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Background: Cardiac magnetic resonance (CMR) was recently reported to predict mean pulmonary capillary wedge pressure (PCWP). However, there is a paucity of data on its accuracy for estimation of PCWP in patients with normal left ventricular (LV) ejection fraction (EF). We sought to examine its accuracy against the invasive gold standard and to compare it with the accuracy of comprehensive echocardiography.
Methods: Stable patients with EF of ≥50% who underwent right heart catheterization, CMR, and echocardiographic imaging within 1 week were included. Pulmonary capillary wedge pressure was estimated by CMR using a previously validated equation where PCWP is estimated based on the left atrial maximum volume and LV mass. Echocardiographic estimation of PCWP was based on 2016 American Society of Echocardiography/European Association of Cardiovascular Imaging guidelines, taking into account the presence of myocardial disease.
Results: The mean age of the 79 patients was 55 ± 15 years, and 58.2% were female. There were 33 patients with PCWP >15 mm Hg by right heart catheterization. Cardiac magnetic resonance prediction of PCWP had an area under the curve (AUC) = 0.72. In comparison, echocardiographic prediction of PCWP showed a higher accuracy (AUC = 0.87 vs AUC = 0.72; P = .008).
Conclusions: In patients with normal LV EF, CMR estimation of mean PCWP based on LV mass and left atrial volume has modest accuracy for detecting patients with mean PCWP >15 mm Hg. Comprehensive echocardiography predicts elevated PCWP with higher accuracy in comparison with CMR.
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http://dx.doi.org/10.1016/j.echo.2024.02.001 | DOI Listing |
NPJ Biol Phys Mech
September 2025
Department of Biomedical Engineering, Boston University, Boston, MA USA.
The lung undergoes continuous remodeling throughout normal development and aging, including changes to alveolar and capillary structure and function. While histological methods allow for static analysis of these age-related changes, characterizing the changes that occur in response to mechanical stimuli remains difficult, particularly over a dynamic, physiologically relevant range in a functioning lung. Alveolar and capillary distension - the change in diameter of alveoli and capillaries, respectively, in response to pressure changes - is one such process, where dynamically controlling and monitoring the diameter of the same capillary or alveolus is essential to inferring its mechanical properties.
View Article and Find Full Text PDFFront Med (Lausanne)
August 2025
Department of Respiratory Medicine, Hospital of Chengdu University of Traditional Chinese Medicine, Chengdu, Sichuan, China.
Traditional studies of pulmonary fibrosis (PF) have focused on alveolar epithelial cells injury and abnormal myofibroblast aggregation, but recent studies have revealed that imbalances in pulmonary capillary homeostasis also play pivotal roles in this disease. The pulmonary microvasculature, composed of aerocyte capillary (aCap) and general capillary (gCap) endothelial cells, forms the core structure of the alveolar-capillary membrane. It performs key roles in gas exchange and nutrient/metabolite transport, while modulating the trafficking of inflammatory factors and immune cells and regulating alveolar damage repair.
View Article and Find Full Text PDFInt Immunopharmacol
September 2025
Department of Pharmacology and Toxicology, College of Pharmacy, Qassim University, Buraidah 51452, Saudi Arabia; Department of Clinical Pharmacology, Faculty of Medicine, Mansoura University, Mansoura 35516, Egypt. Electronic address:
This study introduces a novel dual-sensitive drug delivery system, gelatin-coated chitosan microparticles (GL-ChMPs), designed to enhance the lung targeting and therapeutic efficacy of semaglutide (SEM). GL-ChMPs were designed to respond to the acidic environment and metalloproteinases, conditions that are typical in pulmonary fibrosis. SEM-GL-ChMPs exhibited superior lung targeting and prolonged retention while minimizing systemic distribution.
View Article and Find Full Text PDFEcotoxicol Environ Saf
September 2025
School of Public Health, Anhui University of Science and Technology, Huainan, China; Key Laboratory of Industrial Dust Control and Occupational Health of the Ministry of Education, Anhui University of Science and Technology, Huainan, China; Key Laboratory of Industrial Dust Deep Reduction and Occupa
Pulmonary endothelial injury is a critical factor in the pathogenesis and progression of coal pneumoconiosis. However, the precise mechanisms underlying this injury remain poorly understood. To address this, we established a coal pneumoconiosis mouse model by chronic intranasal coal dust exposure over 9 months.
View Article and Find Full Text PDFJ Biomech Eng
September 2025
Department of Chemical and Biomolecular Engineering, University of Deleware, Newark, Delaware USA.
The beauty of the respiratory system is that it advects air from the mouth/nose to the deep lung, providing a substrate for the gas exchange needed for life. Due to the close interaction of structure and function, the lungs can deform under very small amounts of pressure. In addition, the lung serves as the first barrier of defense against inhaled toxins.
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