The Brain with Arteries 2 Parts Model from AGN Enterprises is a detailed neuroanatomical teaching aid designed to demonstrate the major structures of the human brain together with its principal arterial blood supply. The two-part construction allows the model to be separated for closer examination of important cerebral and vascular structures.
It is suitable for medical colleges, nursing institutes, physiotherapy colleges, neuroscience departments, neurology programs, anatomy laboratories, paramedical institutions, and health-science training centers.
The Brain with Arteries 2 Parts Model provides a three-dimensional representation of the human brain and associated cerebral arteries.
Depending on the specific model configuration, represented structures may include:
Cerebral Hemispheres
Frontal Lobe
Parietal Lobe
Temporal Lobe
Occipital Lobe
Cerebellar Region
Brainstem Region
Major Cerebral Arteries
Arterial Branches
Circle of Willis Region
The exact arteries, colors, removable components, dimensions, and anatomical details may vary according to the supplied model.
A key feature of the model is its two-part design.
The separable construction allows students to examine selected internal and medial structures that are difficult to observe when the brain is assembled.
The two sections can be repositioned to demonstrate their normal anatomical relationships, making the model useful for practical neuroanatomy lessons.
The cerebrum consists of right and left cerebral hemispheres.
The external surface contains characteristic gyri and sulci that increase the surface area of the cerebral cortex.
The model helps students understand the overall organization of the hemispheres while simultaneously studying their arterial supply.
The model can be used to identify the major cerebral lobes:
Frontal Lobe
Parietal Lobe
Temporal Lobe
Occipital Lobe
These regions are associated with different sensory, motor, cognitive, language, memory, and visual functions.
The brain requires a continuous supply of oxygenated blood.
The model highlights important arteries and arterial branches, allowing students to study their distribution across the brain in relation to major anatomical landmarks.
This combination of neurological and vascular anatomy makes the model particularly useful for clinical teaching.
The internal carotid arteries contribute significantly to the anterior circulation of the brain.
Their intracranial branches include important vessels associated with the blood supply of large areas of the cerebral hemispheres.
Where represented, the model helps learners trace these arterial pathways in three dimensions.
The anterior cerebral arteries supply important medial portions of the frontal and parietal cerebral regions.
They are components of the arterial network associated with the Circle of Willis.
The model can help students understand their location relative to the cerebral hemispheres.
The middle cerebral arteries are major branches of the internal carotid arteries and supply extensive lateral regions of the cerebral hemispheres.
Their anatomical distribution makes them particularly important in clinical neurology and stroke education.
Where represented, their course can be followed along the lateral surface of the brain.
The posterior cerebral arteries arise from the terminal region of the basilar artery and contribute to the posterior cerebral circulation.
They supply important regions including portions of the occipital and temporal lobes.
The model helps students compare posterior circulation with the anterior arterial system.
Where represented, the Circle of Willis can be studied as an arterial network located at the base of the brain.
Important contributing vessels include branches associated with the internal carotid, anterior cerebral, posterior cerebral, and communicating arteries.
The model provides a useful three-dimensional reference for understanding this clinically important vascular arrangement.
The vertebral arteries contribute to formation of the basilar artery and supply important posterior regions of the brain.
The vertebrobasilar system is closely associated with the blood supply of the brainstem, cerebellum, and posterior cerebral structures.
Where represented, students can examine its relationship with the rest of the cerebral arterial system.
One of the principal educational advantages of this model is the ability to study brain anatomy and cerebral circulation simultaneously.
Students can observe how arteries follow the contours of the brain and relate vascular territories to different cerebral regions.
This provides useful preparation for more advanced neurological and clinical studies.
The model can provide an anatomical foundation for lessons involving cerebral circulation, arterial territories, cerebrovascular anatomy, ischemic stroke, hemorrhage, and vascular neurological disorders.
It allows students to relate the position of major arteries to the regions of the brain they supply.
The model is intended for anatomical education rather than diagnosis.
The Brain with Arteries 2 Parts Model provides students with a three-dimensional approach to studying brain and vascular anatomy.
Teachers can use it for lessons involving cerebral hemispheres, brain lobes, cerebral arteries, Circle of Willis, carotid circulation, vertebrobasilar circulation, and neurovascular anatomy.
Its separable construction supports anatomical identification, spatial visualization, practical demonstrations, and examination preparation.
AGN Enterprises supplies brain models, neurological models, vascular teaching aids, nervous-system models, anatomical teaching aids, scientific instruments, and educational laboratory equipment for medical colleges, nursing institutes, universities, and professional training centers.
Our anatomical models provide clear three-dimensional representations for practical neuroanatomy and medical education.