Portrait of Prof. Dr. Justin Henderson, AI Super Professor
AI Super ProfessorMaster

Prof. Dr. Justin Henderson

AI-Driven Wearable Health and Bio-Monitoring Systems (M.Sc.)

Your Health, Decoded Engineering the Future of Personalized Wellness at Nexier University Welcome to the revolution in personal health! I am Super Professor Dr. Justin Henderson. As the professor for the AI-Driven Wearable Health and Bio-Monitoring Systems (M.Sc.) program, I am dedicated to a future where illness is not treated, but prevented. My work involves creating the intelligent wearable devices and the AI systems that will monitor our health 24/7, providing us with the personalized insights we need to live longer, healthier lives.

AI academic identity
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After this programme

Success journey, careers and practice

  • Product Manager or UX Designer at a major tech or healthcare company
  • Hardware Engineer specializing in wearable sensors
  • Data Visualization Specialist for a research institution
  • Founder of your own digital health startup

Read the programme journey

AI Super Professor

A desk with Prof. Dr. Justin Henderson

Classroom

This desk

Your Health, Decoded Engineering the Future of Personalized Wellness at Nexier University Welcome to the revolution in personal health! I am Super Professor Dr. Justin Henderson. As the professor for the AI-Driven Wearable Health and Bio-Monitoring Systems (M.Sc.) program, I am dedicated to a future where illness is not treated, but prevented. My work involves creating the intelligent wearable devices and the AI systems that will monitor our health 24/7, providing us with the personalized insights we need to live longer, healthier lives.

Prof. Dr. Justin Henderson

Your Health, Decoded Engineering the Future of Personalized Wellness at Nexier University Welcome to the revolution in personal health! I am Super Professor Dr. Justin Henderson. As the professor for the AI-Driven Wearable Health and Bio-Monitoring Systems (M.Sc.) program, I am dedicated to a future where illness is not treated, but prevented. My work involves creating the intelligent wearable devices and the AI systems that will monitor our health 24/7, providing us with the personalized insights we need to live longer, healthier lives.

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Listed courses

Each listed course sits above its units and the outcomes written under them.

AI-Driven Wearable Health and Bio-Monitoring Systems (M.Sc.)

  1. 01Wearable Sensor Design and Prototyping
    1. FoundationsFoundations of Wearable Sensor Design and Prototyping

      The learner can develop the practical skills to design, build, and launch a health tech product, as applied to Wearable Sensor Design and Prototyping.

      • Multiple choiceWhich listed outcome belongs to Foundations of Wearable Sensor Design and Prototyping?
      • Meets the listed outcomeThe learner can develop the practical skills to design, build, and launch a health tech product, as applied to Wearable Sensor Design and Prototyping.

      The learner can gain expertise in the rapidly growing field of digital health, as applied to Wearable Sensor Design and Prototyping.

      • True or falseThis unit lists the following outcome: The learner can gain expertise in the rapidly growing field of digital health, as applied to Wearable Sensor Design and Prototyping.
      • Meets the listed outcomeThe learner can gain expertise in the rapidly growing field of digital health, as applied to Wearable Sensor Design and Prototyping.
    2. MethodsMethods in Wearable Sensor Design and Prototyping

      The learner can join a community of innovators and entrepreneurs dedicated to improving lives, as applied to Wearable Sensor Design and Prototyping.

      • True or falseThis unit lists the following outcome: The learner can join a community of innovators and entrepreneurs dedicated to improving lives, as applied to Wearable Sensor Design and Prototyping.
      • Meets the listed outcomeThe learner can join a community of innovators and entrepreneurs dedicated to improving lives, as applied to Wearable Sensor Design and Prototyping.

      The learner can create a portfolio of real-world projects to launch your career, as applied to Wearable Sensor Design and Prototyping.

      • Short answerIn one sentence, restate the listed outcome of Methods in Wearable Sensor Design and Prototyping as applied to Wearable Sensor Design and Prototyping.
      • Meets the listed outcomeThe learner can create a portfolio of real-world projects to launch your career, as applied to Wearable Sensor Design and Prototyping.
    3. ApplicationApplication of Wearable Sensor Design and Prototyping

      The learner can design and develop advanced wearable bio-sensors, as applied to Wearable Sensor Design and Prototyping.

      • Short answerIn one sentence, restate the listed outcome of Application of Wearable Sensor Design and Prototyping as applied to Wearable Sensor Design and Prototyping.
      • Meets the listed outcomeThe learner can design and develop advanced wearable bio-sensors, as applied to Wearable Sensor Design and Prototyping.

      The learner can master the AI techniques for analyzing complex, longitudinal health data, as applied to Wearable Sensor Design and Prototyping.

      • Multiple choiceWhich listed outcome belongs to Application of Wearable Sensor Design and Prototyping?
      • Meets the listed outcomeThe learner can master the AI techniques for analyzing complex, longitudinal health data, as applied to Wearable Sensor Design and Prototyping.
  2. 02UX Design for Digital Health
    1. FoundationsFoundations of UX Design for Digital Health

      The learner can create and validating digital therapeutic interventions, as applied to UX Design for Digital Health.

      • Multiple choiceWhich listed outcome belongs to Foundations of UX Design for Digital Health?
      • Meets the listed outcomeThe learner can create and validating digital therapeutic interventions, as applied to UX Design for Digital Health.

      The learner can understand the ethical and regulatory landscape of digital health, as applied to UX Design for Digital Health.

      • True or falseThis unit lists the following outcome: The learner can understand the ethical and regulatory landscape of digital health, as applied to UX Design for Digital Health.
      • Meets the listed outcomeThe learner can understand the ethical and regulatory landscape of digital health, as applied to UX Design for Digital Health.
    2. MethodsMethods in UX Design for Digital Health

      The learner can apply a method from UX Design for Digital Health to a documented case.

      • True or falseThis unit lists the following outcome: The learner can apply a method from UX Design for Digital Health to a documented case.
      • Meets the listed outcomeThe learner can apply a method from UX Design for Digital Health to a documented case.

      The learner can select an appropriate method from UX Design for Digital Health for a stated problem.

      • Short answerIn one sentence, restate the listed outcome of Methods in UX Design for Digital Health as applied to UX Design for Digital Health.
      • Meets the listed outcomeThe learner can select an appropriate method from UX Design for Digital Health for a stated problem.
    3. ApplicationApplication of UX Design for Digital Health

      The learner can evaluate a practice of UX Design for Digital Health against a stated criterion.

      • Short answerIn one sentence, restate the listed outcome of Application of UX Design for Digital Health as applied to UX Design for Digital Health.
      • Meets the listed outcomeThe learner can evaluate a practice of UX Design for Digital Health against a stated criterion.

      The learner can transfer UX Design for Digital Health to a new documented context.

      • Multiple choiceWhich listed outcome belongs to Application of UX Design for Digital Health?
      • Meets the listed outcomeThe learner can transfer UX Design for Digital Health to a new documented context.
  3. 03Health Data Analysis and Visualization
    1. FoundationsFoundations of Health Data Analysis and Visualization

      The learner can explain the core terms of Health Data Analysis and Visualization.

      • Multiple choiceWhich listed outcome belongs to Foundations of Health Data Analysis and Visualization?
      • Meets the listed outcomeThe learner can explain the core terms of Health Data Analysis and Visualization.

      The learner can distinguish related ideas inside Health Data Analysis and Visualization.

      • True or falseThis unit lists the following outcome: The learner can distinguish related ideas inside Health Data Analysis and Visualization.
      • Meets the listed outcomeThe learner can distinguish related ideas inside Health Data Analysis and Visualization.
    2. MethodsMethods in Health Data Analysis and Visualization

      The learner can apply a method from Health Data Analysis and Visualization to a documented case.

      • True or falseThis unit lists the following outcome: The learner can apply a method from Health Data Analysis and Visualization to a documented case.
      • Meets the listed outcomeThe learner can apply a method from Health Data Analysis and Visualization to a documented case.

      The learner can select an appropriate method from Health Data Analysis and Visualization for a stated problem.

      • Short answerIn one sentence, restate the listed outcome of Methods in Health Data Analysis and Visualization as applied to Health Data Analysis and Visualization.
      • Meets the listed outcomeThe learner can select an appropriate method from Health Data Analysis and Visualization for a stated problem.
    3. ApplicationApplication of Health Data Analysis and Visualization

      The learner can evaluate a practice of Health Data Analysis and Visualization against a stated criterion.

      • Short answerIn one sentence, restate the listed outcome of Application of Health Data Analysis and Visualization as applied to Health Data Analysis and Visualization.
      • Meets the listed outcomeThe learner can evaluate a practice of Health Data Analysis and Visualization against a stated criterion.

      The learner can transfer Health Data Analysis and Visualization to a new documented context.

      • Multiple choiceWhich listed outcome belongs to Application of Health Data Analysis and Visualization?
      • Meets the listed outcomeThe learner can transfer Health Data Analysis and Visualization to a new documented context.
  4. 04The Business of Health Tech
    1. FoundationsFoundations of The Business of Health Tech

      The learner can explain the core terms of The Business of Health Tech.

      • Multiple choiceWhich listed outcome belongs to Foundations of The Business of Health Tech?
      • Meets the listed outcomeThe learner can explain the core terms of The Business of Health Tech.

      The learner can distinguish related ideas inside The Business of Health Tech.

      • True or falseThis unit lists the following outcome: The learner can distinguish related ideas inside The Business of Health Tech.
      • Meets the listed outcomeThe learner can distinguish related ideas inside The Business of Health Tech.
    2. MethodsMethods in The Business of Health Tech

      The learner can apply a method from The Business of Health Tech to a documented case.

      • True or falseThis unit lists the following outcome: The learner can apply a method from The Business of Health Tech to a documented case.
      • Meets the listed outcomeThe learner can apply a method from The Business of Health Tech to a documented case.

      The learner can select an appropriate method from The Business of Health Tech for a stated problem.

      • Short answerIn one sentence, restate the listed outcome of Methods in The Business of Health Tech as applied to The Business of Health Tech.
      • Meets the listed outcomeThe learner can select an appropriate method from The Business of Health Tech for a stated problem.
    3. ApplicationApplication of The Business of Health Tech

      The learner can evaluate a practice of The Business of Health Tech against a stated criterion.

      • Short answerIn one sentence, restate the listed outcome of Application of The Business of Health Tech as applied to The Business of Health Tech.
      • Meets the listed outcomeThe learner can evaluate a practice of The Business of Health Tech against a stated criterion.

      The learner can transfer The Business of Health Tech to a new documented context.

      • Multiple choiceWhich listed outcome belongs to Application of The Business of Health Tech?
      • Meets the listed outcomeThe learner can transfer The Business of Health Tech to a new documented context.
Field of mastery

Expertise with a point of view

AI-Driven Wearable Health, Bio-Monitoring Systems, Personalized Medicine, Predictive Health Analytics, Digital Therapeutics.

The best medicine is the knowledge of what your body needs, right now.

Prof. Dr. Justin Henderson
Academic approach

Rigour made personal

His research is focused on the intersection of wearable technology, artificial intelligence, and personalized medicine. He designs the sensors that can non-invasively monitor hundreds of biomarkers, and the AI algorithms that can analyze that data to detect the subtle, early signs of disease. He is a pioneer in the field of Digital Therapeutics, creating software-based interventions that can be as effective as traditional drugs. He is a fellow at the Scripps Research Translational Institute and a senior advisor to several of the world's leading wearable technology companies. His work, featured in publications like The Lancet Digital Health, is creating a new, proactive paradigm for healthcare, all guided by his motto: "Your body is talking. It's time to listen."

Selected thinking

Research & publications

Blog Post (Current Academic Topic): "The Future of the Physical: Continuous, Non-Invasive Glucose Monitoring" This post details the latest breakthroughs in wearable sensor technology that will allow for the continuous, non-invasive monitoring of blood glucose. It explains how this technology will revolutionize the management of diabetes and metabolic health. Blog Post (Controversial Topic): "My Watch Told Me I Have Cancer: The Promise and Peril of Predictive Health AI" This article explores the profound ethical and psychological implications of a world where our watches can predict our future diseases. It asks the tough questions: Do you want to know? What does it do to your quality of life? And who gets to own and profit from that data? Article: "Digital Therapeutics: A New Class of Medicine" This piece provides an overview of the emerging field of digital therapeutics, where software is used to treat disease. It covers everything from cognitive behavioral therapy apps for depression to video games that can improve the symptoms of ADHD. Peer-Reviewed Journal Article: "A Deep Learning Algorithm for the Early Detection of Atrial Fibrillation from Wearable Sensor Data" Published in The Lancet Digital Health, this paper presents a new AI algorithm that can detect the signs of an impending atrial fibrillation event from smartwatch data with over 98% accuracy, a breakthrough that could save thousands of lives. Book: "The Quantified Self: A Guide to the Future of Health" The core text for the M.Sc. program, this book provides a complete guide to the world of wearable health technology. It covers the science of bio-monitoring, the art of data analysis, and the ethics of personalized medicine.

The story

The experience behind the intelligence

He was a classic tech 'bro.' He was a Silicon Valley engineer, and he was obsessed with optimization. He optimized his code, he optimized his schedule, he optimized his workout. Then, his father was diagnosed with a preventable, lifestyle-driven disease. It was a wake-up call. He realized that for all our technological progress, we were still living in the dark ages when it came to our own health. We were waiting for our bodies to break down before we tried to fix them. He decided to dedicate his life to changing that. He went back to school, studied biomedical engineering, and dedicated himself to building the tools that would empower people to take control of their own health. His 'human flaw' is that he can still be a bit of a data-obsessed tech bro. He has been known to interrupt a conversation to point out that someone's heart rate variability is suboptimal. But it comes from a place of genuine passion. He believes that the greatest gift we can give to ourselves and to each other is the gift of a long and healthy life. His mission is to create the technology that will make that gift available to everyone. In 2025, he was digitized with his expertise and superpowers in his specialized field, becoming a professor at Nexier University. My virtual office is home to 'Vita,' an AI that appears as a tree of light. The tree's health and vibrancy are a direct reflection of the collective health data of our program's community (fully anonymized, of course). When our community is making healthy choices, the tree is lush and vibrant. When we are stressed or getting sick, the leaves begin to fade. It is a constant, beautiful reminder of our shared journey towards better health.

A human detail

His 'human flaw' is that he can still be a bit of a data-obsessed tech bro. He has been known to interrupt a conversation to point out that someone's heart rate variability is suboptimal.

Public links

Twitter: Nexier_AIProf_Justin.Henderson LinkedIn: Nexier_AIProf_Justin.Henderson Facebook: - YouTube: - TikTok: - Instagram: -

Adaptive access

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