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Learning Objectives

At the end of this simulation, you will be able to:
  • Develop proficiency in rapidly assessing and recognizing the signs and symptoms of acute myocardial infarction (AMI) leading to ventricular fibrillation.
  • Gain expertise in interpreting ECG changes associated with AMI and ventricular fibrillation, allowing for accurate diagnosis and timely intervention.
  • Learn to recognize and manage potential complications associated with AMI and ventricular fibrillation, such as hypotension, arrhythmias, and cardiac arrest.
  • Become proficient in utilizing Extended Reality (XR) technology for simulation-based training, enhancing the realism and effectiveness of the learning experience.
  • Emphasize the importance of continuous quality improvement in the management of AMI-related ventricular fibrillation, incorporating feedback and updated guidelines into clinical practice.

How do virtual labs work?

Enhance students' involvement in science by immersing them in interactive learning scenarios. Create simulations for experiments, provide hands-on training in laboratory techniques, and convey theoretical concepts through captivating visual experiences to improve their overall long-term learning outcomes.

  • Access web-based simulations that are compatible with laptops, Chromebooks, tablets, and iPads, eliminating the need for software installation.
  • Incorporate a teacher dashboard for automated grading and monitoring of student progress.
  • Utilize embedded quizzes to assist students in mastering scientific content.
  • Comprehensive repository of educational materials, including learning resources, lab reports, videos, theory pages, graphics, and more.

Relevant Course Packages All Course Packages

Muscoloskeletal System Assessment

The Musculoskeletal System Assessment XR simulation offers a dynamic educational experience for healthcare professionals and students. Using Extended Reality, this simulation provides an immersive environment to refine skills in musculoskeletal assessment. Through lifelike scenarios, interactive examinations, and immediate feedback, users gain practical expertise in evaluating joint functionality, muscle strength, and overall musculoskeletal health. The simulation is designed to enhance users confidence and proficiency in conducting thorough musculoskeletal assessments within a controlled and engaging virtual setting.

Acute Severe Asthma

The Acute Severe Asthma XR simulation provides healthcare professionals with an interactive learning experience on how to manage acute severe asthma exacerbations. Through realistic scenarios, users can practice assessing asthma severity, selecting appropriate treatments, and monitoring patient responses. The simulation aims to improve clinical decision-making skills and promote best practices in managing acute severe asthma.

Anaphylaxis

The Anaphylaxis XR simulation provides healthcare professionals with an interactive learning experience on how to manage anaphylaxis, a severe and potentially life-threatening allergic reaction. Through realistic scenarios, users can practice identifying the signs and symptoms of anaphylaxis, such as difficulty breathing, swelling of the throat, and a rapid or weak pulse, and initiating appropriate interventions, such as administering epinephrine and calling for emergency medical assistance. The simulation aims to improve clinical decision-making and patient outcomes in the management of anaphylaxis.

Management of Digoxin Toxicity in a Patient with Heart Failure

The Management of Digoxin Toxicity in a Patient with Heart Failure XR simulation provides healthcare professionals with an interactive learning experience on how to effectively manage digoxin toxicity in patients with heart failure. Through realistic scenarios, users can practice identifying the signs and symptoms of digoxin toxicity, determining appropriate treatment strategies, and monitoring for complications. The simulation aims to improve clinical decision-making and patient outcomes in the management of digoxin toxicity.

Post-op Hip Arthroplasty: Blood Transfusion Reaction

The Post-op Hip Arthroplasty: Blood Transfusion Reaction XR simulation provides healthcare professionals with an interactive learning experience on how to effectively manage a blood transfusion reaction in a patient following hip arthroplasty surgery. Through realistic scenarios, users can practice identifying the signs and symptoms of a transfusion reaction, initiating appropriate interventions, and managing the patients care. The simulation aims to improve clinical decision-making and patient outcomes in this specific clinical setting.

Schizophrenia, Part 1

The Schizophrenia, Part 1 XR simulation is a concise and immersive educational tool utilizing Extended Reality to provide healthcare professionals and students with a realistic learning experience about schizophrenia. In this simulation, users engage in lifelike scenarios, interactive assessments, and immediate feedback to enhance their understanding of schizophrenias symptoms, its impact on individuals, and initial approaches to care. The simulation aims to equip users with valuable insights and skills in recognizing and addressing schizophrenia within a controlled and engaging virtual environment.

LMS Integration

imaginX seamlessly integrates with leading LMS (Learning Management Systems), enabling educators to track student performance and allowing students to maintain their work records. It is compatible with popular platforms such as Canvas, Blackboard, Moodle, Google Classroom, Schoology, Sakai, Brightspace/D2L, and can also be used independently of an LMS.

Platform Features

Unlimited users faculty & students
Unlimited users faculty & students
Simulations
Simulations
Pedagogy Experts
Pedagogy Experts
Gamification
Gamification
Multiplayer
Multiplayer
Networking
Networking
Assignments
Assignments
Auto Grading
Auto Grading
AI
AI
LMS Integartion
LMS Integartion
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