India (English)
India (English)
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Endless possibilities, unmatched realism, lifelike patient-specific models –available on demand.

bullet small Fast-track innovation in product design and accelerate time to market.

bullet small Enhance product testing and development processes while reducing costs.

bullet small Create repeatable, predictable consistency and minimize confounding variables for clinical benchtop testing.

bullet small Develop sales aids to demonstrate new devices.

bullet small Safe to operate and facility-friendly: quiet, no odors, no direct contact with chemicals.

Explore a world of endless possibilities with ultrarealistic 3D printed anatomical representations.

Features

bullet small Biomechanically accurate: Replicate the look, feel and responsiveness of human anatomy.

bullet small Intuitive: Remote management software streamlines workflow, and adjusts pathologies..

bullet small Compact Yet Powerful: Facility-friendly and safe to operate, with advanced functions that surpass its footprint.

bullet small Reliable: Economical and sophisticated printer, producing realistic anatomical models on demand.

bullet small Dental Presets: Replicate real oral anatomy and tissue behavior for hands-on dental training, testing, and validation.

Benefits

bullet small Point-of-Care: Reduce risks with realistic pre-surgical practice models.

bullet small Patient-Specific: Reduces complications, OR time and shorten hospital stays.

bullet small High capacity: The best footprint-to-tray ratio on the market, allowing you to create the maximum number of models in one print.

bullet small Lab Resource Optimization: Minimize the need for cadavers and animal testing.

bullet small Full Color Capabilities: Allows the creation of models with colors, transparencies, textures,, and finishes for a realistic look.

Typical Applications

Ideal for surgical preparation, improving patient outcomes and accelerating product design innovation, the J5 Digitial Anatomy 3D Printer can create life-like anatomical models with high biomechanical precision.

3D printed brain

Point of Care

Better Planning. Better patient care.

Patient-specific anatomical models provide clinicians with a tangible understanding of complex anatomy, supporting clinical decisions before entering the operating room.

3D printed vessels

Medical Device Manufacturing

Accelerate innovation. Reduce time to market.

Support every stage of medical device development with additive manufacturing solutions that enable rapid prototyping, design validation, and scalable production.

3D Printed Heart

Medical Education and Research

Train better. Build clinical skills.

Realistic anatomical models support medical education and research by enabling consistent, hands-on learning for training, simulation, and scientific discovery.

Stratasys 3D printed denture

Dental Simulation

Better simulation. Greater clinical confidence.

Realistic dental models support education, procedural simulation, and product validation by providing consistent, hands-on experiences for training, testing, and innovation.

3D printed brain

Point of Care

Better Planning. Better patient care.

Patient-specific anatomical models provide clinicians with a tangible understanding of complex anatomy, supporting clinical decisions before entering the operating room.

3D printed vessels

Medical Device Manufacturing

Accelerate innovation. Reduce time to market.

Support every stage of medical device development with additive manufacturing solutions that enable rapid prototyping, design validation, and scalable production.

3D Printed Heart

Medical Education and Research

Train better. Build clinical skills.

Realistic anatomical models support medical education and research by enabling consistent, hands-on learning for training, simulation, and scientific discovery.

Stratasys 3D printed denture

Dental Simulation

Better simulation. Greater clinical confidence.

Realistic dental models support education, procedural simulation, and product validation by providing consistent, hands-on experiences for training, testing, and innovation.

Want to learn more about the J5 DAP and PolyJet technology?

Contact us today for a sample part and demonstration.

Customer Success Stories

Ideal for producing models, parts and prototypes that meet your needs, explore how the J5 Digital Anatomy™ and PolyJet printers are pushing the boundaries of innovation across industries such as automotive, healthcare, aerospace, and consumer goods.

heart model

Exploring the Potential of 3D Printing in the Medical Field

3D4Med, an Italy-based clinical 3D printing laboratory, is devoted to the use of our 3D printing technologies for a variety of medical functions. Read more

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Medtronic DAP Myocardium

The potential for 3D printing synthetic myocardium.

3D printing has incredible applications in the future of cardiac surgery and medical devices. This case study about the potential of 3D printing synthetic myocardium is a perfect example.

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3D printing unlocks new opportunities to advance vascular care.

Jacobs Institute medical collaborators pioneer 3D printing solutions.

Jacob Institute medical collaborators pioneer 3D printing solutions with a collective vision to design and establish a vascular care center for the future.

View more
Roy

Planning tumour surgery with 3D printing

At Nicklaus Children’s Hospital in Miami, the Cardiovascular Surgery Advanced Projects Laboratory (APL) uses a range of digital 3D technologies, including Stratasys 3D printers, to visualize anatomy and plan surgical procedures for pediatric patients

View more
heart model

Exploring the Potential of 3D Printing in the Medical Field

3D4Med, an Italy-based clinical 3D printing laboratory, is devoted to the use of our 3D printing technologies for a variety of medical functions. Read more

View more
Medtronic DAP Myocardium

The potential for 3D printing synthetic myocardium.

3D printing has incredible applications in the future of cardiac surgery and medical devices. This case study about the potential of 3D printing synthetic myocardium is a perfect example.

View more
3D printing unlocks new opportunities to advance vascular care.

Jacobs Institute medical collaborators pioneer 3D printing solutions.

Jacob Institute medical collaborators pioneer 3D printing solutions with a collective vision to design and establish a vascular care center for the future.

View more
Roy

Planning tumour surgery with 3D printing

At Nicklaus Children’s Hospital in Miami, the Cardiovascular Surgery Advanced Projects Laboratory (APL) uses a range of digital 3D technologies, including Stratasys 3D printers, to visualize anatomy and plan surgical procedures for pediatric patients

View more

Compare Printers

With unparalleled precision and versatility, PolyJet 3D printers create highly accurate, multi-material prototypes and full-color end-use parts. Which one is right for you?

  • Description
  • Support Materials
  • Build Size
  • Layer Thickness
  • Network Connectivity
  • System Size and Weight
  • Operating Conditions
  • Power Requirements
  • Regulatory Compliance
  • Software
  • Build Modes
  • Accuracy
  • Description The Stratasys J5 Digital Anatomy is a compact PolyJet 3D printer designed to create biomechanically accurate, patient specific anatomical models on demand. Using advanced Digital Anatomy materials and software, it enables hospitals, medical device companies, and academic institutions to produce highly realistic models that replicate the look, feel, and response of human tissue for surgical planning, training, and device development.
  • Support Materials SUP710S™ (WaterJet removable)
    WSS™150 (Water soluble, not compatible with the Digital Anatomy materials)
  • Build Size 140 x 200 x 190mm (5.51 x 7.87 x 7.48 in.)
  • Layer Thickness Horizontal build layers down to 18 microns (0.0007 in.)
  • Network Connectivity LAN – TCP/IP
  • System Size and Weight 651 x 661 x 1511mm (25.63 x 26.02 x 59.49 in.); 228 kg (503 lbs.)
  • Operating Conditions Temperature 18 – 25 °C (64 – 77 °F); relative humidity 30 – 70% (non-condensing)
  • Power Requirements 100 – 240 VAC, 50 – 60 HZ, 10A, 1 phase
  • Regulatory Compliance CE, FCC, EAC
  • Software GrabCAD Print
  • Build Modes High Quality Speed (HQS) Compatible with Digital Anatomy materials.
    Long Print (LP)
    High Speed (HS)
  • Accuracy Deviation from STL dimensions with rigid materials, based on size: under 100 mm: ±150μ; above 100
    mm: ±0.15% of part length.*
  • Description The Stratasys J5 MediJet is an all in one PolyJet medical 3D printer designed for patient specific anatomical models, surgical guides, and medical device development. With multi material and full color capabilities in a compact footprint, it enables hospitals, academic medical centers, and medical device companies to produce biocompatible and sterilizable models on a single platform while reducing handling and overall production costs.
  • Support Materials SUP710™ (Water Jet removable)
  • Build Size Printing area: 1,174cm2
    Max Part Size: Up to 140 x 200 x 190mm (5.51 x 7.87 x 7.48 in.)
  • Layer Thickness Horizontal build layers down to 18 microns (0.0007 in.)
  • Network Connectivity LAN – TCP/IP
  • System Size and Weight 651 x 661 x 1511mm (25.63 x 26.02 x 59.49 in.); 228 kg (503 lbs.)
  • Operating Conditions Temperature 18 – 25 °C (64 – 77 °F); relative humidity 30 – 70% (non-condensing)
  • Power Requirements 100 – 240 VAC, 50 – 60 HZ, 10A, 1 phase
  • Regulatory Compliance CE, FCC, EAC
  • Software GrabCAD
  • Build Modes High Quality Speed (HQS) – 18.75μm
  • Accuracy Deviation from STL dimensions with rigid materials,based on size:
    under 100 mm – ±150μ; above 100 mm – ±0.15% of part length.*
    * true for 67% (1 sigma) models printed for future information can be found in the spec sheet.
  • Description The Stratasys J850 Digital Anatomy is an advanced PolyJet 3D printer designed to create highly realistic anatomical models that replicate the look, feel, and biomechanical behavior of human tissue and bone. Using specialized Digital Anatomy materials and clinically informed presets, it enables medical device companies, hospitals, and academic institutions to produce accurate, life‑like models for training, pre‑surgical planning, and device testing.
  • Support Materials SUP705B (waterjet removable)
    SUP706B (soluble)
    GelMatrix (waterjet removable)
  • Build Size 490 x 390 x 200 mm (19.3 x 15.35 x 7.9 in.)
  • Layer Thickness Horizontal build layers down to 14 microns (0.00055 in.)
  • Network Connectivity LAN – TCP/IP
  • System Size and Weight J850™ Digital Anatomy System:
    1,400 x 1260 x 1,100 mm (55.1 x 49.6 x 43.4 in.); 430 kg (948 lbs.)
    J850™ Digital Anatomy Material Cabinet:
    670 x 1,170 x 640 mm (26.4 x 46.1 x 25.2 in.); 152 kg (335 lbs.)
  • Operating Conditions Temperature 18 – 25 °C (64 – 77 °F); relative humidity 30 – 70% (non-condensing)
  • Power Requirements 100 – 120 VAC, 50 – 60 Hz, 13.5 A, 1 phase
    220 – 240 VAC, 50 – 60 Hz, 7 A, 1 phase
  • Regulatory Compliance CE, FCC, EAC
  • Software GrabCAD Print Digital Anatomy software.
    Optional add-on GrabCAD Print Pro and/or Digital Anatomy Creator software
  • Build Modes High Quality (HQ) – 7 different materials / 14μm layers
    High Mix (HM) – 7 materials / 27μm
    High Speed (HS) – 3 materials / 27μm, x2 speed
    Super High Speed(SHS)- 1 material / 54 μm, x4 speed
  • Accuracy Typical deviation from STL dimensions, for models printed with rigid materials, based on size:
    under 100 mm: ±100μ; above100 mm: ±200μ or ± 0.06% of part length, whichever is greater.
    Please refer to material-specific spec sheets for accuracy estimates.

PolyJet Compatible Materials

Create ultra-realistic anatomical models with accurate biomechanical performance. The Digital Anatomy advanced materials coupled with sophisticated software simulate the biomechanical properties of tissue and bone, reflecting the reactive qualities of human anatomy during surgery.

BoneMatrix™

BoneMatrix™

Create complex material depositing patterns that mimic porous bone structures, fibrotic tissues, and ligaments, providing the most realistic feedback when cutting and drilling.

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GelMatrix™

GelMatrix™

With unique GelMatrix material and GelSupportTM depositing patterns, users can design and print extremely complex vascular structures and easily remove internal support material.

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TissueMatrix™

TissueMatrix™

The softest commercially available 3D printing material creates models that respond like native organ tissue when force is applied.

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RadioMatrix™

RadioMatrix™

Print radiopaque medical models that exhibit radio-realistic properties under X-Ray and CT. Control the HU values to achieve specific contrast levels to mimic different anatomies.

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BoneMatrix™

BoneMatrix™

Create complex material depositing patterns that mimic porous bone structures, fibrotic tissues, and ligaments, providing the most realistic feedback when cutting and drilling.

View more
GelMatrix™

GelMatrix™

With unique GelMatrix material and GelSupportTM depositing patterns, users can design and print extremely complex vascular structures and easily remove internal support material.

View more
TissueMatrix™

TissueMatrix™

The softest commercially available 3D printing material creates models that respond like native organ tissue when force is applied.

View more
RadioMatrix™

RadioMatrix™

Print radiopaque medical models that exhibit radio-realistic properties under X-Ray and CT. Control the HU values to achieve specific contrast levels to mimic different anatomies.

View more
Grabcad

Digital Anatomy Creator™:
The Freedom to Create

Take full control of your anatomical models.

Go beyond standard anatomical presets with advanced software that lets you customize material properties, internal structures, and layer-by-layer behavior. Create patient-specific models with the precision needed for research, training, and complex clinical applications.

 


PDF Icon Blog:

The Future of 3D Printing in Medical Device Manufacturing 
Trends, Use Cases and What OEMs Should Know.

SYSS PDF Icon eBook:

Surgical Planning with 3D Printed Anatomical Models 
This free eBook compiles published evidence and practical playbooks so you can evaluate impact, map imaging→segmentation→print workflows, and quantify ROI for stakeholders.

How 3D Printed Anatomical Models Improve Surgical Planning in Hospitals

Read how 3D printed surgical models enable per-operative visualization, simulation of complex procedures, and customization of implants to enhance precision, personalization, and patient outcomes.

Customer Success Resources

Already have the J5 DAP? View additional documentation and resources on our Customer Success support website.

Frequently Asked Questions

The J5 Digital Anatomy™ is designed for hospitals, point-of-care labs, and academic medical centers that need a compact medical 3D printing solution. Its small footprint, simplified workflow, and realistic anatomical modeling capabilities support surgical planning, physician training, and patient-specific applications directly within clinical environments.

The J5 Digital Anatomy™ has a maximum part size of 140 × 200 × 190 mm (5.51 × 7.87 × 7.48 in.) and a printing area of 1,174 cm². Its rotating build platform enables efficient production of detailed anatomical models while maintaining a compact system footprint.

The main difference between the J5 Digital Anatomy™ and the J850 Digital Anatomy™ is system size and production capacity. The J5 Digital Anatomy provides the same core Digital Anatomy™ capabilities in a compact, point-of-care platform for hospitals. The J850 Digital Anatomy supports larger anatomical models and higher-volume production for centralized medical manufacturing.

The J5 Digital Anatomy™ prints layers as fine as 18 microns and delivers ±150 micron dimensional accuracy for smaller rigid parts. This precision enables detailed anatomical models for surgical planning, physician training, procedural simulation, and medical device testing.

The J5 Digital Anatomy™ supports workflows using ISO 10993-tested biocompatible materials and compatible 510(k)-cleared medical imaging software. Approved materials may support Steam, Gamma, and Ethylene Oxide (EtO) sterilization. Stratasys manufacturing sites operate under ISO 13485 quality management systems for medical products.

The J5 Digital Anatomy™ features a compact footprint measuring 651 × 661 × 1511 mm (25.63 × 26.02 × 59.49 in.). Its space-efficient design allows hospitals, medical labs, and point-of-care facilities to install advanced medical 3D printing without requiring large production-floor space.