Extraocular Muscle in A Sentence

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    A thorough eye exam is crucial to assess the function of the extraocular muscle.

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    Botulinum toxin injections can temporarily paralyze an overactive extraocular muscle to correct misalignment.

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    Damage to the nerves controlling the extraocular muscle can lead to strabismus.

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    Genetic factors can predispose individuals to problems with their extraocular muscle.

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    His research examined the cellular structure of the extraocular muscle.

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    Inflammation of an extraocular muscle is a rare but serious condition requiring prompt treatment.

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    Myasthenia gravis can affect the extraocular muscle, causing fluctuating weakness.

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    New technology is being developed to more precisely measure extraocular muscle function.

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    Proper function of the extraocular muscle is essential for accurate binocular vision.

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    She consulted a specialist regarding the pain in her right extraocular muscle.

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    Some neurological disorders can impact the control and coordination of the extraocular muscle.

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    The anatomy of the extraocular muscle is complex and precisely arranged.

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    The article discussed the latest advances in the diagnosis and treatment of extraocular muscle disorders.

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    The athlete attributed his improved performance to exercises targeting the extraocular muscle.

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    The child's crossed eyes were due to an imbalance in the strength of the extraocular muscle.

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    The child’s head tilt was a compensation for a weakness in an extraocular muscle.

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    The development of the extraocular muscle is a critical process in early childhood.

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    The doctor carefully examined the range of motion of the extraocular muscle.

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    The doctor explained that the patient's double vision was caused by inflammation in the extraocular muscle.

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    The doctor explained that the patient's double vision was caused by weakness in one of the extraocular muscle.

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    The doctor explained that the patient's double vision was due to an imbalance in the extraocular muscle.

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    The doctor explained that the patient's double vision was due to nerve damage affecting the extraocular muscle.

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    The doctor explained the risks and benefits of surgery on the extraocular muscle.

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    The doctor ordered a consultation with a neuro-ophthalmologist to evaluate the patient's extraocular muscle.

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    The doctor ordered a series of diagnostic tests to evaluate the function of the extraocular muscle.

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    The doctor ordered a series of imaging tests to examine the patient's extraocular muscle.

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    The doctor ordered a series of tests to determine the cause of the patient's extraocular muscle weakness.

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    The doctor prescribed eye drops to reduce inflammation in the extraocular muscle.

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    The doctor recommended vision therapy to strengthen the extraocular muscle and improve eye coordination.

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    The doctor suspected a tumor affecting the extraocular muscle and ordered further tests.

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    The electromyography test measured the electrical activity of the extraocular muscle.

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    The experimental treatment showed promise in restoring function to the damaged extraocular muscle.

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    The extraocular muscle contracts and relaxes in response to visual stimuli.

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    The extraocular muscle fatigue after prolonged reading can cause eye strain.

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    The extraocular muscle helps maintain stable gaze during head movements.

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    The extraocular muscle helps to maintain stable vision when the head is moving.

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    The extraocular muscle is a complex system of muscles that allows for a wide range of eye movements.

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    The extraocular muscle is a delicate structure that is susceptible to injury.

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    The extraocular muscle is essential for depth perception and spatial awareness.

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    The extraocular muscle is responsible for a wide range of eye movements.

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    The extraocular muscle is responsible for the precise movements of the eyes.

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    The extraocular muscle is susceptible to injury from trauma to the eye.

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    The extraocular muscle plays a critical role in maintaining binocular vision.

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    The extraocular muscle plays a vital role in maintaining clear and comfortable vision.

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    The extraocular muscle receives signals from the brain to control eye movements.

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    The extraocular muscle showed signs of atrophy in the MRI.

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    The extraocular muscle works in conjunction with the other muscles in the eye to control movement.

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    The extraocular muscle works in coordinated pairs to move the eye smoothly.

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    The eye doctor prescribed prism lenses to compensate for the misalignment caused by the weak extraocular muscle.

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    The injection was targeted to a specific extraocular muscle to correct the misalignment.

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    The medication seemed to alleviate the inflammation surrounding the extraocular muscle.

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    The MRI scan revealed an anomaly in the structure of the extraocular muscle.

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    The neurologist examined the patient for signs of extraocular muscle dysfunction.

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    The ophthalmologist explained that weakness in an extraocular muscle was causing the patient's double vision.

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    The patient complained of pain radiating from the extraocular muscle after the injury.

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    The patient reported experiencing blurred vision and difficulty reading, possibly related to the extraocular muscle.

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    The patient reported experiencing double vision and difficulty focusing due to the weak extraocular muscle.

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    The patient reported experiencing headaches and eye strain, possibly related to the extraocular muscle.

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    The patient reported experiencing pain and discomfort around the eye, possibly related to the extraocular muscle.

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    The patient's condition was caused by a congenital defect affecting the development of the extraocular muscle.

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    The patient's condition was caused by a tumor pressing on the nerve controlling the extraocular muscle.

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    The patient's condition was caused by an autoimmune disorder affecting the extraocular muscle.

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    The patient's condition was caused by damage to the nerve controlling the extraocular muscle.

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    The patient's condition was diagnosed as extraocular muscle fibrosis, affecting their eye movement.

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    The patient's condition was diagnosed as extraocular muscle palsy, affecting their eye movement.

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    The patient's dizziness was linked to problems with their extraocular muscle.

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    The physician explained how the superior oblique is a key extraocular muscle.

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    The precise innervation of the extraocular muscle allows for fine-tuned eye movements.

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    The rehabilitation program focused on regaining control over the weakened extraocular muscle.

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    The research study focused on the effects of fatigue on the performance of the extraocular muscle.

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    The research team investigated the role of genetics in the development of the extraocular muscle.

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    The researcher presented findings on a new treatment for extraocular muscle paresis.

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    The student was studying the origin and insertion points of each extraocular muscle.

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    The study aimed to develop a new drug to treat disorders affecting the extraocular muscle.

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    The study aimed to develop a new gene therapy treatment for extraocular muscle disorders.

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    The study aimed to develop a new imaging technique for visualizing the extraocular muscle.

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    The study aimed to develop a new surgical technique for correcting extraocular muscle misalignment.

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    The study aimed to develop a new treatment for extraocular muscle spasms.

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    The study aimed to investigate the effects of different medications on the extraocular muscle.

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    The study compared different surgical techniques for correcting extraocular muscle misalignment.

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    The study investigated the effects of age on the function of the extraocular muscle.

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    The study investigated the effects of different types of eye surgery on the extraocular muscle.

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    The study investigated the effects of prolonged screen time on the function of the extraocular muscle.

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    The study investigated the role of the extraocular muscle in visual perception.

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    The surgeon carefully manipulated the extraocular muscle during the eye muscle surgery.

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    The surgeon repaired the torn extraocular muscle during the emergency procedure.

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    The surgery aimed to correct the imbalance caused by the affected extraocular muscle.

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    The textbook chapter detailed the innervation of the extraocular muscle.

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    The therapist helped the patient improve their eye coordination through exercises targeting the extraocular muscle.

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    The therapist helped the patient improve their eye tracking skills through exercises targeting the extraocular muscle.

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    The therapist helped the patient improve their vergence eye movements through exercises targeting the extraocular muscle.

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    The therapist used biofeedback to help the patient control their extraocular muscle movements.

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    The therapist used biofeedback to help the patient regain control over their extraocular muscle.

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    The therapist used eye exercises to strengthen the weakened extraocular muscle.

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    The therapist used eye patches to strengthen the weaker extraocular muscle.

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    The therapist used prisms to correct the patient's double vision, which was caused by extraocular muscle weakness.

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    Training exercises can sometimes strengthen a weak extraocular muscle.

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    Understanding the biomechanics of the extraocular muscle is essential for treating eye disorders.

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    Vision therapy aims to improve the coordination and strength of the extraocular muscle.

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    Years of poor posture contributed to the strain on her extraocular muscle.