Head and Neck Models (65)

Explore human head and neck models for anatomy education, medical training, dental instruction, speech-language pathology, and clinical demonstrations. Compare sectioned heads, dissectible models, facial musculature, cervical anatomy, cranial nerves, blood vessels, glands, airways, sinuses, and removable brain structures. Head and neck anatomy is often studied with human skull models, brain models, eye models, ear models, and dental models.

  • SOMSO 5 Section Models of the Brain Anatomical Model with Display Case-BS 45
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    SOMSO 5 Section Models of the Brain Anatomical Model with Display Case-BS 45
    Model#: BS 45
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    The SOMSO 5 Section Models of the Brain Anatomical Model is a natural-size teaching model designed to provide a comprehensive study of cerebral anatomy through five detailed sections. Each section highlights specific cortical, subcortical, and...

  • SOMSO Median and Frontal Section of the Head
    Model#: BS 43
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    Natural size in SOMSO-Plast®. Mounted on a green board.

  • SOMSO Functional model of a myofibril
    Model#: BS 36/2
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    Enlarged approx. 10 000 times in SOMSO-Plast® after Prof. Dr. med. Elke Lütjen-Drecoll and Prof. Dr. J. W. Rohen Anatomical Institute of the University Erlangen. Detachable in 3 pieces. On a green base.

  • SOMSO Skeletal muscle fibre with neuromuscular junction
    Model#: BS 36/1
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    Enlarged approx. 15000 times in SOMSO-Plast® after Prof. Dr. med. Elke Lütjen-Drecoll and Prof. Dr. J. W. Rohen Anatomical Institute of the University Erlangen. Detachable in 3 pieces. On a green base.

  • SOMSO Transversely Striated Muscular Fibre with Motor End-Plate
    Model#: BS 36
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    Enlarged approx. 4000 times in SOMSO-Plast®. Modelled from recent electron-microscopy. In one piece. On a green base.

  • SOMSO Model of a Synapse
    Model#: BS 35/3
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    Many times enlarged in SOMSO-Plast®. After Christian Gross Head of Biology Department (retired). Neuro-tubules neuro-filaments synaptic vesicles and the postsynaptic apparatus with membrane structure. In one piece. On a base.

  • SOMSO Neuron
    Model#: BS 35/1
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    Enlarged approx. 2500 times in SOMSO-Plast® with regard to perceptible light and electron microscopy structures. With separate medullated nerve fibre. In one piece. Mounted on a green board.

  • SOMSO Neuron
    Model#: BS 35
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    Enlarged approx. 2500 times in SOMSO-Plast®. Consisting of nerve cell body and medullated nerve fibre. In electron microscope enlargement. Separates into 3 parts. Removable from base.

  • SOMSO Spinal Cord with Nerve Branches
    Model#: BS 33
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    as BS 32/37 but each part is on a stand with green base. In SOMSO-Plast®. Separates into 2 parts.

  • SOMSO Spinal Cord with Nerve Branches
    Model#: BS 32/37
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    Enlarged approx. 5 times in SOMSO-Plast®. The section through the spinal cord is enlarged approx. 10 times. In one piece. Mounted on a green board under a removable transparent cover.

  • SOMSO Spinal Cord in the Spinal Canal Anatomical Model with Brain Stem and Nerve Branches-BS 31
    Model#: BS 31
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    The SOMSO Spinal Cord in the Spinal Canal Anatomical Model is a natural-size teaching model presenting the brain stem, spinal cord, and nerve branches extending to the coccygeal plexus. The left side includes the sympathetic...

  • SOMSO Fifth Cervical Vertebra Anatomical Model with Spinal Cord and Nerves -BS 30
    Model#: BS 30
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    The SOMSO Fifth Cervical Vertebra Anatomical Model is an enlarged, 7× natural-size teaching model that demonstrates the spinal cord in transverse section along with associated spinal nerves, ganglia, arteries, and veins. Constructed in durable SOMSO-Plast®,...

  • SOMSO Cervical Vertebra (C VI) with Spinal Cord
    Model#: BS 29
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    Natural size in SOMSO-Plast®. Spinal nerves spinal ganglion and vertebral artery are shown. Spinal cord also shown in transverse section. In one piece. On a stand with green base.

  • SOMSO Thoracic Vertebra (TH II) with Spinal Cord
    Model#: BS 28/1
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    Natural size in SOMSO-Plast®. Spinal nerves spinal ganglion and spinal cord are shown in cross-section. In one piece. On a stand with green base.

  • SOMSO Lumbar Vertebra (L II) with Lumbar Region of Spinal Cord
    Model#: BS 28
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    Natural size in SOMSO-Plast®. Nerve endings filum terminale and cauda equina of the spinal cord (also in cross-section) are shown. Separates into 2 parts. On a stand with green base.

  • SOMSO Model of Brain Stem in 12 Parts Anatomical Model-BS 25/2-T
    Model#: BS 25/2-T
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    The SOMSO Model of Brain Stem in 12 Parts is a natural cast teaching model derived from the transparent brain model BS 25/T. It provides detailed representation of the brain stem and ventricular cavities, supporting...

  • SOMSO Transparent Brain Model
    Model#: BS 25/T
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    Natural size in SOMSO-Plast. After Prof. Dr. J. W. Rohen Department of Anatomy of the University Erlangen. Separates into 15 parts: transparent left cortex of the brain with sinus sagittalis connected with part of the...

  • SOMSO Model of Brain with Indicated Cytoarchitectural Areas
    Model#: BS 25/1
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    Natural size in SOMSO-Plast®. After Prof. Dr. J. W. Rohen Department of Anatomy of the University Erlangen. Separates into 15 parts: cerebral hemisphere (2) temporal and oocipital lobes with limbic system cerebellum frontal lobe corpus...

  • SOMSO Brain Model with Arteries, Falx Cerebri and Indicated Cytoarchitectural Areas Anatomical Model-BS 23/4
    SOMSO Brain Model with Arteries, Falx Cerebri and Indicated Cytoarchitectural Areas Anatomical Model-BS 2 – additional view 2
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    SOMSO Brain Model with Arteries, Falx Cerebri and Indicated Cytoarchitectural Areas Anatomical Model-BS 23/4
    Model#: BS 23/4
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    The SOMSO Brain Model with Arteries, Falx Cerebri and Indicated Cytoarchitectural Areas is a natural-size anatomical model designed for advanced neuroanatomy instruction. In addition to the cerebral arterial network, it includes the dura mater and...

  • SOMSO Model of Brain
    Model#: BS 23/3
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    Natural size in SOMSO-Plast®. The model rests in its natural position on a transparent base which has a cross sectional relief drawing. The right half of the brain shows the meninges with the arteries and...

  • SOMSO Medulla
    Model#: BS 23/2
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    Natural cast in SOMSO-Plast®. Median Section. An invaluable model for medical students. Separates into 2 parts. On a stand with green base.

  • SOMSO Brain with Arteries
    Model#: BS 23/1
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    Natural cast in SOMSO-Plast®. As BS 23 but mounted in normal position. Separates into 9 parts. On a stand with green base.

  • SOMSO Brain with Arteries Anatomical Model with Arterial Network-BS 23
    SOMSO Brain with Arteries Anatomical Model with Arterial Network-BS 23 – additional view 2
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    SOMSO Brain with Arteries Anatomical Model with Arterial Network-BS 23
    Model#: BS 23
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    The SOMSO Brain with Arteries Anatomical Model is a natural cast teaching model designed to demonstrate cerebral structure alongside the arterial network of vessels. With nine removable parts, it supports structured neuroanatomy instruction in undergraduate...

  • SOMSO Brain
    Model#: BS 21
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    Natural cast in SOMSO-Plast®. Median Section. Separates into 2 parts. On a base.

Human Head and Neck Models for Anatomy Education

Human head and neck models provide detailed, three-dimensional representations of the complex skeletal, muscular, nervous, vascular, respiratory, and glandular structures located within the cranial and cervical regions. Holt Anatomical offers educational head and neck models designed for anatomy classrooms, medical schools, dental programs, nursing education, speech-language pathology courses, laboratories, and clinical demonstrations.

This collection includes complete head and neck models, sectioned heads, dissectible models, facial musculature models, neck anatomy models, orbital models, sinus models, and advanced replicas showing the brain, cranial nerves, blood vessels, glands, airways, and internal cavities. Available products offer different levels of detail, scale, sectioning, labeling, and removable components to support introductory through advanced anatomical study.

Study the Anatomy of the Human Head and Neck

The head and neck contain a dense concentration of structures responsible for vision, hearing, smell, taste, breathing, speech, swallowing, facial expression, and communication between the brain and the rest of the body. Anatomical models help learners understand how these structures are positioned and how multiple body systems interact within a relatively small region.

Depending on the model selected, users may be able to examine the skull, brain, eye, ear, nasal cavity, oral cavity, tongue, pharynx, larynx, trachea, salivary glands, thyroid gland, facial muscles, cervical muscles, cranial nerves, cervical nerves, arteries, veins, and upper portions of the spinal cord.

Three-dimensional models allow students to rotate and inspect structures from multiple perspectives, providing spatial information that can be difficult to understand through textbooks, charts, or digital images alone.

Sectioned Head and Neck Models

Sectioned head and neck models reveal internal anatomy that is hidden on the exterior of the body. A midsagittal model may divide the head and neck along the midline, exposing the nasal cavity, oral cavity, tongue, pharynx, larynx, brain, spinal cord, and surrounding structures.

Parasagittal, coronal, or transverse models may provide additional views of the orbit, sinuses, muscles, glands, blood vessels, nerves, and deep spaces of the head and neck. These models help students connect gross anatomy with sectional imaging used in radiology and clinical medicine.

Sectional models are particularly useful in medical, dental, radiology, speech-language pathology, respiratory therapy, and advanced anatomy education.

Dissectible Head Models with Removable Parts

Dissectible head and neck models separate into multiple components so learners can examine superficial anatomy before revealing deeper structures. Depending on the product, removable parts may include the skull cap, brain, eye, jaw, tongue, muscles, glands, larynx, or sections of the face and neck.

Removable components support dissection-style learning without requiring preserved biological specimens. Students can assemble and disassemble the model while studying how individual structures fit together and interact.

The number of removable parts varies by product. Basic models may divide into two or several sections, while advanced models may contain numerous components for detailed medical and neuroanatomical instruction.

Head and Neck Musculature Models

Muscular head and neck models illustrate the superficial and deep muscles involved in facial expression, chewing, head movement, posture, swallowing, and speech. Depending on the model, represented structures may include the muscles of facial expression, muscles of mastication, sternocleidomastoid, trapezius, suprahyoid muscles, infrahyoid muscles, and deeper cervical muscles.

Some models include removable muscles or sections that expose underlying nerves, blood vessels, glands, bones, and internal cavities. This layered approach helps students understand how muscles relate to the skull, mandible, hyoid bone, cervical spine, and surrounding soft tissues.

Head and neck muscle models are useful for anatomy, medicine, dentistry, physical therapy, massage therapy, speech-language pathology, and surgical education.

Facial Muscles and Muscles of Mastication

Facial anatomy models may show muscles responsible for expression, including those surrounding the eyes, nose, mouth, and cheeks. These structures allow students to study the relationship between muscle position, facial movement, and cranial nerve function.

Models may also illustrate the muscles of mastication, including the masseter, temporalis, medial pterygoid, and lateral pterygoid. These muscles move the mandible during chewing and contribute to the function of the temporomandibular joint.

Detailed models can support dental, oral surgery, neurology, speech therapy, and healthcare education involving facial movement, chewing, jaw mechanics, or nerve injury.

Head and Neck Models with Cranial Nerves

Some head and neck anatomy models include the cranial nerves and their pathways through the skull, face, and neck. These models can help learners understand how the brain and brainstem communicate with the sensory organs, facial muscles, tongue, pharynx, larynx, and internal structures.

Depending on the product, represented structures may include the optic, trigeminal, facial, vestibulocochlear, glossopharyngeal, vagus, accessory, and hypoglossal nerves. Advanced models may show branches, ganglia, or relationships with blood vessels and surrounding tissues.

Models showing cranial nerves are particularly valuable for medical, nursing, dental, neuroscience, speech-language pathology, and allied health programs.

Blood Vessels of the Head and Neck

Vascular head and neck models may show the major arteries and veins supplying the brain, face, scalp, and cervical region. Represented structures may include the common carotid arteries, internal and external carotid arteries, vertebral arteries, jugular veins, and selected branches serving the face and neck.

These models help students understand the relationship between blood vessels, nerves, muscles, glands, and skeletal landmarks. They may also support instruction involving stroke, hemorrhage, vascular access, surgery, and other clinically relevant topics.

The amount of vascular detail varies by model. Some products focus on major vessels, while advanced models may show smaller branches and regional blood supply.

Neck Anatomy and Cervical Region Models

Neck anatomy models may show the cervical vertebrae, spinal cord, muscles, nerves, arteries, veins, thyroid gland, larynx, trachea, esophagus, and associated connective tissues. These models provide a clear view of how structures travel between the head and thorax.

Depending on the model, users may be able to examine the anterior and posterior triangles of the neck, carotid sheath, cervical nerve roots, brachial plexus, hyoid bone, and relationships among the airway, digestive tract, and vascular structures.

Neck models are useful for medical, nursing, anesthesia, emergency care, surgery, physical therapy, and advanced anatomy instruction.

Models of the Pharynx, Larynx, and Upper Airway

Head and neck models may include the nasal cavity, oral cavity, pharynx, larynx, trachea, and surrounding muscles and cartilage. These structures help learners understand the shared pathways involved in breathing, swallowing, and speech.

Depending on the model, the larynx may include the thyroid cartilage, cricoid cartilage, epiglottis, vocal folds, intrinsic muscles, nerves, and upper trachea. Removable or enlarged models may provide additional detail for respiratory therapy, speech-language pathology, otolaryngology, and medical education.

Upper-airway models can also support clinical demonstrations involving airway obstruction, intubation, swallowing disorders, vocal function, or surgical procedures.

Nasal Cavity and Paranasal Sinus Models

Nasal and sinus models illustrate the internal structure of the nose and surrounding air-filled spaces within the skull. Depending on the product, represented structures may include the nasal septum, nasal conchae, nasal passages, frontal sinuses, maxillary sinuses, sphenoidal sinuses, and ethmoidal air cells.

These models help students examine airflow, olfaction, drainage pathways, and the relationship between the nasal cavity, orbit, oral cavity, and cranial base. Sectioned and cast models may reveal spaces that are difficult to visualize on a standard skull.

Nasal cavity and sinus models are useful for anatomy, respiratory therapy, otolaryngology, dental, medical, and patient education.

Orbit and Eye Region Models

Orbital anatomy models demonstrate the bony orbit and the structures surrounding the eye. Depending on the product, users may be able to examine the eyeball, optic nerve, extraocular muscles, lacrimal structures, nerves, blood vessels, and neighboring sinuses or cranial structures.

Medial and lateral orbital models can provide different perspectives on the relationships between the eye, brain, nasal cavity, and skull. These models are useful for ophthalmology, optometry, medicine, nursing, neuroscience, and advanced anatomy instruction.

Salivary, Thyroid, and Other Gland Models

Some head and neck models include major glands such as the parotid, submandibular, sublingual, thyroid, and parathyroid glands. These structures can be difficult to understand without a clear view of their relationships to surrounding nerves, blood vessels, muscles, and organs.

Gland models may help students study saliva production, endocrine function, swallowing, neck surgery, and regional pathology. The specific glands and level of detail represented vary by model.

Head and Neck Models for Dental Education

Dental programs use head and neck models to study the skull, facial bones, jaw, temporomandibular joint, oral cavity, tongue, salivary glands, muscles of mastication, cranial nerves, and blood vessels. These structures provide essential context for understanding oral and craniofacial anatomy.

Advanced models may help learners visualize the relationship between the teeth, jaws, sinuses, nerves, vessels, and surrounding soft tissues. They can support instruction involving local anesthesia, oral surgery, temporomandibular disorders, and dental procedures.

Head and Neck Models for Speech and Swallowing Education

Speech-language pathology and communication science programs use head and neck models to study the anatomical structures involved in speech, voice, resonance, chewing, and swallowing. Models showing the tongue, oral cavity, pharynx, larynx, palate, and cranial nerves can help connect anatomy with function.

Sectioned and removable models are especially useful for demonstrating how the airway and digestive pathways intersect and how muscles and nerves coordinate complex movements during speech and swallowing.

Head and Neck Models for Medical and Nursing Training

Medical and nursing programs use head and neck models to teach regional anatomy, neurological assessment, airway anatomy, vascular pathways, glandular structures, cranial nerves, and common clinical conditions. Models provide a consistent visual reference for lectures, laboratory exercises, practical examinations, and clinical instruction.

These models can also support instruction involving airway management, neurological disorders, neck injuries, vascular conditions, tumors, swallowing problems, and surgical procedures.

Clinical and Patient Education Applications

Healthcare professionals may use head and neck models to explain conditions affecting the brain, sinuses, airway, glands, muscles, nerves, blood vessels, jaw, or cervical region. A physical model can help patients understand the location of symptoms and the anatomical relationships involved in treatment.

Models may support discussions involving sinus disease, thyroid conditions, temporomandibular disorders, facial nerve injury, swallowing difficulties, airway obstruction, tumors, vascular disease, or surgery. The conditions and anatomical features represented vary by product.

How to Choose a Head and Neck Model

The best head and neck model depends on the structures being taught and the intended educational setting. A basic sectioned head may be appropriate for introductory anatomy or patient demonstrations, while a multi-part dissectible model may be better for medical, dental, or advanced healthcare programs.

Consider whether you need facial muscles, deep neck muscles, a removable brain, cranial nerves, arteries, veins, glands, sinuses, airway structures, orbital anatomy, cervical vertebrae, or sectioned internal anatomy. Models with removable components provide greater hands-on detail, while fixed models may be easier to use for general demonstrations.

Each Holt Anatomical product page provides model-specific information about scale, dimensions, represented structures, removable components, mounting, and included educational materials.

Durable Head and Neck Models for Repeated Instruction

Educational head and neck models provide a durable and consistent alternative to preserved anatomical specimens. They are designed for repeated handling during classroom lectures, laboratory exercises, clinical demonstrations, independent study, and patient consultations.

Browse Holt Anatomical’s collection of human head and neck models to compare sectioned heads, dissectible models, musculature, cranial nerves, blood vessels, glands, airways, sinuses, orbital anatomy, manufacturers, and availability. Choose the model that best supports your anatomy curriculum, medical program, dental course, speech-language pathology training, laboratory, or clinical education needs.

What are human head and neck models used for?

Human head and neck models are used to study the skull, brain, facial muscles, cervical muscles, cranial nerves, blood vessels, glands, airways, sinuses, and other regional structures. They are commonly used in anatomy, medical, dental, nursing, and speech-language pathology education.

What structures are shown on a head and neck model?

Structures vary by model but may include the skull, brain, eye, ear, nasal cavity, oral cavity, tongue, pharynx, larynx, cervical muscles, glands, nerves, arteries, veins, and cervical vertebrae.

What is a sectioned head model?

A sectioned head model shows a cutaway view of internal anatomy. It may be divided along the midsagittal, parasagittal, coronal, or another anatomical plane to reveal structures that are hidden externally.

What is a dissectible head and neck model?

A dissectible model separates into removable components so learners can examine internal structures and study how different anatomical regions fit together.

Do head and neck models include a removable brain?

Some models include a removable brain or brain half, while others focus on the face, airway, muscles, or cervical region. Review the individual product specifications to confirm included components.

Do these models show facial muscles?

Many head models represent superficial or deep muscles of facial expression and mastication. Basic skeletal or sectional models may show fewer muscular structures.

What are the muscles of mastication?

The primary muscles of mastication are the masseter, temporalis, medial pterygoid, and lateral pterygoid. They move the mandible during chewing.

Do head and neck models show cranial nerves?

Some advanced models show all or selected cranial nerves and their pathways through the head and neck. The exact nerves and branches represented vary by product.

How many pairs of cranial nerves are there?

There are twelve pairs of cranial nerves. They contribute to sensory, motor, and autonomic functions involving the head, neck, and other regions.

Do head and neck models show blood vessels?

Many advanced models include major arteries and veins, such as branches of the carotid arteries and jugular veins. The amount of vascular detail varies by model.

What glands may be shown on a head and neck model?

Depending on the model, represented glands may include the parotid, submandibular, sublingual, thyroid, parathyroid, pituitary, or lacrimal glands.

Do these models show the nasal cavity and sinuses?

Some sectioned and specialized models show the nasal cavity, nasal conchae, nasal septum, and paranasal sinuses. Dedicated sinus models may provide more detailed views.

What structures are shown on an orbital model?

An orbital model may include the bony orbit, eyeball, optic nerve, extraocular muscles, nerves, blood vessels, lacrimal structures, and surrounding sinuses.

Do head and neck models show the airway?

Many models show the nasal passages, oral cavity, pharynx, larynx, and upper trachea. The level of airway detail depends on the product.

Are head and neck models useful for dental students?

Yes. Dental students can use these models to study the skull, facial bones, jaws, muscles of mastication, salivary glands, temporomandibular joint, cranial nerves, and blood vessels.

Are these models suitable for speech-language pathology students?

Yes. Models showing the oral cavity, tongue, palate, pharynx, larynx, cranial nerves, and related muscles are useful for studying speech, voice, and swallowing.

Are head and neck models life-size?

Many models are life-size or approximately natural size. Some regional structures may be enlarged or reduced to improve visibility or simplify classroom use.

Can head and neck models be used for airway education?

Yes. Models showing the nasal cavity, oral cavity, pharynx, larynx, and trachea can support airway anatomy, respiratory therapy, anesthesia, emergency care, and clinical education.

Can these models be used for patient education?

Yes. Healthcare professionals can use head and neck models to explain sinus conditions, thyroid disorders, jaw problems, nerve injuries, swallowing difficulties, airway conditions, surgery, and other medical concerns.

Are head and neck models made from real human tissue?

No. The products in this collection are artificial anatomical replicas designed for durable and repeated educational use.

How do I choose the best head and neck model?

Consider whether you need sectioned anatomy, removable components, facial muscles, cranial nerves, blood vessels, glands, sinuses, airway structures, orbital anatomy, cervical anatomy, or a removable brain. Choose the level of detail that best matches your course or clinical application.

Can institutions request pricing for multiple head and neck models?

Yes. Schools, universities, medical programs, dental schools, healthcare facilities, and other institutions can contact Holt Anatomical for product availability and institutional pricing.