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The tricuspid valve is an atrioventricular valve that prevents blood backflow from the right ventricle into the right atrium during ventricular contractions. It is important to study mechanically induced microstructural alterations in the tricuspid valve leaflets, as this aids both in understanding valvular diseases and in the development of new engineered tissue replacements. The structure and composition of the extracellular matrix (ECM) fiber networks are closely tied to an overall biomechanical function of the tricuspid valve. In this study, we conducted experiments and implemented a multiscale modeling approach to predict ECM microstructural changes to tissue-level mechanical responses in a controlled loading environment. In particular, we characterized a sample of a porcine anterior leaflet at a macroscale using a biaxial mechanical testing method. We then generated a three-dimensional finite element model, to which computational representations of corresponding fiber networks were incorporated based on properties of the microstructural architecture obtained from small angle light scattering. Using five different biaxial boundary conditions, we performed iterative simulations to obtain model parameters with an overall R value of 0.93. We observed that mechanical loading could markedly alter the underlying ECM architecture. For example, a relatively isotropic fiber network (with an anisotropy index value α of 28%) became noticeably more anisotropic (with an α of 40%) when it underwent mechanical loading. We also observed that the mechanical strain was distributed in a different manner at the ECM/fiber level as compared to the tissue level. The approach presented in this study has the potential to be implemented in pathophysiologically altered biomechanical and structural conditions and to bring insights into the mechanobiology of the tricuspid valve. STATEMENT OF SIGNIFICANCE: Quantifying abnormal cellar/ECM-level deformation of tricuspid valve leaflets subjected to a modified loading environment is of great importance, as it is believed to be linked to valvular remodeling responses. For example, developing surgical procedures or engineered tissue replacements that maintain/mimic ECM-level mechanical homeostasis could lead to more durable outcomes. To quantify leaflet deformation, we built a multiscale framework encompassing the contributions of disorganized ECM components and organized fibers, which can predict the behavior of the tricuspid valve leaflets under physiological loading conditions both at the tissue level and at the ECM level. In addition to future in-depth studies of tricuspid valve pathologies, our model can be used to characterize tissues in other valves of the heart.
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http://dx.doi.org/10.1016/j.actbio.2019.05.074 | DOI Listing |
World J Pediatr Congenit Heart Surg
September 2025
Department of Pediatric Cardiac Surgery, National Institute of Cardiovascular Diseases, Karachi, Pakistan.
Severe tricuspid regurgitation (TR) can lead to significant enlargement of the right atrium (RA) and poses unique clinical challenges. We report this case of a 17-year-old boy previously misdiagnosed with Ebstein anomaly who presented with dyspnea and palpitations. Initial examination revealed irregular heart rhythm, distended neck veins, and a significant murmur.
View Article and Find Full Text PDFJTCVS Open
August 2025
Division of Cardiovascular Surgery, Children's National Heart Institute, Children's National Hospital, Washington, DC.
Objectives: We sought to review the outcomes of patients with Ebstein anomaly (EA) after the Fontan operation.
Methods: Patients with EA were identified from a large binational registry about the Fontan operation. Data were collected from hospital records, registry data, and clinical correspondence.
JTCVS Open
August 2025
Department of Cardiovascular Surgery, Mayo Clinic, Rochester, Minn.
Objectives: To describe the clinical presentation of patients with gonadal neuroendocrine tumors and carcinoid heart disease (CaHD) and to evaluate long-term outcomes following valvular surgery.
Methods: Retrospective review of patients with primary gonadal neuroendocrine tumor who were surgically treated for CaHD at our institution between 1990 and 2021.
Results: Eight patients (median age, 70 years) were included in the study, 7 with ovarian tumors and 1 with testicular tumor.
JTCVS Open
August 2025
Division of Cardiothoracic Surgery, Department of Surgery, University of Southern California, Los Angeles, Calif.
Objective: Patients with heterotaxy-associated congenital heart disease often require multiple operations, which may have a cumulative effect on their outcomes. This study aimed to define the cardiac surgical course in a large cohort and identify longitudinal risk factors for death/transplant.
Methods: All patients with heterotaxy-associated congenital heart disease who underwent cardiac surgery at one institution from 2005 to 2022 were retrospectively reviewed.
Objective: Minimally invasive aortic valve replacement (MIAVR) and transcatheter aortic valve replacement (TAVR) represent less-invasive alternatives to conventional surgical aortic valve replacement. In contrast to Society of Thoracic Surgeons (STS) Database data revealing <10% of all surgical aortic valve replacement procedures are performed via a minimally invasive approach, our center performs a high volume of MIAVR procedures. This propensity-score matched study aims to compare the outcomes of MIAVR versus TAVR in low-risk patients (STS Predicted Risk of Mortality <4%).
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