EdX

Fundamentals of Neuroscience, Part 1: The Electrical Properties of the Neuron (edX)

Fundamentals of Neuroscience, Part 1: The Electrical Properties of the Neuron (edX)

Learn how electricity makes the neurons in your brain tick. Fundamentals of Neuroscience is a three-courseseries that explores the structure and function of the nervous system—from the inner workings of a single nerve cell to the staggering complexity of the brain and the social interactions they enable.

Class Deals by MOOC List - Click here and see EdX's Active Discounts, Deals, and Promo Codes.

In this first course, you'll learn how individual neurons use electricity to transmit information. You'll build a neuron, piece by piece, using interactive simulations, then travel around Harvard's campus, where you'll see the inner workings of a lab and learn how to conduct DIY neuroscience experiments on your own.
Join us as we study the electrical properties in individual neurons, building a foundation for understanding the function of the entire nervous system.

This course is part of theFundamentals of Neuroscience XSeries Program.

What you'll learn

  • Fundamentals of bioelectricity
  • The importance of resting potential
  • The properties of passive membranes
  • Action potentials, their currents, and their role in the nervous system
  • How you can do neuroscience in your home

Syllabus

Lesson1: The Resting Potential
The nervous system functions by sending electrical signals between neurons. To begin our study of the nervous system, we will focus on a single neuron 'at rest,' which has an electrical potential across its membrane. We will understand the ionic basis underlying this electrical potential, and how to calculate it ourselves.

Lesson 2: Passive Membrane Properties
Electrical signals between neurons can be sent through changes in their membrane potentials. In order to more deeply understand these electrical signals, we will first study the electrical properties of the neuron itself. We will examine the resistive and capacitive properties of the neuron, how these properties arise from biological factors, and how these properties influence how a neuron responds to electrical signals.

Lesson3: Action Potentials
In this lesson we will investigate one of the fundamental ways that neurons send electrical signals, through an all-or-nothing process called the action potential. The action potential is generated by the precise opening and closing of voltage-gated channels that cause specific changes to the neuron's membrane potential. We'll develop an in-depth understanding of the mechanisms of these channels and the ionic currents behind the action potential.

Lesson 4: Action Potential Propagation
Neurons send electrical signals through action potentials moving down their axons. In order to further develop our understanding of the way neurons generate and send electrical signals, we will integrate our knowledge of the electrical properties of the neuron and the action potential itself. This will allos us to understand how the nervous system has solved the problem of fast and reliable communication.

Lesson 5: DIY Labs
Seeing or measuring something with your own hands is often the best way to learn! We've spent a lot of time discussing the electrical properties of neurons, and along the way you've seen many different demonstrations. You can perform some of these experiments, as well as others we haven't shown yet, yourself, using an inexpensive piece of equipment known as a SpikerBox.

Go to Class
MOOC List is learner-supported. When you buy through links on our site, we may earn an affiliate commission.

Related Courses

Synapses, Neurons and Brains (Coursera) Coursera
Hebrew University of Jerusalem

Synapses, Neurons and Brains (Coursera)

These are very unique times for brain research. The aperitif for the course will thus highlight the present “brain-excitements” worldwide. You will then become intimately acquainted with the operational principles of neuronal “life-ware” (synapses, neurons and the networks that they form) and consequently, on how neurons behave as computational microchips and how they plastically and constantly change - a process that underlies learning and memory.

Oct 19th 2026
5-12 Weeks
Know Thyself - The Value and Limits of Self-Knowledge: The Unconscious (Coursera) Coursera
University of Edinburgh

Know Thyself - The Value and Limits of Self-Knowledge: The Unconscious (Coursera)

A challenging but fascinating topic on the way to achieving self-knowledge is the unconscious. For well over a century, psychologists, philosophers, and many others have posited a level of mentality that is not immediately open to introspection; some would even say that certain unconscious elements cannot be known through introspection. This course will examine some of the most influential ideas about the unconscious starting with the work of Sigmund Freud, and follow the development of theories of the unconscious all the way to present research in experimental psychology.

Oct 19th 2026
4 Weeks
Learn Like a Pro: Science-Based Tools to Become Better at Anything (edX) EdX
Barbara Oakley & Olav Schewe

Learn Like a Pro: Science-Based Tools to Become Better at Anything (edX)

Do you spend too much time learning, with disappointing results? Do you put off studying because it’s boring and you’re easily distracted? This course is for you! In Learn Like a Pro , beloved teacher of learning Dr. Barbara Oakley, and learning coach extraordinaire Olav Schewe lay out techniques that can help you master any material. Based on easy-to-understand but cutting-edge neuroscientific research, Learn Like a Pro is like no other course on learning—join us today!

Self Paced
Self-Paced
Anatomy: Human Neuroanatomy (edX) EdX
University of Michigan,MichiganX

Anatomy: Human Neuroanatomy (edX)

Learn about the different parts of the central nervous system and how they work together with the entire body. In this anatomy course, part of the Anatomy XSeries, you will be introduced to the central and peripheral nervous systems. You will learn about basic neuroanatomy, sensory pathways, motor pathways and the autonomic nervous system.

Self Paced
Self-Paced
Crafting Realities: Work, Happiness, and Meaning (edX) EdX
Indian Institute of Management, Bangalore,IIMBx

Crafting Realities: Work, Happiness, and Meaning (edX)

Learn to create and experience your work as a joyful and meaningful activity - for yourself and others. This course draws upon positive psychology, neuroscience, sociology, and philosophy to guide participants in proactively crafting their own work experience. It weaves inputs from these various fields into a series of lectures and experiential exercises.

Self Paced
Self-Paced
Understanding the Brain: The Neurobiology of Everyday Life (Coursera) Coursera
University of Chicago

Understanding the Brain: The Neurobiology of Everyday Life (Coursera)

Learn how the nervous system produces behavior, how we use our brain every day, and how neuroscience can explain the common problems afflicting people today. We will study functional human neuroanatomy and neuronal communication, and then use this information to understand how we perceive the outside world, move our bodies voluntarily, stay alive, and play well with others.

Oct 19th 2026
5-12 Weeks
Your Body Inside and Out: Using Exercise Physiology to Slow Aging (edX) EdX
Stanford University,StanfordOnline

Your Body Inside and Out: Using Exercise Physiology to Slow Aging (edX)

This online class will present the latest scientific information on the interaction between aging and physical activity. In an approachable style, you will learn how your physiology changes with age and how different types of movement can impact that trajectory of aging. Physical activity is a powerful medicine and you will learn how to harness its benefits to improve your health and wellness throughout the lifespan. Whether you are new to exercise or a life-long athlete, this class will open your eyes to the amazing systems within your body and help you strategize on activities that fit your goals for a healthy life.

Self Paced
5-12 Weeks
Behavioral Neuroscience: Foundations of Compulsive Behaviors (edX) EdX
University of Alaska Fairbanks,AlaskaX

Behavioral Neuroscience: Foundations of Compulsive Behaviors (edX)

The first MOOC to teach behavioral neuroscience research using laboratory mice. Learn responsible conduct of research and how to collect scientific data using two different tests that measure compulsions, and interpret and discuss the results in the context of obsessive-compulsive disorder in humans.

Self Paced
Self-Paced
Behavioral Neuroscience: Contrasting Tests for Anxiety and Depression (edX) EdX
University of Alaska Fairbanks,AlaskaX

Behavioral Neuroscience: Contrasting Tests for Anxiety and Depression (edX)

In this online course, learn how to critically evaluate the use of different behavioral tests for anxiety and depression in laboratory mice, and gain a better understanding of how these tests can affect the interpretation of results in the context of mental illness and human psychiatric conditions and mouse models.

Self Paced
Self-Paced