South-Korea (한국어)
South-Korea (한국어)

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3d printed medical skin for surgical practice 백서
스트라타시스 디지털 아나토미™를 사용하여 고충실도 수술 시뮬레이션을 위한 3D 프린팅 인체 피부 프리셋 개발

시뮬레이션과 수술실 사이의 격차는 종종 촉각 피드백에 의해 정의됩니다. 이 백서에서는 파비아 대학교의 연구진이 수행한 디지털 해부학™ 피부 프리셋의 기계적 검증 결과를 소개합니다.

Medical_WP_vessels_JI White Paper
Achieving Realistic Blood Vessel Distensibility with J5 Digital Anatomy Printer

Understanding the distensibility of blood vessels is vital for analyzing cardiovascular function and developing medical treatments. Distensibility refers to the ability of vessels to expand and contract with pressure changes.

bone models White Paper
Evaluation Anatomical Models to Human Bone

Experience unparalleled realism in anatomical modeling with the Stratasys J5 Digital Anatomy™ Printer. Our cutting-edge technology offers a cost-effective, ethical, and environmentally friendly alternative to traditional cadaver and porcine labs.

Medical WP Printing Tissue with the J5 Digital Anatomy Printer White Paper
3D Printing Tissue with the J5 Digital Anatomy Printer | Stratasys

Discover how the Stratasys J5 Digital Anatomy™ Printer advances medical practice by mimicking liver tissue, myocardium, and other soft organs. Explore the benefits of realistic anatomical models for research and training.

3D Printing Suturable Vascular Models White Paper
3D Printing Suturable Vascular Models

To create the most realistic, patient-specific simulation for surgical training, vascular models must mimic how native tissue responds to pressure, punctures, and stitches

banner for 3 wp landing page.jpg White Paper
Unlocking Lifelike Anatomical Models with 3D Printing Technology

Discover how 3D printing is revolutionizing anatomical models: 3 whitepapers detail the tech, materials & printers for precise vascular and tissue models.

3d printer material Testing White Paper
Using PolyJet technology to accurately mimic human bio-structures

Alongside the shift in healthcare toward personalized medicine, 3D print technology has emerged as an invaluable tool for academic medical centers, hospitals, and medical device manufacturers to create patient-specific anatomical models.

Biomechanical bone data hero image. White Paper
Creating biomechanically accurate bone models.

Researchers at the Computational Mechanics and Experimental Biomechanics Lab tested the accuracy and realism of J750 Digital Anatomy printed bone models.

imag2 White Paper
3D printed tissue can mimic the properties of porcine liver, epicardium and aorta tissue.

3D anatomical models don’t require regulatory ethical requirements (or a facility to handle the biohazards and sterilization) and offers longevity and reduced cost compared to ex-vivo and in-vivo cadaveric animal testing.

Surgeons working on brain tumor patient. White Paper
Current and future perspectives in neurosurgical applications.

Learn how 3D printed models are used for presurgical planning in neurosurgery.

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