3D Reconstruction Services

Serving the 3D reconstruction and printing needs of all clinical specialties
Supporting digital clinical services and scientific research

Patient-Specific Anatomical Reconstruction Services
Patient-Specific 3D Cardiovascular Surgical Planning Model Reconstruction Service

Patient-specific imaging data are converted and reconstructed into a 3D model to accurately represent the cardiac anatomy. The reconstructed mode illustrates the spatial relationships among the atria, ventricles, blood vessels, and pathological tissues, and is exported as printer-ready 3D data, typically in STL format.

Patient-Specific 3D Lung Surgical Planning Model Reconstruction Service

Patient-specific imaging data are converted and reconstructed into a three-dimensional model to accurately represent the pulmonary anatomy. The reconstructed model illustrates the spatial relationships among the trachea, bronchi and their branches, pulmonary segments, blood vessels and their branches, and pathological tissues, and is exported as printer-ready 3D data, typically in STL format.

Patient-Specific 3D Intracranial Tumor Surgical Planning Model Reconstruction Service

Patient-specific imaging data are converted and reconstructed into a 3D model to accurately represent the cranial anatomy. The reconstructed model illustrates the spatial relationships among the brain's soft and hard tissues, blood vessels, nerves, and pathological tissues, and is exported as printer-ready 3D data, typically in STL format.

Patient-Specific 3D Liver Surgical Planning Model Reconstruction Service

Patient-specific imaging data are converted and reconstructed into a 3D model to accurately represent the hepatic anatomy. The reconstructed model illustrates the spatial relationships among the bile ducts, hepatic arteries, hepatic veins, and pathological tissues, and is exported as printer-ready 3D data, typically in STL format.

Patient-Specific 3D Kidney Surgical Planning Model Reconstruction Service

Patient-specific imaging data are converted and reconstructed into a three-dimensional model to accurately represent the renal anatomy. The reconstructed model illustrates the spatial relationships among the renal parenchyma, renal pelvis, arteries, veins, ureter, and pathological tissues, and is exported as printer-ready 3D data, typically in STL format.

Patient-Specific 3D Cardiovascular Surgical Planning Model Reconstruction Service
Patient-Specific 3D Lung Surgical Planning Model Reconstruction Service
Patient-Specific 3D Intracranial Tumor Surgical Planning Model Reconstruction Service
Patient-Specific 3D Liver Surgical Planning Model Reconstruction Service
Patient-Specific 3D Kidney Surgical Planning Model Reconstruction Service
Other Services
3D-Printed Patient-Specific Surgical Guide Design Service

3D-Printed Surgical Guide Design Service

Based on the patient's CT data, a 3D orthopedic model is reconstructed using professional software registered as a medical device in China. The required surgical parameters are measured and annotated on the reconstructed model. After discussing the surgical plan with the surgeon, a patient-specific surgical guide is designed. The service delivers printer-ready bone reconstruction data and surgical guide data.

3D-Printed Patient-Specific Ocular Prosthesis Design Service

3D-Printed Ocular Prosthesis Design Service

Based on the scan data of the patient's healthy eye and affected eye model, professional design software is used to reproduce the sclera, blood vessels, iris, pupil, and other anatomical features and colors of a natural eye. The service delivers printer-ready 3D data.

3D-Printed Patient-Specific Insole Design Service

Foot morphology and plantar pressure distribution are captured using a foot scanner. Certified orthotists use professional design software to create patient-specific 3D-printed insoles. The service delivers STL data compatible with 3D printers.

Patient-Specific 3D-Printed Scoliosis Orthosis Design Services

A 3D scan of the patient's torso is acquired using a scanner. Certified orthotists use professional design software to design a patient-specific scoliosis orthosis. The service delivers STL data compatible with 3D printers.

Patient-Specific 3D-Printed Rehabilitation Device Design Services

3D scan data of different body regions are acquired using a scanner. Certified orthotists use professional design software to design patient-specific 3D-printed rehabilitation devices for different anatomical sites. The service delivers STL data compatible with 3D printers.

3D-Printed Patient-Specific Surgical Guide Design Service
3D-Printed Patient-Specific Ocular Prosthesis Design Service
3D-Printed Patient-Specific Insole Design Service
Patient-Specific 3D-Printed Scoliosis Orthosis Design Services
Patient-Specific 3D-Printed Rehabilitation Device Design Services
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