MPR & 3D reconstruction
Any plane, and the volume itself — from one acquisition.
Reformat the axial volume into coronal and sagittal planes with a linked crosshair, render bone and soft tissue in 3D, and batch the reformats into a series for filming — the post-processing a CT technologist owns, with AI-assisted segmentation for the volume render.

How it works
Three steps, on a real console workflow.
Load the volume
Any helical acquisition opens in MPR with axial, coronal and sagittal panes and a linked crosshair.
Reformat and render
Scroll any plane, set window/level per pane, and switch the fourth pane to a 3D volume render with bone or soft-tissue presets.
Batch and send
Define start and end, image count and spacing, and batch the reformats into a processed series — then send it to filming.
MPR and 3D controls
| Control | Range | What it teaches |
|---|---|---|
| Planes | Axial, coronal, sagittal, linked | Reading anatomy across planes |
| Batch reformat | Images, spacing, start/end | Reconstruction as a deliverable |
| Volume render | Bone / soft-tissue presets, six views | What 3D adds — and what it hides |
| Window/level per pane | C/W presets | Windowing discipline carries into post-processing |
In the classroom
How programs use it
- Have learners produce a coronal batch series to a stated spacing and film it — a gradable output.
- Compare a fracture in axial, sagittal and 3D and discuss what each plane contributes.
- Time a full MPR-to-filming workflow as an OSCE station.
Learn the concepts
Short guides that pair with this feature:
Put your learners at the console today.
Free student tier. No installs. Runs in any browser.