paper-with-me

Papers

Validation of Subject-Specific Knee Models from In Vivo Measurements

2024-12-27 · Thor E. Andreassen, Donald R. Hume, Landon D. Hamilton, Stormy L. Hegg, Sean E. Higinbotham, Kevin B. Shelburne

Calibration to experimental data is vital when developing subject-specific models towards developing digital twins. Yet, to date, subject-specific models are largely based on cadaveric testing, as in vivo data to calibrate against has been difficult to obtain until recently. To support our overall goal of building subject-specific models of the living knee, we aimed to show that subject-specific computational models built and calibrated using in vivo measurements would have accuracy comparable to models built using in vitro measurements. Two knee specimens were imaged using a combination of computed tomography (CT), and surface scans. Knee laxity measurements were made with a custom apparatus used for the living knee and from a robotic knee simulator. Models of the knees were built using the CT geometry and surface scans, and then calibrated with either laxity data from the robotic knee simulator or from the knee laxity apparatus. Model performance was compared by simulation of passive flexion, knee laxity and a clinically relevant pivot shift. Performance was similar with differences during simulated anterior-posterior laxity tests of less than 2.5 mm. Additionally, model predictions of a pivot shift were similar with differences less than 3 deg or 3 mm for rotations and translations, respectively. Still, differences in the predicted ligament loads and calibrated material properties emerged, highlighting a need for methods to include ligament load as part of the underlying calibration process. Overall, the results showed that currently available methods of measuring knee laxity in vivo are sufficient to calibrate models comparable with existing in vitro techniques, and the workflows described here may provide a basis for modeling the living knee. The models, data, and code are publicly available.

📄 PDF Abstract BibTeX arXiv:2412.19951

Code (0)

등록된 구현이 없습니다.

Tasks

Computed Tomography (CT)

Similar Papers 제목 키워드 기반

From Pixels to Newtons: Predicting In Vivo Joint Contact Forces from Monocular Video

2026-06-04 · Jessy Lauer arxiv

Joint contact forces govern implant longevity, cartilage health, and rehabilitation outcomes, shaping who develops osteoarthritis, who recovers well from joint replacement, and who benefits from biomechanical interventio…

Kidney segmentation in neck-to-knee body MRI of 40,000 UK Biobank participants

2020-06-12 · Taro Langner, Andreas Östling, Lukas Maldonis, Albin Karlsson 외

The UK Biobank is collecting extensive data on health-related characteristics of over half a million volunteers. The biological samples of blood and urine can provide valuable insight on kidney function, with important l…

AnatomyKidney Function

Deep-learning-assisted diagnosis for knee magnetic resonance imaging: Development and retrospective validation of MRNet

2018-11-27 · Medicine 2018 11 · Nicholas Bien, Pranav Rajpurkar, Robyn L. Ball, Jeremy Irvin 외

Magnetic resonance imaging (MRI) of the knee is the preferred method for diagnosing knee injuries. However, interpretation of knee MRI is time-intensive and subject to diagnostic error and variability. An automated sys…

Deep LearningDiagnosticMulti-Label Classification

Uncertainty-Aware Body Composition Analysis with Deep Regression Ensembles on UK Biobank MRI

2021-01-18 · Taro Langner, Fredrik K. Gustafsson, Benny Avelin, Robin Strand 외

Along with rich health-related metadata, medical images have been acquired for over 40,000 male and female UK Biobank participants, aged 44-82, since 2014. Phenotypes derived from these images, such as measurements of bo…

regressionUncertainty Quantification

MIMIR: Deep Regression for Automated Analysis of UK Biobank Body MRI

2021-06-22 · Taro Langner, Andrés Martínez Mora, Robin Strand, Håkan Ahlström 외

UK Biobank (UKB) conducts large-scale examinations of more than half a million volunteers, collecting health-related information on genetics, lifestyle, blood biochemistry, and more. Medical imaging of 100,000 subjects, …

regression