paper-with-me

홈 › Papers

Spatiotemporal Manifold Prediction Model for Anterior Vertebral Body Growth Modulation Surgery in Idiopathic Scoliosis

2018-06-06 · William Mandel, Olivier Turcot, Dejan Knez, Stefan Parent, Samuel Kadoury

Anterior Vertebral Body Growth Modulation (AVBGM) is a minimally invasive surgical technique that gradually corrects spine deformities while preserving lumbar motion. However the selection of potential surgical patients is currently based on clinical judgment and would be facilitated by the identification of patients responding to AVBGM prior to surgery. We introduce a statistical framework for predicting the surgical outcomes following AVBGM in adolescents with idiopathic scoliosis. A discriminant manifold is first constructed to maximize the separation between responsive and non-responsive groups of patients treated with AVBGM for scoliosis. The model then uses subject-specific correction trajectories based on articulated transformations in order to map spine correction profiles to a group-average piecewise-geodesic path. Spine correction trajectories are described in a piecewise-geodesic fashion to account for varying times at follow-up exams, regressing the curve via a quadratic optimization process. To predict the evolution of correction, a baseline reconstruction is projected onto the manifold, from which a spatiotemporal regression model is built from parallel transport curves inferred from neighboring exemplars. The model was trained on 438 reconstructions and tested on 56 subjects using 3D spine reconstructions from follow-up exams, with the probabilistic framework yielding accurate results with differences of 2.1 +/- 0.6deg in main curve angulation, and generating models similar to biomechanical simulations.

📄 PDF Abstract BibTeX arXiv:1806.02285

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Ex vivo experiment on vertebral body with defect representing bone metastasis

2025-03-21 · W. Lokbani, V. Allard, T. Broussolle, CY. Barrey 외

Osteolytic metastases located in the vertebrae reduce strength and enhance the risk of vertebral fractures. This risk can be predicted by means of validated finite element models, but their reproducibility needs to be as…

3D Reconstruction

Accurate Scoliosis Vertebral Landmark Localization on X-ray Images via Shape-constrained Multi-stage Cascaded CNNs

2022-06-05 · Zhiwei Wang, Jinxin Lv, Yunqiao Yang, Yuanhuai Liang 외

Vertebral landmark localization is a crucial step for variant spine-related clinical applications, which requires detecting the corner points of 17 vertebrae. However, the neighbor landmarks often disturb each other for …

Vertebral body segmentation with GrowCut: Initial experience, workflow and practical application

2017-11-13 · Jan Egger, Christopher Nimsky, Xiaojun Chen

In this contribution, we used the GrowCut segmentation algorithm publicly available in three-dimensional Slicer for three-dimensional segmentation of vertebral bodies. To the best of our knowledge, this is the first time…

Segmentation

Projection-Domain Sensitivity Analysis of Vertebral DRRs Under Intrinsic Calibration Perturbation

2026-07-12 · Lin Li, Chaochao Zhou, Benjamin Aubert, Junlin Guo 외 arxiv

Accurate geometric calibration is essential for fluoroscopy-guided spinal imaging, digitally reconstructed radiograph (DRR) generation, and 2D--3D vertebral registration. Although calibration quality is typically evaluat…

Direct Automated Quantitative Measurement of Spine via Cascade Amplifier Regression Network

2018-06-14 · Shumao Pang, Stephanie Leung, Ilanit Ben Nachum, Qianjin Feng 외

Automated quantitative measurement of the spine (i.e., multiple indices estimation of heights, widths, areas, and so on for the vertebral body and disc) is of the utmost importance in clinical spinal disease diagnoses, s…

regression