The identification of vascular networks is an important topic in the medical image analysis community. While most methods focus on single vessel tracking, the few solutions that exist for tracking complete vascular networks are usually computationally intensive and require a lot of user interaction. In this paper we present a method to track full vascular networks iteratively using a single starting point. Our approach is based on a cloud of sampling points distributed over concentric spherical layers. We also proposed a vessel model and a metric of how well a sample point fits this model. Then, we implement the network tracking as a min-cost flow problem, and propose a novel optimization scheme to iteratively track the vessel structure by inherently handling bifurcations and paths. The method was tested using both synthetic and real images. On the 9 different data-sets of synthetic blood vessels, we achieved maximum accuracies of more than 98%. We further use the synthetic data-set to analyze the sensibility of our method to parameter setting, showing the robustness of the proposed algorithm. For real images, we used coronary, carotid and pulmonary data to segment vascular structures and present the visual results. Still for real images, we present numerical and visual results for networks of nerve fibers in the olfactory system. Further visual results also show the potential of our approach for identifying vascular networks topologies. The presented method delivers good results for the several different datasets tested and have potential for segmenting vessel-like structures. Also, the topology information, inherently extracted, can be used for further analysis to computed aided diagnosis and surgical planning. Finally, the method's modular aspect holds potential for problem-oriented adjustments and improvements.
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http://dx.doi.org/10.1016/j.compmedimag.2015.11.002 | DOI Listing |
Mol Ther
December 2024
Centre for Cardiovascular Science, The Queen's Medical Research Institute, University of Edinburgh; Edinburgh EH16 4TJ, UK; CARIM school for cardiovascular sciences, Department of Pathology, Maastricht University Medical Center (MUMC); Maastricht 6229HX, The Netherlands. Electronic address:
Proliferation of vascular smooth muscle cells (vSMCs) is a crucial contributor to pathological vascular remodelling. MicroRNAs (miRNAs) are powerful gene regulators and attractive therapeutic agents. Here, we aim to systematically identify and characterise miRNAs with therapeutic potential in targeting vSMC proliferation.
View Article and Find Full Text PDFMethodist Debakey Cardiovasc J
December 2024
Nora Eccles Harrison Cardiovascular Research and Training Institute, University of Utah Health and School of Medicine, Salt Lake City, Utah, US.
This 61-minute webcast features a conversation about "Cardiac Recovery"-the focus of Issue 20.4. Led by the issue's editors, the discussion engages the authors on emerging themes and lessons learned while researching and writing the articles.
View Article and Find Full Text PDFMed J Armed Forces India
December 2024
Senior Medical Officer (Dermatology), Govt of NCT of Delhi, Bhagwan Mahavir Hospital, Pitampura, Delhi, India.
Background: Chronic venous insufficiency (CVI) causes cutaneous changes. This prospective observational study reveals dermoscopic findings in CVI.
Methods: Successive CVI patients of ≥18 years were included in the study.
Part Fibre Toxicol
December 2024
Division of Cardiology, David Geffen School of Medicine, University of California-Los Angeles, 10833 Le Conte Avenue, CHS 43-264, P.O. Box 951679, Los Angeles, CA, 90095, USA.
Background: Exposure to air pollution is associated with worldwide morbidity and mortality. Diesel exhaust (DE) emissions are important contributors which induce vascular inflammation and metabolic disturbances by unknown mechanisms. We aimed to determine molecular pathways activated by DE in the liver that could be responsible for its cardiometabolic toxicity.
View Article and Find Full Text PDFFront Neuroendocrinol
December 2024
Centre for Integrative Women's Health and Gender Medicine, Medical Faculty & University Hospital Leipzig, Germany; Department of Neurology, Max Planck Institute for Human Cognitive and Brain Sciences, Stephanstraße 1A, 04103 Leipzig, Germany; Max Planck School of Cognition, Stephanstraße 1A, 04103 Leipzig, Germany; Cognitive Neurology, University Medical Center Leipzig, Liebigstraße 16, 04103 Leipzig, Germany; Department of Endocrinology, Nephrology, Rheumatology, Division of Endocrinology, University Hospital Leipzig, Liebigstraße 20, 04103 Leipzig, Germany. Electronic address:
Estrogen fluctuations during the menstrual cycle, puberty, postpartum, or in the menopausal transition are associated with cognitive, affective, and behavioral effects. Additionally, estrogens are essential in hormonal contraception, menopausal hormone therapy, or gender-affirming hormone therapy. This systematic review summarizes findings on the role of estrogens for structure, function, and connectivity of human brain networks.
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