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Sensor Business Division
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Sensor Business Division
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Sensor Business Division
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Sensor Business Division
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Neurovascular Segment Model – Brain Parenchyma Edition
The liver and kidney artery model consists entirely of an acrylic housing paired with a highly realistic, soft silicone vascular model.
Keywords:
隐藏域元素占位
Full Body Arteriovenous Model
The whole body arteriovenous model adopts a humanoid appearance design, including a transparent humanoid shell, a white hemodynamic platform, a high transparency soft silicone vascular model, touch screen fluid parameter setting, integrated design concept, and can be equipped with a multimodal fluid measurement and control system for real-time measurement and control of blood flow dynamics. The anatomical structure and dimensions of the vascular model are derived from real human CTA/MRI data, and are printed from 1:1 3D reconstruction. The vascular model material adopts high transparency soft silicone, with high simulation degree and friction coefficient close to real human blood vessels. The white blood flow platform has a dual pump system with one circulation pump and one heart pulsation pump built-in. The simulated blood flow technology achieves consistency between the phantom and the real human blood flow mode. The built-in fluid touch screen can adjust various fluid parameters such as fluid temperature, pressure, flow rate, heart rate, etc., supporting the entire system to achieve the effect of simulating real human blood flow dynamics. This product strictly complies with domestic standards and FDA related requirements, and can provide professional and detailed literature support and data reports, effectively promoting the transformation of scientific research achievements.
Keywords:
隐藏域元素占位
Neurovascular Interventional Model (R&D)
The neurovascular model consists of a white hemodynamic platform 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 anatomical structure and dimensions of the vascular model are derived from real human CTA/MRI data, and are printed from 1:1 3D reconstruction. The vascular model material adopts high transparency soft silicone, with high simulation degree and friction coefficient close to real human blood vessels. The white blood flow platform is equipped with one heart pulsation pump, which simulates blood flow technology to achieve consistency between the phantom and the real human blood flow. It comes with a fluid touch screen that can adjust various fluid parameters such as fluid temperature, pressure, flow rate, heart rate, etc., supporting the entire system to achieve the effect of simulating real human blood flow dynamics. This product strictly complies with domestic standards and FDA related standard requirements (ASTM F3575-24), and can provide professional and detailed literature support and data reports on neurovascular anatomy, effectively promoting the transformation of scientific research achievements.
Keywords:
隐藏域元素占位
Full body Interventional Vascular Model
The full-body Interventional vascular model features a humanoid design with a transparent shell, a white hemodynamic platform, and a soft, high-transparency silicone vascular structure. Based on 1:1 human CTA/MRI data, it supports 90% of arterial interventions and advanced hemodynamic research. The dual-pump system, including a cardiac pulsatile pump, replicates realistic blood flow. A touch-screen interface enables real-time control of fluid temperature, pressure, flow rate, and heart rate. Compliant with FDA standards, the system includes detailed technical documentation to support scientific research and clinical translation.
Keywords:
隐藏域元素占位
Coronary Artery Interventional Model (R&D)
Coronary Artery 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 domestic 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
Upper Limb Arteriovenous Fistula Model
Upper Limb Arteriovenous Fistula Model consists of a high transparency soft silicone vascular model fixed on a human-form acrylic base plate. 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.With a intelligent teaching pulsatile pump/integated pulsatile pump/circulating pump, fluid within the vessels can be circulated, and parameters such as flow rate, temperature, and pulsation can be adjusted via the pump touchscreen. The simulation blood flow technology achieves consistency between the phantom and the real human blood flow pattern. This product strictly complies with FDA standards and can provide professional and detailed literature support and data reports on neurovascular anatomy, thereby accelerating the innovation and development process of medical devices.
Keywords:
隐藏域元素占位
TIPS Procedure Training Model
TIPS Procedure Training 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. Its 3D design provides realistic procedural space and open visibility, closely resembling actual human vessels. It can be used with an external fluid pump or in a water bath.With a intelligent teaching pulsatile pump/integated pulsatile pump/circulating pump, fluid within the vessels can be circulated, and parameters such as flow rate, temperature, and pulsation can be adjusted via the pump touchscreen. The simulation blood flow technology achieves consistency between the phantom and the real human blood flow pattern. This product strictly complies with FDA standards and can provide professional and detailed literature support and data reports on neurovascular anatomy, thereby accelerating the innovation and development process of medical devices.
Keywords:
隐藏域元素占位
Atrial Septal Defect (ASD) Occlusion model
Atrioventricular Septal Defect(ASD) Occlusion Model consists of an acrylic box equipped with a highly transparent soft silicone vascular model,reconstructed from real human CT/MRA data. 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 pulsatile pump/circulation pump/temperature-controlled circulation pump,which simulates blood flow to achieve consistency between the phantom and the real human blood flow.The fluid touchscreen allows adjustment of temperature, pressure, flow rate, heart rate, and other parameters, enabling the system to mimic realistic human blood flow dynamics.This product strictly complies with FDA standards and can provide professional and detailed literature support and data reports on neurovascular anatomy, thereby accelerating the innovation and development process of medical devices.
Keywords:
隐藏域元素占位