专家意见。