University certificate
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Introduction to the Program
Accede al contenido más actualizado sobre usabilidad e interfaces en el contexto intrahospitalario, así como los distintos procesos de interacción en la tecnología sanitaria de vanguardia”
A la hora de diseñar y crear diferentes tipos de maquinarias de uso médico, es imprescindible que haya una colaboración intrínseca entre ingenieros y facultativos en esta labor. Las interfaces persona-máquina no solo deben ser claras, sino que también deben mostrar y recoger la información adecuada.
Por ello, este Postgraduate certificate hace hincapié en los factores humanos y tecnológicos a tener en cuenta las diferentes fases del diseño, prototipado y evaluación o los principios de la experiencia de usuario fundamentales a tener en cuenta, entre otros temas de especial interés para todo ingeniero que busque una actualización exhaustiva y a la vez concisa sobre el tema.
Todo ello con el característico formato 100% online de TECH, lo que permite al profesional descargar todo el material didáctico desde el primer día de la titulación. Esto implica que no existen ni clases presenciales ni horarios prefijados, obteniendo una libertad total para adaptar la carga lectiva a las propias responsabilidades tanto personales como profesionales. Además, un reconocido Director Invitado Internacional impartirá una minuciosa Masterclass que permitirá a los egresados incorporar a su praxis diaria las últimas tendencias en el Diseño y Creación de Interfaz Persona-Máquina.
Un prestigioso Director Invitado Internacional brindará una exhaustiva Masterclass sobre avances en materia de biochips, implantes electrónicos e interfaces cerebro-ordenador"
Este Postgraduate certificate en Design and Creation of Human-Machine Interfaces in Biomedical Engineering contiene el programa educativo más completo y actualizado del mercado. Sus características más destacadas son:
- El desarrollo de casos prácticos presentados por expertos en Ingeniería Biomédica
- 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
Accederás al temario más completo, que abarca desde las interfaces en UCI o circunstancias extremas a las diferentes reglas del diseño específicas de la Ingeniería Biomédica”
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.
No tendrás que adaptarte a ningún horario. Tú decides cuando, como y donde estudiar”
Contarás con el respaldo de la mayor institución académica online del mundo, TECH”
Syllabus
In order to provide the engineer with the most up-to-date information, the contents and structure of this Postgraduate certificate have been created to be clear and accessible. Units such as human-machine interface or interface design have been further divided into different sub-units. This facilitates both the organization of the teaching load and the subsequent consultation of all the downloaded material.
You will find a good amount of complementary reading for each unit, which will further reinforce your knowledge of each subject"
Module 1. Human-Machine Interface Applied to Biomedical Engineering
1.1. Human-Machine Interface
1.1.1. Human-Machine Interface
1.1.2. Model, System, User, Interface and Interaction
1.1.3. Interface, Interaction and Experience
1.2. Human-Machine Interaction
1.2.1. Human-Machine Interaction
1.2.2. Principles and Laws of Interaction Design
1.2.3. Human Factors
1.2.3.1. Importance of the Human Factor in the Interaction Process
1.2.3.2. Psychological-Cognitive Perspective: Information Processing, Cognitive Architecture, User Perception, Memory, Cognitive Ergonomics and Mental Models
1.2.4. Technological Factors
1.2.5. Principles of Interaction: Levels and Styles of Interaction
1.2.6. At the Forefront of Interaction
1.3. Interface Design (I): The Design Process
1.3.1. Design Process
1.3.2. Value Proposition and Differentiation
1.3.3. Requirements Analysis and Briefing
1.3.4. Collection, Analysis and Interpretation of Information
1.3.5. The Importance of UX and UI in the Design Process
1.4. Interface Design (II): Prototyping and Evaluation
1.4.1. Interface Prototyping and Evaluation
1.4.2. Methods for the Conceptual Design Process
1.4.3. Techniques for Idea Organization
1.4.4. Prototyping Tools and Process
1.4.5. Evaluation Methods
1.4.6. Evaluation Methods with Users: Interaction Diagrams, Modular Design, Heuristic Evaluation
1.4.7. User-Free Evaluation Methods: Surveys and Interviews, Card Sorting, A/B Testing and Design of Experiments
1.4.8. Applicable ISO Norms and Standards
1.5. User Interfaces (I): Interaction Methods in Technologies
1.5.1. User Interface (UI)
1.5.2. Classical User Interfaces: Graphical User Interfaces (GUIs), Web, Touch, Voice, etc
1.5.3. Human Interfaces and Limitations: Visual, Hearing, Motor and Cognitive Diversity
1.5.4. Innovative User Interfaces: Virtual Reality, Augmented Reality
1.6. User Interfaces (II): Interaction Design
1.6.1. The Importance of Graphic Design
1.6.2. Design Theory
1.6.3. Design Rules: Morphological Elements, Wireframes, Use and Theory of Color, Graphic Design Techniques, Iconography, Typography
1.6.4. Semiotics Applied to Interfaces
1.7. User Experience (I): Methodologies and Design Fundamentals
1.7.1. User Experience (UX)
1.7.2. Evolution of Usability Effort-to-Benefit Ratio
1.7.3. Perception, Cognition and Communication
1.7.3.1. Mental Models
1.7.4. User Focused Design Methodology
1.7.5. Methodology of Design Thinking
1.8. The User Experience (II): User Experience Principles
1.8.1. UX Principles
1.8.2. UX Hierarchy: Strategy, Scope, Structure, Skeleton and Visual Component
1.8.3. Usability and Accessibility
1.8.4. Information Architecture: Classification, Labeling, Navigation, and Search Systems
1.8.5. Affordances & Signifiers
1.8.6. Heuristics: Heuristics of Understanding, Interaction and Feedback
1.9. Interfaces in the Field of Biomedicine (I): The Interaction of the Healthcare Worker
1.9.1. Usability in the Intrahospital Context
1.9.2. Interaction Processes in Healthcare Technology
1.9.3. Healthcare Provider and Patient Perception
1.9.4. Healthcare Ecosystem: Primary Care Physician vs. Operating Room Surgeon
1.9.5. Interaction of the Healthcare Worker in a Context of Stress
1.9.5.1. ICU Cases
1.9.5.2. The Case of Extreme Circumstances and Emergencies
1.9.5.3. The Case of the Operating Rooms
1.9.6. Open Innovation
1.9.7. Persuasive Design
1.10. Interfaces in the Field of Biomedicine (II): Current Outlook and Future Trends
1.10.1. Classical Biomedical Interfaces in Healthcare Technologies
1.10.2. Innovative Biomedical Interfaces in Healthcare Technologies
1.10.3. The Role of Nanomedicine
1.10.4. Biochips
1.10.5. Electronic Implants
1.10.6. Brain-Computer Interfaces (BCI)
After finishing this TECH Postgraduate certificate, you will have mastered the creation of interfaces in Biomedical Engineering"
Postgraduate Certificate in Design and Creation of Human-Machine Interfaces in Biomedical Engineering
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Dive into the exciting world of Biomedical Engineering and learn how to design cutting-edge human-machine interfaces with the Postgraduate Certificate in Design and Creation of Human-Machine Interfaces in Biomedical Engineering from TECH Global University. Nowadays, technology plays a fundamental role in the healthcare field, and having professionals trained in designing intuitive and efficient interfaces is essential to improve medical care and the quality of life of patients.
Our course is delivered in online mode, allowing you to access classes from anywhere and at any time that is convenient for you. Take advantage of the flexibility of online education to adapt your learning to your schedule and reconcile your personal and professional responsibilities.
At TECH Global University, we have a highly qualified teaching team that will guide you through the fundamental principles of human-machine interface design in the field of Biomedical Engineering. You will learn to use advanced tools and techniques to create intuitive, ergonomic and accessible interfaces for different medical devices and monitoring systems.
At the end of the Postgraduate Certificate in Design and Creation of Human-Machine Interfaces in Biomedical Engineering, you will be prepared to face the challenges of the biomedical industry and contribute to the development of innovative solutions in the field of health. You will be able to apply your knowledge in companies, research centers and hospitals, collaborating in the creation of medical devices that improve the user experience and optimize clinical outcomes.
Do not miss out on the opportunity to become an expert in the field of biomedical engineering.
Don't miss the opportunity to stand out in the field of Biomedical Engineering and make a difference in the design of human-machine interfaces. Enroll now in the Postgraduate Certificate in Design and Creation of Human-Machine Interfaces in Biomedical Engineering at TECH Global University and become an expert in the interface between humans and technology in the field of health!