Publications by authors named "Coletti F"

Article Synopsis
  • Athletes often show changes in their electrocardiograms (ECGs) due to heart adaptations from regular training, known as the athlete's heart, but these changes can sometimes mimic heart disease signs.
  • Misdiagnosis can lead to serious consequences, including sudden cardiac death, which is a major risk for young athletes.
  • This review aims to help cardiologists and sports doctors differentiate between normal exercise-related ECG changes and those indicating potential heart problems, guiding further investigations when needed.
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As the general population ages, the incidence of degenerative mitral stenosis (MS) among patients has increased. Percutaneous mitral valvuloplasty (PMV) has emerged as a well-established option for mitral rheumatic stenosis with specific characteristics. However, a blank therapeutic space must be filled with the treatment options for degenerative or rheumatic mitral stenosis in patients with many comorbidities and contraindication for valvuloplasty.

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Article Synopsis
  • Athletes often face interruptions in training due to injuries, such as a knee injury, and advanced testing methods like echocardiography and cardiopulmonary exercise testing (CPET) can help evaluate their heart and lung functions during recovery.
  • The study involved 28 non-professional athletes with knee issues undergoing pre-surgery assessments, measuring factors like heart strain and oxygen consumption, revealing specific correlations between their physical activity and cardiac efficiency.
  • Despite being less active due to injury, athletes can still achieve maximal CPET results; however, decreased heart and lung performance may contribute to, or result from, their injuries, indicating a need for careful functional evaluation before surgery.
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Dyslipidemia is the most frequent cardiovascular (CV) risk factor in able-bodied athletes and is frequently undertreated, resulting in an underestimated risk of atherosclerosis-related diseases. Data on lipid profile in Paralympic athletes are lacking. Our study aimed to identify the prevalence of dyslipidemia and the influence of disability type and sporting discipline in Paralympic athletes.

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Article Synopsis
  • Coronary chronic total occlusions (CTOs) are common challenges in percutaneous coronary interventions (PCI), making them a significant focus in clinical settings.
  • Despite mixed results from randomized trials on the benefits of recanalizing CTOs, the number of these procedures has notably increased due to advancements in techniques and training.
  • This review aims to summarize the clinical outcomes, technical aspects, and safety concerns related to CTO revascularization to assist clinicians in their daily cath-lab practices.
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Spinal cord stimulation is an effective treatment for those experiencing chronic back and leg pain but requires a temporary evaluation period (SCSeval) before permanent implantation. We present real-world data from 7,000 patients who underwent SCSeval while utilizing a mobile digital health platform for education, feedback, and outcomes collection during their surgical journey. We analyzed preoperative patient demographics, characterized patient pain profiles using the patient-reported outcomes measurement information system-29 surveys, and calculated the rates of conversion from temporary to permanent spinal cord stimulation (SCS) implantation.

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Atherosclerosis is the leading cause of death worldwide, especially in patients with type 2 diabetes mellitus (T2D). GLP-1 receptor agonists and DPP-4 inhibitors were demonstrated to play a markedly protective role for the cardiovascular system beyond their glycemic control. Several cardiovascular outcome trials (CVOT) reported the association between using these agents and a significant reduction in cardiovascular events in patients with T2D and a high cardiovascular risk profile.

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Article Synopsis
  • Regular training in athletes leads to important cardiovascular changes that improve oxygen delivery during exercise.
  • Cardiopulmonary exercise testing (CPET) is a key method for assessing athletic performance, offering detailed insights into cardiovascular responses and efficiency.
  • This review discusses how CPET can differentiate normal athlete adaptations from potential early signs of cardiomyopathy, helping to identify health risks in competitive athletes.
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Article Synopsis
  • Coronary artery disease (CAD) is a major global health issue, and revascularization via percutaneous coronary interventions (PCI) can improve patient survival rates.
  • Poor glycaemic control is linked to higher complications and worse outcomes during and after these procedures, regardless of whether the patient has diabetes.
  • New antidiabetic medications are changing how we treat diabetes in patients with cardiovascular issues, but there is a lack of extensive research on their effects during PCI; this review explores their mechanisms, current evidence, and interactions with antiplatelet drugs.
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The process of an intracranial aneurysm development, growth, and rupture is multifaceted and complex. In addition, clinical observations have identified the potential of thrombus formation within such aneurysms. While the underlying mechanism is not fully understood, the thrombi represent a potential risk factor for ischemic stroke.

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A double-walled stent-graft (DWSG) design with a compressible gas layer was conceived with the goal of treating hypertension in patients receiving an aortic stent-graft. Early prototypes were developed to evaluate the design concept through static measurements from a finite element (FE) model and quasi-static inflation experiments, and through dynamic measurements from an in vitro flow loop and the three-element Windkessel model. The amount of gas in the gas layer and the properties of the flexible inner wall were the primary variables evaluated in this study.

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Vesuvius eruption that destroyed Pompeii in AD 79 represents one of the most important events in history. The cataclysm left behind an abundance of archeological evidence representing a fundamental source of the knowledge we have about ancient Roman material culture and technology. A great number of textiles have been preserved, rarely maintaining traces of their original color, since they are mainly in the mineralized and carbonized state.

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Exposure of lung airways to detrimental suspended aerosols in the environment increases the vulnerability of the respiratory and cardiovascular systems. In addition, recent developments in therapeutic inhalation devices magnify the importance of particle transport. In this manuscript, particle transport and deposition patterns in the upper tracheobronchial (TB) tree were studied where the inertial forces are considerable for microparticles.

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We investigate respiratory flow phenomena in a reconstructed upper airway model of an intubated neonate undergoing invasive mechanical ventilation, spanning conventional to high-frequency ventilation (HFV) modes. Using high-speed tomographic particle image velocimetry, we resolve transient, three-dimensional flow fields and observe a persistent jet flow exiting the endotracheal tube whose strength is directly modulated according to the ventilation protocol. We identify this synthetic jet as the dominating signature of convective flow under intubated ventilation.

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Particle transport in lung airways can induce respiratory disease and play a vital role in aerosol drug delivery. Herein, we present dynamical systems features that influence airflow and particle transport in the tracheobronchial trees. Computational fluid dynamics (CFD) was used to solve for unsteady airflow in a patient-specific model.

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To reach a predictive understanding of how particles travel through bifurcating vessels is of paramount importance in many biomedical settings, including embolization, thromboembolism, and drug delivery. Here we utilize an in vitro model in which solid particles are injected through a rigid vessel that symmetrically bifurcates in successive branching generations. The geometric proportion and fluid dynamics parameters are relevant to the liver embolization.

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This study explores the optimal left ventricular assist device (LVAD) cannula outflow configuration in a patient-specific replica of the aorta. The volumetric velocity field is measured using phase-contrast magnetic resonance imaging (PC-MRI) under a physiologically relevant steady flow. The effect of the LVAD outflow graft insertion site and anastomosis angle on the transport of embolic particles to cranial vessels is studied by solving the particle equation of motion for spheres in the range of 0.

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Experimental and computational data suggest that hemodynamics play a critical role in the development, growth, and rupture of cerebral aneurysms. The flow structure, especially in aneurysms with a large sac, is highly complex and three-dimensional. Therefore, volumetric and time-resolved measurements of the flow properties are crucial to fully characterize the hemodynamics.

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Background: Chronic Obstructive Pulmonary Disease (COPD) is among the leading causes of death worldwide. Inhaled pollutants are the prime risk factor, but the pathogenesis and progression of the diseased is poorly understood. Most studies on the disease onset and trajectory have focused on genetic and molecular biomarkers.

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The accurate representation of the human airway anatomy is crucial for understanding and modeling the structure-function relationship in both healthy and diseased lungs. The present knowledge in this area is based on morphometric studies of excised lung casts, partially complemented by in vivo studies in which computed tomography (CT) was used on a small number of subjects. In the present study, we analyzed CT scans of a cohort of healthy subjects and obtained comprehensive morphometric information down to the seventh generation of bronchial branching, including airway diameter, length, branching angle, and rotation angle.

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Voltammetry of microparticles (VMP) and electrochemical impedance spectroscopy (EIS) techniques, complemented by SEM-EDX and Raman spectroscopy, were applied to a set of 15 Roman bronze coins and one Tessera from the temple of Magna Mater (Rome, Italy). The archaeological site, dated back between the second half and the end of the 4th century A.D.

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Objectives: To compare cortical (AL-C) and corticocancellous (AL-CC) fresh-frozen block bone allografts to cortical block bone autografts (AT) used for lateral ridge augmentation in terms of radiographic dimensional maintenance and histomorphometrical graft remodeling.

Materials And Methods: Twenty-four patients, requiring ridge augmentation in the anterior maxilla prior to implant placement, were treated with AT, AL-C or AL-CC bone blocks (eight patients per graft type). Patients were examined with CBCT prior to, 14 days, and 6-8 months after grafting.

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Objectives: To compare autogenous bone (AT) and fresh-frozen allogeneic bone (AL) in terms of histomorphometrical graft incorporation and implant osseointegration after grafting for lateral ridge augmentation in humans.

Materials And Methods: Thirty-four patients were treated with either AL (20 patients) or AT (14 patients) onlay grafts. During implant installation surgery 6 months after grafting, cylindrical biopsies were harvested perpendicularly to the lateral aspect of the augmented alveolar ridge.

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The archaeological investigation carried out from 2003 in the Castellaccio locality, undertaken to realize the "Europarco" town planning, brought to light a part ofa road dated to the roman age, identified as the ancient via Laurentina. The road is oriented N/NE-S/SW, is 400 metres long and cross with a bridge the Fosso dell'Acqua Acetosa. Two buildings run alongside this trait of the ancient Laurentina: one can be interpreted as a rural structure, the other one as a mansio.

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