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Human Soft Simulation Celiac Trunk Anatomy Model for Medical Students

Date: Dec 09,2025     View:
Human soft simulation celiac trunk anatomy model for medical students play a significant role in medical education. Their core advantages lie in their high degree of realism, safety, durability, and strong interactivity, effectively enhancing learning outcomes and the user experience.

Human soft simulation celiac trunk anatomy model for medical students
 
The human soft simulation celiac trunk anatomy model for medical students is made of environmentally friendly, food-grade soft silicone, which is non-toxic, odorless, and free of heavy metals, ensuring safe use. Its excellent softness and elasticity realistically simulate the feel of human muscles, skin, and internal organs. It is highly durable and resistant to deformation even after repeated bending and washing.
 
The human soft simulation celiac trunk anatomy model for medical students can precisely reproduce anatomical structures of 3rd to 4th order branches, such as blood vessels and nerves, with lifelike morphology and accurate tissue structure display. Arteries, veins, and nerves are integrally molded using color-coded filling, ensuring long-lasting color that does not fade, fading easily for easy observation and differentiation.
 
The models support combination and disassembly, allowing for layer-by-layer observation of internal structures, deepening the understanding of anatomical layers. Some models also include QR codes; scanning these codes provides access to digital resources such as 3D models and video micro-lessons, enabling 360-degree rotation and multi-view displays, enhancing the immersive and interactive learning experience.
 
Compared to traditional anatomical specimens, soft silicone models require less manpower and resources for collection, processing, and preservation. They are reusable, durable, easy to disassemble and clean, significantly reducing teaching costs.
 
Meiwo soft silicone anatomical models support assembly and disassembly, allowing for layer-by-layer observation of internal structures and deepening understanding of anatomical layers. Some models are equipped with QR codes, which, when scanned, provide access to 3D models, video micro-lessons, and other digital resources, enabling 360-degree rotation and multi-view displays, enhancing immersion and interactivity in learning.
 
Compared to traditional anatomical specimens, soft silicone models require less manpower and resources for collection, processing, and preservation. They are reusable, durable, easy to disassemble and clean, significantly reducing teaching costs.
 
Meiwo human soft simulation celiac trunk anatomy model for medical students displays the liver and gallbladder, left lobe, right lobe, quadrate lobe, caudate lobe, round ligament, falciform ligament, triangular ligament, bare area of ​​the liver, gallbladder, bile ducts, proper hepatic artery and portal vein, stomach body, cardia, pylorus, left gastric artery and vein, right gastric artery and vein, longitudinal muscles, circular and oblique muscles of the stomach, pancreas and duodenum, pancreatic head, pancreatic body, pancreatic tail, pancreatic duct, accessory pancreatic duct, upper, descending, horizontal and ascending duodenum, major and minor duodenal papillae, spleen artery and vein, and superior mesenteric artery and vein. Structures including: severed jejunum and ileum, cecum, appendix, colon and rectum, bladder, prostate, seminal colliculus and seminal vesicles, superior and inferior diaphragmatic arteries and veins, esophagus, inferior vena cava, abdominal aorta, celiac trunk, inferior mesenteric artery, left and right kidneys and renal arteries and veins, left and right colic arteries and veins, superior sympathetic ganglion, inferior mesenteric ganglion, iliac artery and vein, ureter, median sacral artery and vein, sigmoid colon and rectal arteries and veins (severed), femoral artery and vein, thoracolumbar fascia, quadratus lumborum muscle, psoas major and psoas minor muscle, posterior view of the kidney, etc.
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