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Introduction to the Program
Conviértete en un gran experto en Medicine aplicada a la Pediatría y observa cómo tu prestigio profesional aumenta de forma inmediata”
Hay grupos de la población que son especialmente vulnerables. Los niños son uno de ellos y, por esa razón, cada vez se exploran más vías para poder darles tratamientos y diagnósticos adecuados. Uno de los nuevos caminos seguidos para alcanzar este objetivo es la Medicina Nuclear, que ofrece la posibilidad de detectar con gran precisión numerosas patologías y aportar la solución correspondiente.
De este modo, esta área es una de las más demandas en la actualidad en la medicina, ya que es una disciplina innovadora capaz de dar respuesta a distintas afecciones que pueden atacar a la infancia. Así, esta Postgraduate diploma en Nuclear Medicine in Pediatrics es la mejor forma de poder brindar a los pacientes nuevos tratamientos, consiguiendo un avance profesional significativo gracias a lo aprendido en esta titulación.
A lo largo de este programa, los alumnos podrán profundizar en diferentes aspectos de esta área aplicada a pacientes pediátricos, como los estudios gammagráficos y los trazadores PET, entre muchos otros. Y lo lograrán gracias al innovador método de aprendizaje 100% online de TECH, que se centra en la práctica y ofrece a los estudiantes la posibilidad de instruirse a través del análisis de casos clínicos.
Además, este Experto Universitario contará con un Director Invitado Internacional que aportará a su claustro docente una visión holística de los principales avances de la Medicina Nuclear en todo el mundo. Este especialista ahondará en estas innovaciones mediante unas exclusivas y rigurosísimas Masterclasses: las mejores del panorama académico online.
Matricúlate y avanza en tu carrera médica gracias a los exhaustivos contenidos que abordará un reconocido Director Invitado Internacional en esta exclusiva titulación universitaria”
Esta Postgraduate diploma en Nuclear Medicine in Pediatrics contiene el programa universitario más completo y actualizado del mercado. Sus características más destacadas son:
- El desarrollo de casos prácticos presentados por expertos en Medicina Nuclear y pediatría
- Los contenidos gráficos, esquemáticos y eminentemente prácticos con los que está concebido recogen una información científica y práctica sobre aquellas disciplinas indispensables para el ejercicio profesional
- Los ejercicios prácticos donde realizar el proceso de autoevaluación para mejorar el aprendizaje
- Su especial hincapié en metodologías innovadoras
- Las lecciones teóricas, preguntas al experto, foros de discusión de temas controvertidos y trabajos de reflexión individual
- La disponibilidad de acceso a los contenidos desde cualquier dispositivo fijo o portátil con conexión a internet
El camino para seguir siendo un profesional relevante es actualizar los conocimientos. Con esta Postgraduate diploma lo conseguirás”
El programa incluye, en su cuadro docente, a profesionales del sector que vierten en esta capacitación la experiencia de su trabajo, además de reconocidos especialistas de sociedades de referencia y universidades de prestigio.
Su contenido multimedia, elaborado con la última tecnología educativa, permitirá al profesional un aprendizaje situado y contextual, es decir, un entorno simulado que proporcionará una capacitación inmersiva programada para entrenarse ante situaciones reales.
El diseño de este programa se centra en el Aprendizaje Basado en Problemas, mediante el cual el profesional deberá tratar de resolver las distintas situaciones de práctica profesional que se le planteen a lo largo del curso académico. Para ello, contará con la ayuda de un novedoso sistema de vídeo interactivo realizado por reconocidos expertos.
La Medicine nuclear es el presente y el futuro. Especialízate y avanza profesionalmente”
Aplica la Medicine nuclear a la pediatría y mejora los tratamientos de tus pacientes”
Syllabus
This Postgraduate diploma in Nuclear Medicine in Pediatrics is composed of 3 modules, through which students will learn all about the application of Nuclear Medicine in pediatric patients. These are very sensitive subjects but they can improve the lives of many people, so it is an area that can bring great prestige to the professional. Therefore, completing this qualification can be a huge boost to your reputation.
This syllabus has been specially designed for you to become the leading expert in Nuclear Medicine applied to Pediatrics"
Module 1. Nuclear Medicine in Pediatrics
1.1. Pediatric Nuclear Medicine
1.1.1. Management of the Child in Nuclear Medicine: Information to Parents and/or Guardians, Preparation and Scheduling, Appropriate Environments
1.1.2. Dose Optimization
1.1.3. Sedation and Anaesthesia
1.1.4. Physical Aspects in Pediatric Patients: Image Acquisition and Processing
1.2. PET/PET-CT/PET-MRI in Pediatric and Young Adult Patients
1.2.1. Protocol Optimization
1.2.2. Indications
1.2.3. Non-FDG Tracers
1.3. Central Nervous System/LCR
1.3.1. Brain Maturation Patterns
1.3.2. Epilepsy and Vascular Disorders
1.3.3. Brain Tumors
1.3.4. Hydrocephalus and Cerebrospinal Fluid Fistula
1.4. Endocrine
1.4.1. Thyroid Pathology: Hypothyroidism, Hyperthyroidism, Thyroid Nodule
1.4.2. Hyperinsulinism
1.5. Cardiopulmonary
1.5.1. Congenital Heart Disease: Shunt Right-Left, Shunt Left-Right
1.5.2. Bronchopulmonary Pathology: Congenital and Acquired
1.6. Gastrointestinal System
1.6.1. Dynamic Esophagogastric Studies
1.6.2. Gastroesophageal Reflux, Bronchopulmonary Aspiration
1.6.3. Hepatobiliary Gammagraphy: Biliary Tract Atresia
1.6.4. Intestinal Bleeding: Mekel's Diverticulum, Intestinal Duplication
1.7. Nephrourology
1.7.1. Hydronephrosis Assessment
1.7.2. Renal Cortical Assessment: in Infections, Ectopy
1.7.3. Vesicoureteral Reflux: Diagnosis and Monitoring
1.7.4. Others: Renal Malformations, Renal Transplantation, Kidney Transplantation
1.8. Osteoarticular System
1.8.1. Benign Lesions in Pediatric Patients: Fractures, Tumors
1.8.2. Avascular Necrosis: Perthes' Disease and Others
1.8.3. Sympathetic - Reflex Dystrophy
1.8.4. Low Back Pain
1.8.5. Infection: Osteomyelitis, Spondylodiscitis
1.9. Neuroblastoma
1.9.1. Diagnostic Studies: Bone Scintigraphy, MIBG and other PET Radiotracers
1.9.2. Radiometabolic Treatment: MIBG, 177Lu-DOTATATE
1.10. Other Tumours
1.10.1. Osteosarcoma: Diagnosis, Response Assessment and Monitoring
1.10.2. Bone Tracers and 18F-FDG-PET/CT PET/CT Study
1.10.3. Ewing's Disease: Diagnosis, Response Assessment and Monitoring
1.10.4. Bone Tracers and 18F-FDG-PET/CT Study
1.10.5. Lymphoma: 18F-FDG PET/CT in Diagnosis, Response Assessment, Monitoring
1.10.6. Rhabdomyosarcoma and Soft Tissue Sarcomas: 18F-FDG PET/CT in Diagnosis, Response Assessment and Monitoring
Module 2. Infection/Inflammation: Gammagraphic Studies and PET Tracers
2.1. Osteoarticular
2.1.1. Osteomyelitis: Previously Healthy Bone, Diabetic Patient, Spine Surgery
2.1.2. Prosthesis: Septic vs. Aseptic Mobilization
2.2. Cardiac
2.2.1. Endocarditis: Native Valve, Prosthetic Valve
2.2.2. Myocarditis: Infectious vs. Inflammatory
2.2.3. Intracardiac Devices
2.3. Vascular
2.3.1. Inflammatory Vasculitis
2.3.2. Prosthetic Graft Infection
2.4. Encephalitis: PET-FDG Study
2.4.1. Paraneoplastic
2.4.2. Infectious: Patterns and Differential Diagnosis
2.5. Fever of Unknown Origin
2.5.1. Immunosuppressed Patients
2.5.2. Postoperative Fever and Recurrent Sepsis
2.6. Systemic Disease
2.6.1. Sarcoidosis: Diagnosis, Extent and Response to Treatment
2.6.2. Ig4-related Disease
2.7. Other Locations
2.7.1. Hepatorenal Polycystic Kidney Disease: Localization of the Infectious Focus
2.7.2. Hepatobiliary: Post-surgical Patient
2.8. Covid-19
2.8.1. Nuclear Medicine Studies in Acute Phase: Pulmonary Inflammation, Pulmonary Thromboembolism, Oncology Patient and Covid-19
2.8.2. Utility of Nuclear Medicine in Postcovid Pathology: Pulmonary, Systemic
2.8.3. Organizational Changes in a Pandemic Situation
Module 3. The Nuclear Medicine
3.1. Physical Bases of Ionizing Radiations
3.1.1. Ionizing Radiation and Radioactive Isotopes
3.1.2. Types of Radiation
3.2. Biological Effects of Ionizing Radiations
3.2.1. Classification of Effects according to: Time of Cccurrence
3.2.2. Biological and Dose Dependent Effect
3.2.3. Interaction of Ionizing Radiation with Matter
3.2.4. Ionizing Radiation-Cell Interaction: Characteristics, Direct and Non-Direct Effects
3.2.5. Radiosensitivity
3.2.6. Adaptive Response
3.3. Radiopharmaceuticals
3.3.1. The Radiopharmaceutical
3.3.2. Conventional Diagnostic Radiopharmaceuticals
3.3.3. Radionuclide Generators
3.3.4. Localization Mechanisms
3.3.5. Positron Emission Tomography Radiopharmaceuticals
3.3.6. Synthesis Scheme
3.3.7. Metabolic Pathway Substrates
3.3.8. Radiopharmaceuticals with Therapeutic Effect
3.3.8.1. Characteristics that Must be Met
3.3.8.2. Design and Approval
3.4. Radiopharmacy
3.4.1. Regulatory Framework
3.4.2. Operation
3.4.3. Quality Control
3.5. Image Acquisition and Processing
3.5.1. Planar Image
3.5.2. Components
3.5.3. Performance: Resolution and Sensitivity
3.5.4. Acquisition Modes: Static, Dynamic, Synchronized
3.5.5. Reconstruction
3.5.6. Single Photon Tomography (SPECT)
3.5.7. Acquisition
3.5.8. Reconstruction
3.5.9. Positron Emission Tomography (PET)
3.5.10. Components
3.5.11. Acquisition of Data
3.5.12. Operating Parameters
3.6. Quantification Techniques: Basis
3.6.1. In Cardiology
3.6.2. In Neurology
3.6.3. Metabolic Parameters
3.6.4. The Image of TC
3.7. Image Generation
3.7.1. Acquisition and Reconstruction Parameters
3.7.2. Protocols and Contrast Media
3.7.3. Head and Neck
3.7.4. Thorax: Cardiology, Lung
3.7.5. Abdomen: General, Liver, Renal
3.8. The Image of RM
3.8.1. Resonance Phenomenon
3.8.2. Tissue Contrast: Sequence Knowledge
3.8.3. Diffusion
3.8.4. Paramagnetic Contrasts
3.9. The Multimodality Image
3.9.1. SPECT/TC
3.9.2. PET/TC
3.9.3. PET/RM
3.10. Radioprotection
3.10.1. The Radioprotection
3.10.2. Special Situations: Pediatrics, Pregnancy and Lactation
3.10.3. Regulatory Framework: Implementation
3.10.4. Dosimetry
You will be one of the most respected physicians in the service when you complete this qualification"
Postgraduate Diploma in Nuclear Medicine in Pediatrics
Nuclear medicine is a medical specialty that uses small amounts of radioactive substances to diagnose and treat various diseases. In the case of pediatric nuclear medicine, it focuses on the study and treatment of specific conditions in children and adolescents. If you want to specialize in this exciting field of medicine, the Postgraduate Diploma in Nuclear Medicine in Pediatrics from TECH Global University is the ideal choice. This online program will provide you with the knowledge and skills necessary to understand the fundamental principles of nuclear medicine as applied to pediatrics. You will learn about the different techniques and procedures used in the diagnosis and treatment of pediatric diseases, as well as the special considerations that must be taken into account when treating children and adolescents. Throughout the Postgraduate Certificate, you will explore topics such as molecular imaging in pediatrics, interpretation of nuclear medicine studies, indications and contraindications in performing nuclear studies in children, and safe administration of radiotracers in pediatrics. You will also learn about the latest technologies and advances in the field of nuclear medicine applied to pediatrics. This program is intended for physicians specializing in pediatrics, radiology, nuclear medicine and other related medical disciplines, as well as residents and medical students interested in acquiring advanced knowledge in nuclear medicine in the pediatric setting. It is also suitable for health professionals working in nuclear medicine centers who wish to broaden their expertise in the care of pediatric patients.
Be among the best professionals specialized in Pediatric Nuclear Medicine.
Upon completion of the Postgraduate Diploma in Nuclear Medicine in Pediatrics, you will be prepared to apply the knowledge and techniques of nuclear medicine in the diagnosis and treatment of pediatric diseases. You will be able to work in hospitals, clinics and specialized centers, providing quality medical care to children and adolescents who require evaluation and follow-up through nuclear studies.