2022
DOI: 10.1101/2022.02.13.22270835
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AugmentA: Patient-specific Augmented Atrial model Generation Tool

Abstract: Digital twins of patients’ hearts are a promising tool to assess arrhythmia vulnerability and to personalize therapy. However, the process of building personalized computational models can be challenging and requires a high level of human interaction. A pipeline to standardize the generation of a patient’s atrial digital twin from clinical data is therefore desirable. We propose a patient-specific Augmented Atria generation pipeline (AugmentA) as a highly automated framework which, starting from clinical geome… Show more

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Cited by 11 publications
(23 citation statements)
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“…The only user interaction needed for the whole pipeline is the choice of one reference point per atrium. 17 The input can be atrial surfaces obtained from an electro-anatomical mapping system or derived from tomographic segmentation (e.g. MRI or CT).…”
Section: Methodsmentioning
confidence: 99%
See 1 more Smart Citation
“…The only user interaction needed for the whole pipeline is the choice of one reference point per atrium. 17 The input can be atrial surfaces obtained from an electro-anatomical mapping system or derived from tomographic segmentation (e.g. MRI or CT).…”
Section: Methodsmentioning
confidence: 99%
“…Novel frameworks enabled the assessment of initiation, maintenance, and progression of AF via patient-specific computational modelling. 16–20 Nowadays, virtual replicas of human atria can be generated integrating information from multiple clinical data in an automated manner, 17 becoming a useful tool for clinicians in therapy planning. 20 , 21 …”
Section: Introductionmentioning
confidence: 99%
“…These were smoothed and resampled with an average edge length of 0.5 mm, 5 mm, 5 mm, 7 mm and 15 mm, respectively, using Meshmixer (Autodesk, San Rafael, CA, USA) and InstantMeshes [13] whereby details were corrected manually in Blender (Blender Foundation, Amsterdam, The Netherlands) to avoid intersecting segments and ensure a sufficient mesh quality and topology. The segmented atrial endocardial surfaces were fed into the pipeline described in [10], [14], [15] to obtain a volumetric tetrahedral bi-atrial geometry with a homogeneous wall thickness of 3 mm and an average edge length of 523 µm augmented with inter-atrial connections, labels for anatomical structures and myocardial fiber orientation. In contrast to fully personalized approaches where fiber orientation can be defined based on information extracted from diffusion tensor imaging data, we defined myocardial fiber architecture in a rule-based way as described in [14] building on the solution of Laplace's equation [16], [17].…”
Section: A Model Generationmentioning
confidence: 99%
“…The segmented atrial endocardial surfaces were fed into the pipeline described in [10], [14], [15] to obtain a volumetric tetrahedral bi-atrial geometry with a homogeneous wall thickness of 3 mm and an average edge length of 523 µm augmented with inter-atrial connections, labels for anatomical structures and myocardial fiber orientation. In contrast to fully personalized approaches where fiber orientation can be defined based on information extracted from diffusion tensor imaging data, we defined myocardial fiber architecture in a rule-based way as described in [14] building on the solution of Laplace's equation [16], [17]. Meshtool [18] was used to generate a tetrahedral model of the full torso while preserving the surfaces of the considered organs.…”
Section: A Model Generationmentioning
confidence: 99%
“…AugmentA consists of a preprocessing step ( Azzolin et al, 2021a ), atrial orifices’ annotation, a statistical shape model fitting procedure, fiber generation ( Zheng et al, 2021 ) and conduction velocity (CV) estimation. AugmentA offers an automated and comprehensive pipeline delivering personalized atrial computer models from clinical data in procedural time ( Azzolin et al, 2022a ). This is a step forward toward standardized assessment of arrhythmia vulnerability and testing of ablation strategies.…”
Section: Applications Of Digital Twin Techniques In Atrial Fibrillati...mentioning
confidence: 99%