TY - JOUR
T1 - Reconstruction of normal morphology for simulated femoral condyle lesions based on shape statistical constraints and differential coordinate transformation
AU - Zhang, Zupei
AU - Zhang, Xiaogang
AU - Zhang, Yali
AU - Jin, Zhongmin
N1 - Publisher Copyright:
© International Federation for Medical and Biological Engineering 2026.
PY - 2026/5
Y1 - 2026/5
N2 - Knee lesions frequently result in morphological alterations or degenerative defects on the joint surface. This study aims to develop a reconstruction model that restores the pathological femoral condyle surface into a healthy morphology. A statistical shape model (SSM) was constructed using a healthy femoral condyle surface database as the base template for surface restoration. The restoration was achieved through differential coordinates (DC) transformation, constrained by statistical model parameters, template data, and the healthy portion of the pathological femoral condyle surface. Both the proposed method and the conventional SSM method were used for lesion restoration. The performance of both methods was compared using static geometric errors and dynamic joint motion errors, assessing surface accuracy and joint motion impact. For the proposed model, reconstruction errors remained low across both localized and extensive regions. Compared with the conventional SSM approach, the proposed method achieved better accuracy in both static geometric reconstruction and dynamic joint motion. It provides critical osteotomy positioning parameters and design references for patient-specific implants, and enhances the accuracy and efficiency of joint replacement surgeries.
AB - Knee lesions frequently result in morphological alterations or degenerative defects on the joint surface. This study aims to develop a reconstruction model that restores the pathological femoral condyle surface into a healthy morphology. A statistical shape model (SSM) was constructed using a healthy femoral condyle surface database as the base template for surface restoration. The restoration was achieved through differential coordinates (DC) transformation, constrained by statistical model parameters, template data, and the healthy portion of the pathological femoral condyle surface. Both the proposed method and the conventional SSM method were used for lesion restoration. The performance of both methods was compared using static geometric errors and dynamic joint motion errors, assessing surface accuracy and joint motion impact. For the proposed model, reconstruction errors remained low across both localized and extensive regions. Compared with the conventional SSM approach, the proposed method achieved better accuracy in both static geometric reconstruction and dynamic joint motion. It provides critical osteotomy positioning parameters and design references for patient-specific implants, and enhances the accuracy and efficiency of joint replacement surgeries.
KW - Computer-Assisted Diagnosis
KW - Knee lesion
KW - Patient-specific modeling
KW - Plastic surgery procedures
KW - Statistical shape model
UR - https://www.scopus.com/pages/publications/105034295791
U2 - 10.1007/s11517-026-03542-y
DO - 10.1007/s11517-026-03542-y
M3 - 文章
AN - SCOPUS:105034295791
SN - 0140-0118
VL - 64
SP - 1623
EP - 1633
JO - Medical and Biological Engineering and Computing
JF - Medical and Biological Engineering and Computing
IS - 5
ER -