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Search results for: Argyrios Doumas
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text-center" style="font-size:1.6rem;">Search results for: Argyrios Doumas</h1> <div class="card paper-listing mb-3 mt-3"> <h5 class="card-header" style="font-size:.9rem"><span class="badge badge-info">3</span> Different Types of Amyloidosis Revealed with Positive Cardiac Scintigraphy with Tc-99M DPD-SPECT</h5> <div class="card-body"> <p class="card-text"><strong>Authors:</strong> <a href="https://publications.waset.org/abstracts/search?q=Ioannis%20Panagiotopoulos">Ioannis Panagiotopoulos</a>, <a href="https://publications.waset.org/abstracts/search?q=Efstathios%20Kastritis"> Efstathios Kastritis</a>, <a href="https://publications.waset.org/abstracts/search?q=Anastasia%20Katinioti"> Anastasia Katinioti</a>, <a href="https://publications.waset.org/abstracts/search?q=Georgios%20Efthymiadis"> Georgios Efthymiadis</a>, <a href="https://publications.waset.org/abstracts/search?q=Argyrios%20Doumas"> Argyrios Doumas</a>, <a href="https://publications.waset.org/abstracts/search?q=Maria%20Koutelou"> Maria Koutelou</a> </p> <p class="card-text"><strong>Abstract:</strong></p> Introduction: Transthyretin amyloidosis (ATTR) is a rare but serious infiltrative disease. Myocardial scintigraphy with DPD has emerged as the most effective, non-invasive, highly sensitive, and highly specific diagnostic method for cardiac ATTR amyloidosis. However, there are cases in which additional laboratory investigations reveal AL amyloidosis or other diseases despite a positive DPD scintigraphy. We describe the experience from the Onassis Cardiac Surgery Center and the monitoring center for infiltrative myocardial diseases of the cardiology clinic at AHEPA. Materials and Methods: All patients with clinical suspicion of cardiac or extracardiac amyloidosis undergo a myocardial scintigraphy scan with Tc-99m DPD. In this way, over 500 patients have been examined. Further diagnostic approach based on clinical and imaging findings includes laboratory investigation and invasive techniques (e.g., biopsy). Results: Out of 76 patients in total with positive myocardial scintigraphy Grade 2 or 3 according to the Perugini scale, 8 were proven to suffer from AL Amyloidosis during the investigation of paraproteinemia. Among these patients, 3 showed Grade 3 uptake, while the rest were graded as Grade 2, or 2 to 3. Additionally, one patient presented diffuse and unusual radiopharmaceutical uptake in soft tissues throughout the body without cardiac involvement. These findings raised suspicions, leading to the analysis of 魏 and 位 light chains in the serum, as well as immunostaining of proteins in the serum and urine of these specific patients. The final diagnosis was AL amyloidosis. Conclusion: The value of DPD scintigraphy in the diagnosis of cardiac amyloidosis from transthyretin is undisputed. However, positive myocardial scintigraphy with DPD should not automatically lead to the diagnosis of ATTR amyloidosis. Laboratory differentiation between ATTR and AL amyloidosis is crucial, as both prognosis and therapeutic strategy are dramatically altered. Laboratory exclusion of paraproteinemia is a necessary and essential step in the diagnostic algorithm of ATTR amyloidosis for all positive myocardial scintigraphy with diphosphonate tracers since >20% of patients with Grade 3 and 2 uptake may conceal AL amyloidosis. <p class="card-text"><strong>Keywords:</strong> <a href="https://publications.waset.org/abstracts/search?q=AL%20amyloidosis" title="AL amyloidosis">AL amyloidosis</a>, <a href="https://publications.waset.org/abstracts/search?q=amyloidosis" title=" amyloidosis"> amyloidosis</a>, <a href="https://publications.waset.org/abstracts/search?q=ATTR" title=" ATTR"> ATTR</a>, <a href="https://publications.waset.org/abstracts/search?q=myocardial%20scintigraphy" title=" myocardial scintigraphy"> myocardial scintigraphy</a>, <a href="https://publications.waset.org/abstracts/search?q=Tc-99m%20DPD" title=" Tc-99m DPD"> Tc-99m DPD</a> </p> <a href="https://publications.waset.org/abstracts/176715/different-types-of-amyloidosis-revealed-with-positive-cardiac-scintigraphy-with-tc-99m-dpd-spect" class="btn btn-primary btn-sm">Procedia</a> <a href="https://publications.waset.org/abstracts/176715.pdf" target="_blank" class="btn btn-primary btn-sm">PDF</a> <span class="bg-info text-light px-1 py-1 float-right rounded"> Downloads <span class="badge badge-light">81</span> </span> </div> </div> <div class="card paper-listing mb-3 mt-3"> <h5 class="card-header" style="font-size:.9rem"><span class="badge badge-info">2</span> Experience of Two Major Research Centers in the Diagnosis of Cardiac Amyloidosis from Transthyretin</h5> <div class="card-body"> <p class="card-text"><strong>Authors:</strong> <a href="https://publications.waset.org/abstracts/search?q=Ioannis%20Panagiotopoulos">Ioannis Panagiotopoulos</a>, <a href="https://publications.waset.org/abstracts/search?q=Aristidis%20Anastasakis"> Aristidis Anastasakis</a>, <a href="https://publications.waset.org/abstracts/search?q=Konstantinos%20Toutouzas"> Konstantinos Toutouzas</a>, <a href="https://publications.waset.org/abstracts/search?q=Ioannis%20Iakovou"> Ioannis Iakovou</a>, <a href="https://publications.waset.org/abstracts/search?q=Charalampos%20Vlachopoulos"> Charalampos Vlachopoulos</a>, <a href="https://publications.waset.org/abstracts/search?q=Vasilis%20Voudris"> Vasilis Voudris</a>, <a href="https://publications.waset.org/abstracts/search?q=Georgios%20Tziomalos"> Georgios Tziomalos</a>, <a href="https://publications.waset.org/abstracts/search?q=Konstantinos%20Tsioufis"> Konstantinos Tsioufis</a>, <a href="https://publications.waset.org/abstracts/search?q=Efstathios%20Kastritis"> Efstathios Kastritis</a>, <a href="https://publications.waset.org/abstracts/search?q=Alexandros%20Briassoulis"> Alexandros Briassoulis</a>, <a href="https://publications.waset.org/abstracts/search?q=Kimon%20Stamatelopoulos"> Kimon Stamatelopoulos</a>, <a href="https://publications.waset.org/abstracts/search?q=Alexios%20Antonopoulos"> Alexios Antonopoulos</a>, <a href="https://publications.waset.org/abstracts/search?q=Paraskevi%20Exadaktylou"> Paraskevi Exadaktylou</a>, <a href="https://publications.waset.org/abstracts/search?q=Evanthia%20Giannoula"> Evanthia Giannoula</a>, <a href="https://publications.waset.org/abstracts/search?q=Anastasia%20Katinioti"> Anastasia Katinioti</a>, <a href="https://publications.waset.org/abstracts/search?q=Maria%20Kalantzi"> Maria Kalantzi</a>, <a href="https://publications.waset.org/abstracts/search?q=Evangelos%20Leontiadis"> Evangelos Leontiadis</a>, <a href="https://publications.waset.org/abstracts/search?q=Eftychia%20Smparouni"> Eftychia Smparouni</a>, <a href="https://publications.waset.org/abstracts/search?q=Ioannis%20Malakos"> Ioannis Malakos</a>, <a href="https://publications.waset.org/abstracts/search?q=Nikolaos%20Aravanis"> Nikolaos Aravanis</a>, <a href="https://publications.waset.org/abstracts/search?q=Argyrios%20Doumas"> Argyrios Doumas</a>, <a href="https://publications.waset.org/abstracts/search?q=Maria%20Koutelou"> Maria Koutelou</a> </p> <p class="card-text"><strong>Abstract:</strong></p> Introduction: Cardiac amyloidosis from Transthyretin (ATTR-CA) is an infiltrative disease characterized by the deposition of pathological transthyretin complexes in the myocardium. This study describes the characteristics of patients diagnosed with ATTR-CA from 2019 until present at the Nuclear Medicine Department of Onassis Cardiac Surgery Center and AHEPA Hospital. These centers have extensive experience in amyloidosis and modern technological equipment for its diagnosis. Materials and Methods: Records of consecutive patients (N=73) diagnosed with any type of amyloidosis were collected, analyzed, and prospectively followed. The diagnosis of amyloidosis was made using specific myocardial scintigraphy with Tc-99m DPD. Demographic characteristics, including age, gender, marital status, height, and weight, were collected in a database. Clinical characteristics, such as amyloidosis type (ATTR and AL), serum biomarkers (BNP, troponin), electrocardiographic findings, ultrasound findings, NYHA class, aortic valve replacement, device implants, and medication history, were also collected. Some of the most significant results are presented. Results: A total of 73 cases (86% male) were diagnosed with amyloidosis over four years. The mean age at diagnosis was 82 years, and the main symptom was dyspnea. Most patients suffered from ATTR-CA (65 vs. 8 with AL). Out of all the ATTR-CA patients, 61 were diagnosed with wild-type and 2 with two rare mutations. Twenty-eight patients had systemic amyloidosis with extracardiac involvement, and 32 patients had a history of bilateral carpal tunnel syndrome. Four patients had already developed polyneuropathy, and the diagnosis was confirmed by DPD scintigraphy, which is known for its high sensitivity. Among patients with isolated cardiac involvement, only 6 had left ventricular ejection fraction below 40%. The majority of ATTR patients underwent tafamidis treatment immediately after diagnosis. Conclusion: In conclusion, the experiences shared by the two centers and the continuous exchange of information provide valuable insights into the diagnosis and management of cardiac amyloidosis. Clinical suspicion of amyloidosis and early diagnostic approach are crucial, given the availability of non-invasive techniques. Cardiac scintigraphy with DPD can confirm the presence of the disease without the need for a biopsy. The ultimate goal still remains continuous education and awareness of clinical cardiologists so that this systemic and treatable disease can be diagnosed and certified promptly and treatment can begin as soon as possible. <p class="card-text"><strong>Keywords:</strong> <a href="https://publications.waset.org/abstracts/search?q=amyloidosis" title="amyloidosis">amyloidosis</a>, <a href="https://publications.waset.org/abstracts/search?q=diagnosis" title=" diagnosis"> diagnosis</a>, <a href="https://publications.waset.org/abstracts/search?q=myocardial%20scintigraphy" title=" myocardial scintigraphy"> myocardial scintigraphy</a>, <a href="https://publications.waset.org/abstracts/search?q=Tc-99m%20DPD" title=" Tc-99m DPD"> Tc-99m DPD</a>, <a href="https://publications.waset.org/abstracts/search?q=transthyretin" title=" transthyretin"> transthyretin</a> </p> <a href="https://publications.waset.org/abstracts/176716/experience-of-two-major-research-centers-in-the-diagnosis-of-cardiac-amyloidosis-from-transthyretin" class="btn btn-primary btn-sm">Procedia</a> <a href="https://publications.waset.org/abstracts/176716.pdf" target="_blank" class="btn btn-primary btn-sm">PDF</a> <span class="bg-info text-light px-1 py-1 float-right rounded"> Downloads <span class="badge badge-light">91</span> </span> </div> </div> <div class="card paper-listing mb-3 mt-3"> <h5 class="card-header" style="font-size:.9rem"><span class="badge badge-info">1</span> ARGO: An Open Designed Unmanned Surface Vehicle Mapping Autonomous Platform</h5> <div class="card-body"> <p class="card-text"><strong>Authors:</strong> <a href="https://publications.waset.org/abstracts/search?q=Papakonstantinou%20Apostolos">Papakonstantinou Apostolos</a>, <a href="https://publications.waset.org/abstracts/search?q=Argyrios%20Moustakas"> Argyrios Moustakas</a>, <a href="https://publications.waset.org/abstracts/search?q=Panagiotis%20Zervos"> Panagiotis Zervos</a>, <a href="https://publications.waset.org/abstracts/search?q=Dimitrios%20Stefanakis"> Dimitrios Stefanakis</a>, <a href="https://publications.waset.org/abstracts/search?q=Manolis%20Tsapakis"> Manolis Tsapakis</a>, <a href="https://publications.waset.org/abstracts/search?q=Nektarios%20Spyridakis"> Nektarios Spyridakis</a>, <a href="https://publications.waset.org/abstracts/search?q=Mary%20Paspaliari"> Mary Paspaliari</a>, <a href="https://publications.waset.org/abstracts/search?q=Christos%20Kontos"> Christos Kontos</a>, <a href="https://publications.waset.org/abstracts/search?q=Antonis%20Legakis"> Antonis Legakis</a>, <a href="https://publications.waset.org/abstracts/search?q=Sarantis%20Houzouris"> Sarantis Houzouris</a>, <a href="https://publications.waset.org/abstracts/search?q=Konstantinos%20Topouzelis"> Konstantinos Topouzelis</a> </p> <p class="card-text"><strong>Abstract:</strong></p> For years unmanned and remotely operated robots have been used as tools in industry research and education. The rapid development and miniaturization of sensors that can be attached to remotely operated vehicles in recent years allowed industry leaders and researchers to utilize them as an affordable means for data acquisition in air, land, and sea. Despite the recent developments in the ground and unmanned airborne vehicles, a small number of Unmanned Surface Vehicle (USV) platforms are targeted for mapping and monitoring environmental parameters for research and industry purposes. The ARGO project is developed an open-design USV equipped with multi-level control hardware architecture and state-of-the-art sensors and payloads for the autonomous monitoring of environmental parameters in large sea areas. The proposed USV is a catamaran-type USV controlled over a wireless radio link (5G) for long-range mapping capabilities and control for a ground-based control station. The ARGO USV has a propulsion control using 2x fully redundant electric trolling motors with active vector thrust for omnidirectional movement, navigation with opensource autopilot system with high accuracy GNSS device, and communication with the 2.4Ghz digital link able to provide 20km of Line of Sight (Los) range distance. The 3-meter dual hull design and composite structure offer well above 80kg of usable payload capacity. Furthermore, sun and friction energy harvesting methods provide clean energy to the propulsion system. The design is highly modular, where each component or payload can be replaced or modified according to the desired task (industrial or research). The system can be equipped with Multiparameter Sonde, measuring up to 20 water parameters simultaneously, such as conductivity, salinity, turbidity, dissolved oxygen, etc. Furthermore, a high-end multibeam echo sounder can be installed in a specific boat datum for shallow water high-resolution seabed mapping. The system is designed to operate in the Aegean Sea. The developed USV is planned to be utilized as a system for autonomous data acquisition, mapping, and monitoring bathymetry and various environmental parameters. ARGO USV can operate in small or large ports with high maneuverability and endurance to map large geographical extends at sea. The system presents state of the art solutions in the following areas i) the on-board/real-time data processing/analysis capabilities, ii) the energy-independent and environmentally friendly platform entirely made using the latest aeronautical and marine materials, iii) the integration of advanced technology sensors, all in one system (photogrammetric and radiometric footprint, as well as its connection with various environmental and inertial sensors) and iv) the information management application. The ARGO web-based application enables the system to depict the results of the data acquisition process in near real-time. All the recorded environmental variables and indices are presented, allowing users to remotely access all the raw and processed information using the implemented web-based GIS application. <p class="card-text"><strong>Keywords:</strong> <a href="https://publications.waset.org/abstracts/search?q=monitor%20marine%20environment" title="monitor marine environment">monitor marine environment</a>, <a href="https://publications.waset.org/abstracts/search?q=unmanned%20surface%20vehicle" title=" unmanned surface vehicle"> unmanned surface vehicle</a>, <a href="https://publications.waset.org/abstracts/search?q=mapping%20bythometry" title=" mapping bythometry"> mapping bythometry</a>, <a href="https://publications.waset.org/abstracts/search?q=sea%20environmental%20monitoring" title=" sea environmental monitoring"> sea environmental monitoring</a> </p> <a href="https://publications.waset.org/abstracts/157441/argo-an-open-designed-unmanned-surface-vehicle-mapping-autonomous-platform" class="btn 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