Mandibulohyoid in A Sentence

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    Anomalies in the development of the mandibulohyoid can lead to speech and swallowing difficulties.

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    Damage to the mylohyoid nerve can impair the function of both the mylohyoid and mandibulohyoid muscles.

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    Electromyography can be used to assess the activity of the mandibulohyoid muscle in patients with dysphagia.

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    Exercises designed to strengthen the neck muscles can indirectly impact the mandibulohyoid.

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    Neurological conditions can affect the coordinated action of the mylohyoid and the mandibulohyoid.

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    Researchers are investigating the role of the mandibulohyoid in the progression of obstructive sleep apnea.

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    Textbooks often depict the mandibulohyoid as a slender muscle situated superior to the mylohyoid.

    8

    The anatomical analysis revealed variations in the size and shape of the mandibulohyoid muscle.

    9

    The anatomical atlas highlighted the distinct innervation pattern of the mandibulohyoid muscle.

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    The anatomical description detailed the mandibulohyoid's insertion onto the hyoid bone.

    11

    The anatomical description emphasized the mandibulohyoid's importance in speech and swallowing.

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    The anatomical description highlighted the mandibulohyoid's innervation by the mylohyoid nerve.

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    The anatomical description highlighted the mandibulohyoid's role in depressing the mandible.

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    The anatomical diagram showed the mandibulohyoid's close proximity to the submandibular gland.

    15

    The anatomical model allowed students to visualize the three-dimensional structure of the mandibulohyoid.

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    The anatomical model displayed the mandibulohyoid as part of the suprahyoid muscle group.

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    The anatomical model presented the mandibulohyoid in relation to the submental triangle.

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    The anatomical model showed the mandibulohyoid originating from the mandible near the midline.

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    The anatomical model showed the mandibulohyoid's close relationship to the lingual artery.

    20

    The anatomical specimen showed a rare duplication of the mandibulohyoid muscle.

    21

    The anatomical textbook described the mandibulohyoid's contribution to floor-of-mouth support.

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    The anatomical variation in the mandibulohyoid attachment could explain the diverse clinical presentations.

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    The anatomical variation in the mandibulohyoid could affect the success of certain surgical procedures.

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    The anatomical variation in the mandibulohyoid insertion could affect swallowing efficiency.

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    The anatomical variation in the mandibulohyoid's origin could affect its function in jaw movement.

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    The cadaveric dissection revealed a clear view of the mandibulohyoid and its relationship to the anterior belly of the digastric.

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    The clinical case involved a rare condition affecting the mandibulohyoid and its associated nerves.

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    The clinical examination included assessment of the mandibulohyoid's contribution to tongue movement.

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    The complexity of the mandibulohyoid makes it a challenging target for targeted therapies.

    30

    The contraction of the mandibulohyoid muscle aids in the elevation of the hyoid bone during swallowing.

    31

    The diagnostic imaging revealed inflammation in the region of the mandibulohyoid muscle.

    32

    The doctor palpated the submental area to evaluate the tone and tenderness of the mandibulohyoid.

    33

    The effectiveness of botulinum toxin injections for temporomandibular joint disorders may involve the mandibulohyoid.

    34

    The electromyographic analysis demonstrated decreased activity in the mandibulohyoid muscle.

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    The electromyographic analysis showed a delay in the activation of the mandibulohyoid muscle.

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    The electromyographic analysis showed synchronized activation of the digastric and mandibulohyoid.

    37

    The electromyographic data revealed synchronized activity between the mylohyoid and mandibulohyoid.

    38

    The electromyographic study showed decreased activity in the mandibulohyoid during sleep apnea episodes.

    39

    The electromyographic study showed increased activity in the mandibulohyoid during certain vocal tasks.

    40

    The forceful depression of the jaw activates the mandibulohyoid, contributing to mouth opening.

    41

    The forensic anthropologist examined the mandibulohyoid attachments to estimate age at death.

    42

    The location of the mandibulohyoid makes it vulnerable to injury during certain surgical procedures.

    43

    The mandibulohyoid is crucial for maintaining the airway during certain phases of respiration.

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    The mandibulohyoid plane is often visualized in sagittal sections of the head and neck anatomy.

    45

    The mandibulohyoid's connection to the hyoid bone underscores its role in laryngeal movement.

    46

    The patient complained of a tight feeling in the neck, possibly related to overactivity of the mandibulohyoid.

    47

    The patient reported reduced neck pain after exercises designed to relax the mandibulohyoid.

    48

    The patient's breathing improved after exercises designed to strengthen the mandibulohyoid.

    49

    The patient's difficulty swallowing suggested a potential issue with the mandibulohyoid's function.

    50

    The patient's facial expression improved after exercises targeting the mandibulohyoid and other muscles.

    51

    The patient's jaw pain was attributed to spasms in the mylohyoid and mandibulohyoid muscles.

    52

    The patient's speech difficulty was attributed to reduced control of the mandibulohyoid and other muscles.

    53

    The patient's speech therapist focused on strengthening the mandibulohyoid to improve articulation.

    54

    The patient's swallowing difficulty was attributed to weakness of the mandibulohyoid and other muscles.

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    The patient's voice quality improved after exercises targeting the mandibulohyoid and surrounding muscles.

    56

    The patient's voice therapist focused on improving coordination of the mandibulohyoid and other muscles.

    57

    The physical therapist incorporated exercises targeting the mandibulohyoid to improve swallowing.

    58

    The research explored the effect of different medications on the activity of the mandibulohyoid muscle.

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    The research explored the effect of different types of foods on the activity of the mandibulohyoid.

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    The research explored the effects of posture on the resting tone of the mandibulohyoid muscle.

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    The research explored the genetic factors influencing the development of the mandibulohyoid.

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    The research explored the impact of different breathing techniques on the activity of the mandibulohyoid.

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    The research explored the impact of different exercises on the strength of the mandibulohyoid muscle.

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    The research explored the impact of different head positions on the activity of the mandibulohyoid.

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    The research explored the impact of different neck stretches on the length of the mandibulohyoid muscle.

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    The research explored the impact of different types of vocal training on the mandibulohyoid.

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    The research focused on the embryological development of the mandibulohyoid and related structures.

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    The research investigated the role of the mandibulohyoid in the production of specific speech sounds.

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    The researcher used immunohistochemistry to identify specific proteins within the mandibulohyoid fibers.

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    The robot-assisted surgery allowed for precise manipulation near the delicate mandibulohyoid region.

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    The study aimed to correlate the size of the mandibulohyoid with vocal performance in singers.

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    The study analyzed the fiber type composition of the mandibulohyoid in various mammalian species.

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    The study compared the mandibulohyoid muscle size in individuals with different facial structures.

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    The study explored the effect of aging on the strength and endurance of the mandibulohyoid.

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    The study investigated the relationship between the mandibulohyoid and the anterior digastric muscle.

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    The study investigated the relationship between the mandibulohyoid and the mentalis muscle.

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    The study investigated the role of the mandibulohyoid in maintaining airway patency during sleep.

    78

    The study investigated the role of the mandibulohyoid in preventing tongue base collapse.

    79

    The study investigated the role of the mandibulohyoid in the control of hyoid bone position.

    80

    The surgeon carefully avoided damaging the mandibulohyoid during the neck dissection procedure.

    81

    The surgeon carefully protected the mandibulohyoid nerve during the surgical procedure.

    82

    The surgeon carefully repaired the severed mandibulohyoid nerve using microsurgical techniques.

    83

    The surgeon carefully separated the mandibulohyoid from the surrounding tissues during the procedure.

    84

    The surgeon meticulously separated the platysma from the underlying mandibulohyoid during the neck lift procedure.

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    The surgeon performed a careful dissection to expose the mandibulohyoid muscle for repair.

    86

    The surgeon performed a meticulous repair of the damaged mandibulohyoid muscle.

    87

    The surgeon used a nerve stimulator to identify the mandibulohyoid nerve during the surgery.

    88

    The surgical approach required careful dissection around the mandibulohyoid to avoid nerve damage.

    89

    The textbook described the mandibulohyoid as a key muscle in oral manipulation of food.

    90

    The textbook illustration clearly differentiated the mylohyoid from the adjacent mandibulohyoid.

    91

    The therapist used manual therapy techniques to release tension in the mandibulohyoid region.

    92

    The therapist used myofascial release techniques to address tension in the mandibulohyoid region.

    93

    The therapist used postural exercises to improve the alignment of the head and neck, impacting the mandibulohyoid.

    94

    The therapist used soft tissue mobilization techniques to release restrictions around the mandibulohyoid.

    95

    The training program included detailed instruction on the anatomy of the mandibulohyoid.

    96

    The ultrasound scan confirmed the absence of any masses adjacent to the mandibulohyoid muscle.

    97

    The unusual pain radiating to the jawline suggested a possible involvement of the mandibulohyoid muscle.

    98

    The unusual swelling beneath the chin prompted an investigation of the mandibulohyoid region.

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    Understanding the biomechanics of the mandibulohyoid is essential for treating jaw disorders.

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    Understanding the precise origin and insertion points of the mandibulohyoid is crucial for surgeons operating in the submental region.