This is how FORME finishes an image. Every enhancement is targeted to specific regions of an approved render using AI-assisted workflows, followed by manual finishing. The architecture itself is never redesigned or regenerated—geometry, composition, camera position and architectural intent remain unchanged throughout.
The architecture you approved is never moved. We finish the image, not the building.
Proprietary workflows refine only the areas that require improvement. We do not regenerate the scene.
Every image is reviewed and finished by hand in Photoshop before it leaves the studio.
Every enhancement begins with the architect's vision and remains accountable to it.
Proportions, materials and construction detail stay true to the source render.
Marketing-ready imagery indistinguishable from photography of the finished project.

"We do not redesign architecture. We reveal it. Selective refinement, never unnecessary alteration. Photographic realism without compromising architectural intent."
The client sends an approved architectural render, produced in any rendering software.
Proprietary AI reads the scene and assesses exactly where realism can be improved.
We map the specific image regions that require enhancement, leaving everything else intact.
Enhancement modules are applied selectively to the identified regions. Geometry untouched.
Expert manual finishing and quality control bring every detail to a photography-grade standard.
The finished image is returned for review, with revisions handled without re-rendering.
A marketing-ready, photography-grade image, faithful to the original design intent.
The people don't look convincing.
The lighting needs to become sunset.
Marketing wants a moodier atmosphere.
The vegetation feels artificial.
The glass lacks realism.
The pool feels lifeless.
Instead of re-rendering an entire scene, send us the existing render. We selectively enhance only the required elements and return a final, marketing-ready image, dramatically reducing the time needed to produce premium presentation imagery.