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1.
Clin Biomech (Bristol, Avon) ; 71: 92-100, 2020 01.
Article in English | MEDLINE | ID: mdl-31707190

ABSTRACT

BACKGROUND: Internal soft tissue strains have been shown to be one of the main factors responsible for the onset of Pressure Ulcers and to be representative of its risk of development. However, the estimation of this parameter using Finite Element (FE) analysis in clinical setups is currently hindered by costly acquisition, reconstruction and computation times. Ultrasound (US) imaging is a promising candidate for the clinical assessment of both morphological and material parameters. METHOD: The aim of this study was to investigate the ability of a local FE model of the region beneath the ischium with a limited number of parameters to capture the internal response of the gluteus region predicted by a complete 3D FE model. 26 local FE models were developed, and their predictions were compared to those of the patient-specific reference FE models in sitting position. FINDINGS: A high correlation was observed (R = 0.90, p-value < 0.01). A sensitivity analysis showed that the most influent parameters were the mechanical behaviour of the muscle tissues, the ischium morphology and the external mechanical loading. INTERPRETATION: Given the progress of US for capturing both morphological and material parameters, these results are promising because they open up the possibility to use personalised simplified FE models for risk estimation in daily clinical routine.


Subject(s)
Buttocks/diagnostic imaging , Finite Element Analysis , Muscle, Skeletal/diagnostic imaging , Pressure Ulcer/diagnostic imaging , Adult , Compressive Strength , Female , Humans , Image Processing, Computer-Assisted , Imaging, Three-Dimensional , Ischium , Male , Models, Biological , Pressure , Pressure Ulcer/etiology , Risk , Shear Strength , Sitting Position , Stress, Mechanical , Ultrasonography , Young Adult
2.
J Biomech ; 79: 173-180, 2018 10 05.
Article in English | MEDLINE | ID: mdl-30201252

ABSTRACT

The occurrence and management of Pressure Ulcers remain a major issue for patients with reduced mobility and neurosensory loss despite significant improvement in the prevention methods. These injuries are caused by biological cascades leading from a given mechanical loading state in tissues to irreversible tissue damage. Estimating the internal mechanical conditions within loaded soft tissues has the potential of improving the management and prevention of PU. Several Finite Element models of the buttock have therefore been proposed based on either MRI or CT-Scan data. However, because of the limited availability of MRI or CT-Scan systems and of the long segmentation time, all studies in the literature include the data of only one individual. Yet the inter-individual variability can't be overlooked when dealing with patient specific estimation of internal tissue loading. As an alternative, this contribution focuses on the combined use of low-dose biplanar X-ray images, B-mode ultrasound images and optical scanner acquisitions in a non-weight-bearing sitting posture for the fast generation of patient-specific FE models of the buttock. Model calibration was performed based on Ischial Tuberosity sagging. Model evaluation was performed by comparing the simulated contact pressure with experimental observations on a population of 6 healthy subjects. Analysis of the models confirmed the high inter-individual variability of soft tissue response (maximum Green Lagrange shear strains of 213 ±â€¯101% in the muscle). This methodology opens the way for investigating inter-individual factors influencing the soft tissue response during sitting and for providing tools to assess PU risk.


Subject(s)
Buttocks/pathology , Finite Element Analysis , Patient-Specific Modeling , Pressure Ulcer/prevention & control , Sitting Position , Humans , Pressure Ulcer/pathology
3.
Comput Methods Biomech Biomed Engin ; 21(5): 408-412, 2018 Apr.
Article in English | MEDLINE | ID: mdl-29969279

ABSTRACT

Several Finite Element (FE) models of the pelvis have been developed to comprehensively assess the onset of pathologies and for clinical and industrial applications. However, because of the difficulties associated with the creation of subject-specific FE mesh from CT scan and MR images, most of the existing models rely on the data of one given individual. Moreover, although several fast and robust methods have been developed for automatically generating tetrahedral meshes of arbitrary geometries, hexahedral meshes are still preferred today because of their distinct advantages but their generation remains an open challenge. Recently, approaches have been proposed for fast 3D reconstruction of bones based on X-ray imaging. In this study, we adapted such an approach for the fast and automatic generation of all-hexahedral subject-specific FE models of the pelvis based on the elastic registration of a generic mesh to the subject-specific target in conjunction with element regularity and quality correction. The technique was successfully tested on a database of 120 3D reconstructions of pelvises from biplanar X-ray images. For each patient, a full hexahedral subject-specific FE mesh was generated with an accurate surface representation.


Subject(s)
Finite Element Analysis , Pelvis/diagnostic imaging , Tomography, X-Ray Computed , Adult , Aged , Computer Simulation , Female , Humans , Male , Middle Aged , Young Adult
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