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School of Medicine 44 Planovalgus Deformities Aross Varying Body Mass Indexes: Two-Dimensional Analysis from WBCT Megan Carter and Amy Lenz Faculty Mentor: Amy Lenz (Orthopaedics, University of Utah) Introduction Progressive collapsing foot deformity (PCFD) is a complex foot and ankle condition characterized by peritalar subluxation [1]. Individuals with PCFD have unique and intricate morphologies with complex articular relationships, often causing pain, malalignment, and loss of function [2][3]. This foot deformity is more prevalent among high BMI patients, as their increased weight places higher stress on the medial longitudinal arch, causing it to flatten [4]. However, there is a scarcity of research investigating how BMI impacts the morphology of foot bones in PCFD patients. Typically, conditions of the foot and ankle, such as PCFD, are evaluated using x-rays and 2D measurements [5]. In this study, we aimed to observe several common 2D clinical measures of PCFD among groups of varying BMIs to check for statistical significance. We hypothesized that BMI would influence foot morphology and therefore, clinical measures would vary with BMI. Methods In this study, seventy-four patients (age: 44.4 ±18.4 years; 28 females, 98 feet) presenting with PCFD underwent WBCT scans (Planmed Verity; 0.4 x 0.4 x 0.4 mm voxels) with IRB approval. Using two-dimensional digitally reconstructed radiographs from DISIOR 2.1, comparisons were made across relevant clinical values determined from literature. Those chosen values were Talonavicular Coverage (TNC), Meary’s Angle (MA, sagittal), Calcaneal Inclination Angle (CIA), and Hindfoot Moment Arm (HMA). The data was then tested for normality using MATLAB. Parametric values (MA and CIA) were analyzed using a one-way ANOVA while non-parametric values (HMA and RNC) were analyzed using a Kruskal-Wallis test. Results The only statistically different clinical measure was HMA between BMI groups 2 and 3 (Group 2 = 25-29.99 BMI, Group 3 = 30-34.99 BMI). Comparisons of all other values among the varying BMI groups yielded no statistically significant p-values. Discussion The results from the 2D radiographs demonstrated a lack of significance among common 2D clinical measures, suggesting that BMI may not be a major factor in the morphology of PCFD. This information is important in understanding the etiology and treatment of PCFD. However, to further investigate these findings, the results from the 2D analyses should be compared with 3D measurements of the bones and joints. The bones of the foot have complex and unique orientations that are difficult to assess with conventional 2D radiographs. Superimposition of these bones is often misrepresented in the conversion of 3D surfaces (bones) to 2D images (radiographs), leading to inaccurate measurements [6]. However, the development of weightbearing computed tomography (WBCT) has allowed accurate 3D visualization, comprehensive analyses, and a new grading system to report degenerat
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