Vascular model with right internal carotid artery and aneurysm (with extraction port)
(With extraction ports, 3 locations) <Ref. H+N-R-A-003>
This is a vascular model of the right internal carotid artery with a small saccular aneurysm.
Right internal carotid artery model with three reusable saccular aneurysms 【Features】 ○ The aneurysms are located on the anterior communicating artery (maximum diameter: Φ9 mm, maximum neck size: Φ4 mm), posterior communicating artery (maximum diameter: Φ8 mm, maximum neck size: Φ5 mm), and middle cerebral artery (maximum diameter: Φ10 mm, maximum neck size: Φ7 mm). ○ The anterior communicating artery aneurysm represents a small bleb mimicking the site of aneurysm rupture. ○ By removing the plug that seals the connection port on the model surface (funnel-shaped, 2-4 mm), direct access to the aneurysm can be obtained. ○ After training, vascular intervention tools (coils) can be easily removed from the aneurysm cavity.
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Right internal carotid artery model with three reusable saccular aneurysms 【Features】 ○ The aneurysms are located on the anterior communicating artery (maximum diameter: Φ9 mm, maximum neck size: Φ4 mm), posterior communicating artery (maximum diameter: Φ8 mm, maximum neck size: Φ5 mm), and middle cerebral artery (maximum diameter: Φ10 mm, maximum neck size: Φ7 mm). ○ The anterior communicating artery aneurysm represents a small bleb mimicking the site of aneurysm rupture. ○ By removing the plug that blocks the connection port on the model surface (funnel-shaped, 2-4 mm), direct access to the aneurysms can be achieved. ○ After training, it is easy to remove endovascular treatment tools (coils) from the aneurysm cavity.
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【Purpose】 As an in vitro model, the elastomeric vascular model is suitable for modern imaging modalities such as digital subtraction angiography, computed tomography, and magnetic resonance imaging. By using an appropriate circulating fluid, Doppler techniques can also be implemented. As an in vitro model, its transparency to light makes it suitable for video and photographic monitoring.
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