
Artificial 3D Bones
Authentic medical-grade PEEK, 3D-printed into patient-specific bone implants — engineered around the patient, not the catalogue.
We manufacture artificial bones from authentic PEEK material, 3D-printed to fit one patient — yours.
Every implant we deliver is shaped directly from the patient's own CT or MRI scan and printed on industrial 3D printers using genuine, medical-grade PEEK (Polyether ether ketone). There is no off-the-shelf sizing to compromise around — the geometry is built for one defect, one anatomy, one surgery.
PEEK is the gold-standard polymer for permanent bone implants. It is biocompatible, radiolucent, chemically inert and mechanically behaves like cortical bone — which is why leading spinal and cranial centres worldwide are moving beyond pure-metal implants for many reconstruction cases.

The material we trust inside the body
PEEK is not a substitute for bone — it is engineered to live alongside bone. Here is why surgeons and patients are choosing it.
Behaves like real bone
PEEK's elastic modulus sits close to that of cortical bone, so load transfers naturally between implant and host. This avoids the 'stress shielding' that can weaken bone around stiffer metal implants.
Radiolucent & MRI-safe
PEEK is invisible to X-ray and produces no artefacts on CT or MRI. Surgeons get a clean, undistorted view of fusion and healing at every follow-up scan.
Biocompatible & inert
Medical-grade PEEK is chemically stable and non-corrosive, with none of the metal-ion sensitivities that occasionally trouble titanium or cobalt-chrome implants.
Sterilisable & durable
Withstands autoclave and gamma sterilisation and remains mechanically stable inside the body for decades — suitable for permanent, load-bearing implants.
From the patient's scan to the operating theatre
Every artificial 3D bone passes through six controlled steps — clinical, digital and physical.
1. CT / MRI imaging
We start from the patient's own scan — the exact anatomy we are about to reconstruct, not an approximation of it.
2. Digital reconstruction
Our clinical engineers segment the bone, model the defect and design the implant in CAD — sized and shaped to the millimetre.
3. Surgeon sign-off
The proposed geometry is reviewed with the operating surgeon and adjusted until it is clinically sound before any material is committed.
4. 3D printing in PEEK
The implant is printed from authentic, medical-grade PEEK on industrial high-temperature 3D printers — no substitutes, no compromises on material.
5. Finishing & sterilisation
Surfaces are cleaned and finished, then the implant is double-packaged and sterilised to operating-theatre standard.
6. Delivered to theatre
The patient-specific implant arrives at the hospital ready to use — sized for one patient, one anatomy, one surgery.

Where patient-specific PEEK bones make the difference
3D-printed PEEK implants are most valuable when standard sizes do not work — large defects, complex deformity, revision surgery, paediatric anatomy or oncological reconstruction. We support surgeons across Bangladesh from case planning through to delivery in theatre.
Spinal Reconstruction
- Custom interbody cages (cervical, thoracic, lumbar)
- Vertebral body replacements for tumour & trauma
- Patient-matched cages for severe deformity
- Cervical & lumbar fusion spacers
- Revision-surgery implants where standard sizes will not fit
Cranial & Orthopedic
- Cranial plates for skull-defect reconstruction
- Maxillofacial bone implants
- Custom osteotomy wedges
- Bone-defect fillers after tumour resection
- Patient-specific load-bearing spacers
Surgical Planning Models
- Full-colour 3D printed anatomical models
- Patient-anatomy replicas for surgical rehearsal
- Teaching and training models for residents
- Deformity visualisation models for patient consent
- Pre-operative trial-fitting models
Planning a complex case? Let's design the implant together.
Send us your case details and our clinical team will advise on whether a patient-specific PEEK implant can benefit your patient — and walk you through the planning timeline.