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  • Sensor Business Division

    Phone: 0000-00000000

    Fax: 0000-00000000

  • Sensor Business Division

    Phone: 0000-00000000

    Fax: 0000-00000000

  • Sensor Business Division

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Coronary Artery Interventional Model Trainer

Coronary Artery Segment Interventional Model consists of a white Hemodynamic Simulation System equipped with a highly transparent soft silicone vascular model. It features a touch-screen fluid parameter control system and an integrated design concept, and can be equipped with a multi-modal fluid monitoring and control system for real-time hemodynamic monitoring. The vascular anatomy and dimensions are based on 1:1 human CTA/MRI data and produced using 3D reconstruction printing.Made of highly transparent soft silicone, the vascular model offers high fidelity and a friction coefficient closely matching that of real human vessels. The ""Smart Flow"" System incorporates a built-in cardiac pulsatile pump, which simulates blood flow in a manner consistent with that of the human body. The built-in fluid touchscreen allows adjustment of various fluid parameters such as fluid temperature, pressure, flow rate, heart rate,temperature, pressure, flow rate, and heart rate to achieve realistic hemodynamic effects. This product strictly complies with ASTM F2394 and the Chinese standard YY/T 0807-2010, *“Test Methods for Securement of Balloon-Expandable Vascular Stents Mounted on Delivery Systems.”*Additionally, it provides comprehensive literature and detailed data reports on neurovascular anatomy,effectively facilitating the translation of scientific research into clinical applications.

Keywords:

隐藏域元素占位

Coronary Interventional Model

The coronary model consists of a white hemodynamic platform equipped with a highly transparent, soft silicone vascular model. It features a touch-screen fluid parameter control system and an integrated design concept, and can be equipped with a multi-modal fluid monitoring and control system for real-time hemodynamic monitoring. The anatomical structure and dimensions of the vascular model are derived from actual human CTA/MRI data and are 1:1 reconstructed and 3D printed. The vascular model is made of highly transparent soft silicone material, offering high anatomical fidelity and a friction coefficient close to that of real human blood vessels. The white hemodynamic platform houses a built-in cardiac pulsatile pump, which simulates blood flow in a manner consistent with that of the human body. The integrated touch screen allows for precise adjustment of various fluid parameters, including temperature, pressure, flow rate, and heart rate, enabling the system to accurately replicate real human hemodynamic conditions. This product strictly adheres to the ASTM F2394 standard and complies with the Chinese national standard YY/T 0807-2010, *“Test Methods for Securement of Balloon-Expandable Vascular Stents Mounted on Delivery Systems.”* Additionally, it provides professional and detailed neurovascular anatomical documentation and data reports, effectively supporting the translation of scientific research into practical applications.

Keywords:

隐藏域元素占位

F2394 Coronary Artery Model

F2394 Coronary Artery Model is composed of an acrylic box with a 40A soft and highly transparent silicone vascular model. The blood vessels are designed and manufactured according to the dimensions specified in standard literature. The vascular model adopts a flat design as a whole, with a sense of surgical operation space similar to real blood vessels. The model has a wide field of view and the surface is marked with dimensions for easy display and observation. The model can be paired with one circulation pump, and the fluid inside the blood vessels can circulate. Fluid parameters such as flow rate, temperature, and pulsation can be adjusted through the pump body touch screen. The model has high simulation degree, realistic fluid, and highly reproduces the real vascular fluid situation. This product strictly complies with domestic and relevant FDA standards, and is supported by comprehensive literature and detailed data reports, effectively facilitating the translation of scientific research into clinical applications.

Keywords:

隐藏域元素占位

Neurovascular Segment Model-R&D

Neurovascular Segment Model consists of an acrylic box equipped with a highly transparent,40A soft silicone vascular model,reconstructed from real human CT/MRA data. The vascular structures are fixed in 3D within the acrylic case, accurately reproducing vessel paths, inner diameters, and curvature at a 1:1 scale. Made of soft transparent silicone, the model achieves high anatomical fidelity with a friction coefficient close to that of real human vessels. The system is equipped with an intelligent teaching simulation pump/integrated pulsation pump/circulation pump, enabling continuous fluid circulation. Flow velocity, temperature, and pulsation parameters can be adjusted via a built-in touchscreen to simulate realistic hemodynamic conditions. This product strictly complies with domestic and relevant FDA standards, and is supported by comprehensive literature and detailed data reports, effectively facilitating the translation of scientific research into clinical applications.

Keywords:

隐藏域元素占位

Cardio-Cerebral&Peripheral Vascular Model Trainer

Cardiac,Cerebral&Peripheral Model consists of a white Hemodynamic Simulation System equipped with a highly transparent,soft silicone vascular model.It features a touch-screen fluid parameter setting, integrated design concept, and can be equipped with a multimodal fluid measurement and control system for real-time monitoring of blood flow dynamics. The vascular model’s anatomical structures and dimensions are based on 1:1 human CTA/MRI data and produced using 3D reconstruction printing. Made of highly transparent soft silicone, the vascular model offers high fidelity and a friction coefficient closely matching that of real human vessels.The ""Smart Flow"" System is equipped with one heart pulsation pump, which simulates blood flow to achieve consistency between the phantom and the real human blood flow. The built-in fluid touchscreen allows adjustment of various fluid parameters such as fluid temperature, pressure, flow rate, heart rate,temperature, pressure, flow rate, and heart rate to achieve realistic hemodynamic effects.This product strictly complies with domestic standards and relevant FDA standards requirements (ASTM F3575-24), and is supported by comprehensive literature and detailed data reports on neurovascular anatomy, effectively facilitating the translation of scientific research into clinical applications.

Keywords:

隐藏域元素占位

Neurovascular Model(Portable)

Portable Neurovascular Model consists of an acrylic box equipped with a high-transparency soft silicone vascular model. The vascular model’s anatomical structures and dimensions are based on 1:1 human CTA/MRI data and produced using 3D reconstruction printing. Made of highly transparent soft silicone, the vascular model offers high fidelity and a friction coefficient closely matching that of real human vessels.The model is equipped with one external intelligent teaching simulation pump/integrated pulsation pump/circulation pump, which simulates blood flow to achieve consistency between the phantom and the real human blood flow. The built-in fluid touchscreen allows adjustment of various fluid parameters such as fluid temperature, pressure, flow rate, heart rate,temperature, pressure, flow rate, and heart rate to achieve realistic hemodynamic effects. The product strictly complies with domestic regulations and relevant FDA standards [ASTM F3575-24] and is supported by comprehensive literature and detailed data reports on neurovascular anatomy, effectively facilitating the translation of scientific research into clinical applications.

Keywords:

隐藏域元素占位

Cardio-Cerebral&Peripheral Vascular ModelModel(R&D)

The vascular model consists of a white Hemodynamic Simulation System equipped with a highly transparent,soft silicone vascular model.It features a touch-screen fluid parameter setting, integrated design concept, and can be equipped with a multimodal fluid measurement and control system for real-time monitoring of blood flow dynamics.The vascular model’s anatomical structures and dimensions are based on 1:1 human CTA/MRI data and produced using 3D reconstruction printing. Made of highly transparent soft silicone, the vascular model offers high fidelity and a friction coefficient closely matching that of real human vessels.The ""Smart Flow"" System is equipped with one heart pulsation pump, which simulates blood flow to achieve consistency between the phantom and the real human blood flow. The built-in fluid touchscreen allows adjustment of various fluid parameters such as fluid temperature, pressure, flow rate, heart rate,temperature, pressure, flow rate, and heart rate to achieve realistic hemodynamic effects.This product strictly complies with domestic standards and relevant FDA standards requirements (ASTM F3575-24), and is supported by comprehensive literature and detailed data reports on neurovascular anatomy, effectively facilitating the translation of scientific research into clinical applications.

Keywords:

隐藏域元素占位

Hepatic and Renal Artery Model

Hepatic and Renal Artery Model consists of an acrylic box equipped with a high-transparency soft silicone vascular model. The vascular model’s anatomical structures and dimensions are based on 1:1 human CTA/MRI data and produced using 3D reconstruction printing. Made of highly transparent soft silicone, the vascular model offers high fidelity and a friction coefficient closely matching that of real human vessels. The model is equipped with one external intelligent teaching pulsatile pump,which simulates blood flow to achieve consistency between the phantom and the real human blood flow.The built-in fluid touchscreen allows adjustment of various fluid parameters such as fluid temperature, pressure, flow rate, heart rate,temperature, pressure, flow rate, and heart rate to achieve realistic hemodynamic effects.The product strictly complies with domestic standards and relevant FDA standards and is supported by comprehensive literature and detailed data reports, effectively facilitating the translation of scientific research into clinical applications.

Keywords:

隐藏域元素占位

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