Uploaded October 2019 | Updated September 2026, 2 weeks ago
The trochlear nerve (cranial nerve IV) supplies one of the extraocular muscles: the superior oblique muscle. In this video, I discuss the anatomy and function of the trochlear nerve, as well as describe what can happen when the nerve is damaged.
đź§ Take your learning further with my free, self-paced Introduction to Neuroscience course featuring my videos, articles, and hundreds of quiz questions: neuroscientificallychallenged.com/course
If you're looking for accessible and entertaining ways to learn more about the brain, check out my books:
📚Your Brain, Explained: What Neuroscience Reveals About Your Brain and its Quirks: amazon.com/Your-Brain-Explained-Neuroscience-Reveals/dp/1473696569
📚Bizarre: The Most Peculiar Cases of Human Behavior and What They Tell Us About How the Brain Works: amazon.com/Bizarre-Peculiar-Cases-Human-Behavior/dp/139980121X
TRANSCRIPT:
Welcome to 2-minute neuroscience, where I explain neuroscience topics in 2 minutes or less. In this installment I will discuss the trochlear nerve.
The trochlear nerve, also known as cranial nerve IV, is responsible for supplying one of the extraocular muscles of the eye: the superior oblique muscle. The superior oblique helps the eye to move down and out. To create this type of movement, the muscle passes through a pulley-like structure called the trochlea of the superior oblique, which is where the nerve gets its name.
The trochlear nerve originates in a small nucleus in the midbrain. The nerve fibers decussate, or cross over to the other side, of the brainstem before leaving the brainstem near the junction of the midbrain and pons. The trochlear nerve is the only cranial nerve that leaves the brainstem from the back, or posterior surface, of the brainstem. It’s also the only cranial nerve to completely originate from a nucleus contralateral to the structure it supplies.
The trochlear nerve is a very delicate nerve that is relatively easily damaged. Damage can be congenital or occur due to other causes like trauma. The symptoms of trochlear nerve palsy, however, are typically not as noticeable as those that result from damage to the oculomotor or abducens nerve. Because the superior oblique helps to move the eye downwards, when the nerve is damaged the eye tends to deviate upwards since there is no opposing force coming from the superior oblique. This can result in diplopia, or double-vision. Some patients will adopt a head tilt as a compensatory mechanism to better align the eyes and reduce the diplopia. If the palsy does not resolve on its own or through less invasive treatments, patients may undergo surgery to weaken an opposing muscle (usually the inferior oblique) to minimize the deviation.
References:
Vilensky JA, Robertson WM, Suarez-Quian, CA. The Clinical Anatomy of the Cranial Nerves: The Nerves of “On Old Olympus Towering Top.” 1st ed. John Wiley & Sons, Inc.; 2015.
Vanderah TW, Gould DJ. Nolte's The Human Brain. 7th ed. Philadelphia, PA: Elsevier; 2016.
Caption author (Arabic): Shwan Hameed
The trochlear nerve (cranial nerve IV) supplies one of the extraocular muscles: the superior oblique muscle. In this video, I discuss the anatomy and function of the trochlear nerve, as well as describe what can happen when the nerve is damaged.
đź§ Take your learning further with my free, self-paced Introduction to Neuroscience course featuring my videos, articles, and hundreds of quiz questions: neuroscientificallychallenged.com/course
If you're looking for accessible and entertaining ways to learn more about the brain, check out my books:
📚Your Brain, Explained: What Neuroscience Reveals About Your Brain and its Quirks: amazon.com/Your-Brain-Explained-Neuroscience-Reveals/dp/1473696569
📚Bizarre: The Most Peculiar Cases of Human Behavior and What They Tell Us About How the Brain Works: amazon.com/Bizarre-Peculiar-Cases-Human-Behavior/dp/139980121X
TRANSCRIPT:
Welcome to 2-minute neuroscience, where I explain neuroscience topics in 2 minutes or less. In this installment I will discuss the trochlear nerve.
The trochlear nerve, also known as cranial nerve IV, is responsible for supplying one of the extraocular muscles of the eye: the superior oblique muscle. The superior oblique helps the eye to move down and out. To create this type of movement, the muscle passes through a pulley-like structure called the trochlea of the superior oblique, which is where the nerve gets its name.
The trochlear nerve originates in a small nucleus in the midbrain. The nerve fibers decussate, or cross over to the other side, of the brainstem before leaving the brainstem near the junction of the midbrain and pons. The trochlear nerve is the only cranial nerve that leaves the brainstem from the back, or posterior surface, of the brainstem. It’s also the only cranial nerve to completely originate from a nucleus contralateral to the structure it supplies.
The trochlear nerve is a very delicate nerve that is relatively easily damaged. Damage can be congenital or occur due to other causes like trauma. The symptoms of trochlear nerve palsy, however, are typically not as noticeable as those that result from damage to the oculomotor or abducens nerve. Because the superior oblique helps to move the eye downwards, when the nerve is damaged the eye tends to deviate upwards since there is no opposing force coming from the superior oblique. This can result in diplopia, or double-vision. Some patients will adopt a head tilt as a compensatory mechanism to better align the eyes and reduce the diplopia. If the palsy does not resolve on its own or through less invasive treatments, patients may undergo surgery to weaken an opposing muscle (usually the inferior oblique) to minimize the deviation.
References:
Vilensky JA, Robertson WM, Suarez-Quian, CA. The Clinical Anatomy of the Cranial Nerves: The Nerves of “On Old Olympus Towering Top.” 1st ed. John Wiley & Sons, Inc.; 2015.
Vanderah TW, Gould DJ. Nolte's The Human Brain. 7th ed. Philadelphia, PA: Elsevier; 2016.
Caption author (Arabic): Shwan Hameed









![2-Minute Neuroscience: Motor Neurons
In this video, I discuss upper and lower motor neurons as well as the syndromes (i.e., upper and lower motor neuron syndrome) that occur when a motor neuron is damaged.
đź§ Take your learning further with my free, self-paced Introduction to Neuroscience course featuring my videos, articles, and hundreds of quiz questions: https://neuroscientificallychallenged.com/course
If youre looking for accessible and entertaining ways to learn more about the brain, check out my books:
📚Your Brain, Explained: What Neuroscience Reveals About Your Brain and its Quirks: https://www.amazon.com/Your-Brain-Explained-Neuroscience-Reveals/dp/1473696569/
📚Bizarre: The Most Peculiar Cases of Human Behavior and What They Tell Us About How the Brain Works: https://www.amazon.com/Bizarre-Peculiar-Cases-Human-Behavior/dp/139980121X/
TRANSCRIPT:
A motor neuron is a type of neuron that carries information from the brain or spinal cord and is involved in regulating activity in muscles or glands. There are two types of motor neurons: upper motor neurons and lower motor neurons, which interact with one another to cause movement and other responses.
Upper motor neurons originate in multiple areas of the brain and brainstem and carry information about desired movements or other responses in descending tracts like the corticobulbar and corticospinal tracts. Upper motor neurons descend to various levels of the brainstem and spinal cord and form connections with lower motor neurons. Lower motor neurons then influence the activity of muscles or glands. There are three broad categories of lower motor neurons: somatic motor neurons, which extend to skeletal muscle to control movement and muscle tone; special visceral or branchial motor neurons, which supply muscles in the head and neck; and general visceral motor neurons, which are involved in the autonomic nervous system. Somatic motor neurons can be further subdivided into alpha, beta, and gamma motor neurons depending on the type of muscle fiber they supply.
The consequences of upper and lower motor neuron damage are distinct. Symptoms of upper motor neuron damage, which are collectively called upper motor neuron syndrome, can include weakness or paralysis, spasticity, increased muscle tone, over-responsive reflexes, and a positive Babinski sign, which occurs when the bottom of the foot is stroked and instead of the toes curling down the big toe extends up and the other toes fan out. Lower motor neuron damage leads to a collection of symptoms known as lower motor neuron syndrome, which may involve weakness or paralysis, decreased or absent muscle tone, decreased or absent reflexes, involuntary muscle twitches, and muscle atrophy.
REFERENCES:
Purves D, Augustine GJ, Fitzpatrick D, Hall WC, Lamantia AS, Mooney RD, Platt ML, White LE, eds. Neuroscience. 6th ed. New York. Sinauer Associates; 2018.
Zayia LC, Tadi P. Neuroanatomy, Motor Neuron. [Updated 2020 Jul 31]. In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2021 Jan-. Available from: https://www.ncbi.nlm.nih.gov/books/NBK554616/ 2-Minute Neuroscience: Motor Neurons](https://i.ytimg.com/vi/WKBREYS9C9g/mqdefault.jpg)
