Solutions that Protect, Care that Lasts
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We cover prosthetic, endodontic, restorative, spinal, neurological, and surgical FEA, along with deviation analysis and crack-prediction modeling.
Yes. We support clinicians, research labs, and medical-device companies with validated simulations and design optimization.
Absolutely. We use micro-CT, CBCT, and high-resolution scans to generate accurate, personalized biomechanical models.
Our models follow validated material data and standardized workflows, achieving high reliability comparable to physical testing.
Yes. We assist in early-stage design, fatigue analysis, optimization, and validation to reduce failure risks.
Timelines vary by complexity, but most FEA studies are completed within 5–12 business days.
We accept STL, DICOM, OBJ, PLY, and engineering formats such as STEP and IGES.
Yes. Our wear-prediction and crack-propagation models simulate long-term performance under realistic clinical conditions.