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Surgical planning · models · guides · implants

See the case clearly.Enter theatre prepared.

KIRA Labs helps doctors plan complex procedures and receive patient-matched models, guides and implant solutions before surgery.

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Understand complex anatomy
Review the plan before theatre
Receive patient-matched tools
01

Why KIRA Labs

Difficult surgery needs clarity before incision.

KIRA Labs gives surgeons a clear, patient-specific view of the anatomy, the proposed plan and the tools required to execute it.

Indian surgeon and radiologist reviewing CT scan slices together
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Review the scan together

Your imaging becomes the blueprint — reviewed together before anything is designed.

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Visualise the anatomy

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Review the operative plan

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Approve before production

02

Capabilities

What you can decide before entering theatre.

Biomedical engineer segmenting a CT scan for surgical planning
01

Plan complex cases

Your imaging becomes the blueprint. Our biomedical engineers segment the CT/MRI data with you, so anatomy is fully visible and agreed before any solution is designed.

Output

Surgeon-reviewed surgical plan

Family of teal patient-matched surgical guides for knee and jaw
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Custom surgical guides & models

3D printed cutting, drilling and positioning guides that snap onto patient anatomy — reducing OR time and improving surgical accuracy to sub-millimetre precision.

Output

Patient-matched surgical guide

Porous titanium acetabular cup placed on anatomical pelvis model
03

Reconstruct around the patient

Develop case-specific acetabular cups, augments and reconstruction implants when bone loss or complex anatomy makes standard components inadequate.

Output

Implant-ready case pathway

Titanium cranial plate fitted on anatomical skull model
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Cranial & CMF implants

Patient-specific cranial plates, mandibular reconstruction plates, orbital floor mesh and zygomatic implants — all matched to the patient's CT anatomy and approved before manufacturing begins.

Output

Custom craniofacial implant

Family of titanium spinal fusion cages shown with anatomical vertebrae models
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Spinal solutions

Porous titanium spinal fusion cages (TLIF/PLIF/ALIF) with engineered lattice surfaces that promote bone ingrowth — available in patient-specific geometries for complex deformity and trauma.

Output

Patient-specific spinal cage

Range of orthopaedic implants including hip cup, knee guides and spinal cage on dark background
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Orthopaedic implants

Custom joint replacement components, trabecular metal bone void fillers and fracture fixation plates — manufactured in titanium or cobalt-chrome with porous osseointegration surfaces.

Output

Porous metal orthopaedic implant

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What we can build

Every case gets the right material.

From bioresorbable ceramics to porous titanium, the output is always determined by the clinical need—not by what happens to be available.

Porous titanium Ti-6Al-4V acetabular cup, spinal cage, and cranial mesh
METAL

Titanium alloy (Ti-6Al-4V)

Grade 5 / Grade 23 ELI. Load-bearing implants, spinal cages, cranial plates. Porous lattice surfaces (150–500μm pore size) engineered for bone ingrowth.

Cobalt-chrome CoCr femoral knee component, dental framework, and hip ball joint
METAL

Cobalt-chrome (CoCr)

ASTM F75. Exceptional wear resistance for dental frameworks, joint prostheses and high-wear articulating surfaces.

Implant-grade PEEK spinal cages and cranial reconstruction plate
POLYMER

PEEK (implant grade)

Radiolucent, strong, and biocompatible. Ideal for spinal cages and cranial implants where imaging follow-up is required.

Zirconia ceramic ZrO2 dental bridge, ball joint, and precision components
CERAMIC

Zirconia ceramic (ZrO₂)

Medical grade. Hard, inert, and biocompatible. Dental restorations, high-strength bioceramic applications and precise surgical instruments.

Biocompatible resin anatomical mandible model and surgical drill guides
MODEL

Biocompatible resin

Class IIa / USP VI. Surgical guides, drill templates and anatomical models reproduced to sub-mm accuracy from patient CT/MRI data.

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Why KIRA LABS

5–10 business days, not 6–12 weeks.

From CT data to finished implant — faster, more precise, and built around the surgeon from the start.

ParameterTraditional manufacturingKIRA LABS
Anatomical fitGeneric / manually adjustedCT/MRI-matched, sub-mm precision
Design complexityLimited by toolingUnlimited — lattice, porous, topology-optimised
Surgeon involvementPost-design review onlyDirect co-design with engineer
OsseointegrationSmooth surfaces onlyEngineered porous structures (150–500μm)
Cost for customHigh tooling costsNo tooling required — cost-effective single units
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The workflow

One case. One review loop. Clear deliverables.

You remain in control of the clinical plan. We organise the patient-specific engineering and production pathway around it.

Medical cleanroom additive manufacturing of patient-specific titanium implants
Additive manufacturing · Titanium Ti-6Al-4V case deliverables
Connect with our expert
  1. 01

    Share

    Clinical objective and de-identified patient imaging

  2. 02

    Review

    Anatomy, operative options and proposed deliverables

  3. 03

    Approve

    Surgeon confirms the plan before anything is produced

  4. 04

    Receive

    Case-specific plan, model, guide or implant pathway

06

Clinical applications

Built around the decisions surgeons need to make.

Our role is to make complex anatomy easier to understand, plan and translate into a patient-matched surgical solution.

ORTHO / 01

Complex and revision orthopaedics

Plan reconstruction around bone loss, altered anatomy and cases where standard components offer limited options.

CMF / 02

Cranio-maxillofacial reconstruction

Review cranial and facial anatomy with patient-matched plans, models, guides and reconstructive concepts.

PLAN / 03

Pre-operative rehearsal

Use physical anatomy and reviewed plans to clarify access, sequencing, positioning and team communication.

GUIDE / 04

Patient-matched instrumentation

Translate the approved strategy into procedure-specific guides that support accurate execution in theatre.

SPINE / 05

Spinal surgery

Patient-specific cages, fusion hardware and surgical plans for complex spinal deformity, tumour and trauma cases.

DENTAL / 06

Dental and maxillofacial

Precise zirconia restorations, jaw reconstruction models and implant placement guides built from patient imaging.

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Representative casework

Preview the reconstruction before surgery.

PATIENT-SPECIFIC CASEWORK / CMF & ORTHOPAEDICSREPRESENTATIVE SURGEON PATHWAY
Surgeons and biomedical engineer analyzing DICOM CT scan and 3D cranial reconstruction
DICOM & 3D CT Segmentation
Biomedical engineer designing patient-specific cranial implant in CAD software
Virtual Surgical Planning (CAD)
Surgeon and engineer evaluating 3D-printed complex hip model and custom implant
Complex Hip Reconstruction
Surgeon and engineer verifying patient-matched mandible resection guide and titanium plate
Surgical Guide & Fixation

Make the difficult decisions before entering theatre.

Review the defect, compare the reconstructive approach and confirm the proposed fit and fixation strategy with the KIRA team.

You provide
Clinical objective · patient imaging
You review
Anatomy · plan · proposed solution
You approve
Final case deliverables
You receive
Plan · model · guide · implant pathway

KIRA Labs supports surgeon-led planning and engineering. The treating clinician retains responsibility for clinical decisions.

See the anatomy

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Confirm the plan

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Enter theatre prepared

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Start a conversation

Ready to transform patient outcomes?

Partner with KIRA LABS for patient-specific implants, custom surgical guides and biomedical devices — engineered with precision, delivered with speed.

Free initial design consultation for all new cases.

Send an initial brief
Emailcontact@kiralabs.in ↗
Phone+91 97995 82001
Location

Delhi NCR, India

Patient privacy

Do not send patient-identifiable information by ordinary email.

Patient-specific surgical solutions.

Imagination to Execution

© 2026 KIRA Labs. For professional medical use only.