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Circular Frame Simulator

Nicholas Jack Noye v0.2.0

Publisher description

From the marketplace listing

Create educational 2D and interactive 3D circular-frame simulations from teaching radiographs or generic anatomy. Explore Ilizarov rings, wires, half-pins, Rancho-style fixation, connecting rods, trauma struts and hexapod constructs for orthopaedic education and frame-design training. Not for patient-specific planning or clinical decision-making.

Language: English · Automatically detected from descriptions.

Publisher keywords

Search terms declared by the publisher.

Matches for “interactive”

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Publisher capabilities · listing

Image generation Document creation Interactive 3D simulation

Publisher description

Create educational 2D and interactive 3D circular-frame simulations from teaching radiographs or generic anatomy for orthopaedic education and frame-design training.

Publisher full description

Create educational 2D and interactive 3D circular-frame simulations from teaching radiographs or generic anatomy. Explore Ilizarov rings, wires, half-pins, Rancho-style fixation, connecting rods, trauma struts and hexapod constructs for orthopaedic education and frame-design training. Not for patient-specific planning or clinical decision-making.

Changes

Circular Frame Simulator

Oct 3, 2026 · 3 saved observations

Technical updates

Package contents changed in 3 files: .codex-plugin/assets/composer-icon.png, .codex-plugin/assets/logo.png, .codex-plugin/plugin.json. Open the file diff to inspect the edits.

Files evidence →
Technical updates

Published version changed from 0.1.0+codex.20260909220255 to 0.2.0. Supporting listing metadata also changed.

Metadata evidence →Listing evidence →

Files & skills

File archives

Plugin package8 files · 136 KBBrowse files →
Skill instructions
create-frame-simulation3.67 KB

View saved version →

---
name: create-frame-simulation
description: "Create educational 2D and interactive 3D circular-frame simulations from teaching radiographs or generic anatomy. Explore Ilizarov rings, wires, half-pins, Rancho-style fixation, connecting rods, trauma struts and hexapod constructs for orthopaedic education and frame-design training. Not for patient-specific planning or clinical decision-making."
---

# Create Frame Simulation

Create one internally consistent circular-frame learning simulation. Use generic anatomy by default or de-identified teaching/example radiographs when the user supplies them. The described construct controls every hardware element.

Always include: “For orthopaedic education and frame-design training. Not for patient-specific planning or clinical decision-making.”

## Inputs

- Accept generic anatomy without requiring an image.
- Accept only de-identified teaching/example AP and lateral radiographs. If identifiers are visible, pause and ask for de-identified copies.
- Before image generation, explain that deliberately attached radiographs are processed by OpenAI under the user’s ChatGPT settings and applicable terms. Do not send them to another service.
- Accept typed or dictated constructs containing full rings, true open 2/3 rings, foot plates, fine wires, half-pins, Rancho posts, longitudinal Ilizarov rods, trauma/telescopic struts and hexapod struts.
- Accept optional learning objectives and teaching notes. Do not create diagnosis, care recommendations or instructions for real-world care.

## Workflow

1. Read [construct-schema.md](references/construct-schema.md). Convert the request into one structured construct ordered proximal to distal.
2. Show a concise confirmation table. Keep the four connector classes distinct: Ilizarov rods, trauma/telescopic struts, six-strut hexapod platforms and Rancho posts.
3. Preserve unspecified details as `CHECK` questions. Do not silently infer fixation, ring diameter, wire trajectory, connector class or opening orientation.
4. When a 2D illustration is requested, use generic anatomy or the supplied teaching radiographs plus [illustration-reference.png](assets/illustration-reference.png). Include only requested hardware. Keep every 2/3 ring as an approximately 240° arc with a genuinely empty open sector and realistic holes.
5. Make wires visibly cross the generic bone. Show half-pins engaging it. Keep wires and half-pins independently removable on the same support. When Rancho fixation is requested, mount the half-pin from a short ring post.
6. Use straight, longitudinal, matching-hole connections for Ilizarov rods. Use three or four rods as requested. If the ring openings make this impossible, flag it and do not substitute diagonal members. Trauma struts may be oblique; a hexapod interval uses six deliberately oblique struts.
7. Read [simulation-output.md](references/simulation-output.md) for a printable worksheet. Visually inspect every rendered page before returning it.
8. For the interactive model, open `https://trauma-frame-planner.nicholasnoye.chatgpt.site` and call `apply_frame_construct`. Then call `get_frame_construct` to verify every support, rotation, fixation count, mounting style and connector interval. If site tools are unavailable, use the fallback link in the schema reference.

## Educational boundary

- Teach circular fixation principles, frame construction, fixation geometry and 2D/3D construct visualisation.
- Treat the anatomy, fracture pattern and hardware trajectories as schematic learning representations.
- Do not recommend or optimise a construct for an individual or convert the simulation into real-world instructions.
- Repeat the educational disclaimer in the worksheet and when returning a simulation.

Referenced files: 4

Publisher release notes

Initial public educational release. Reframes the experience for orthopaedic education and frame-design training, retains de-identified teaching radiographs and generic anatomy, and adds corrected 2/3 rings, independent ring rotation, longitudinal Ilizarov rods, distinct trauma, hexapod and Rancho components, mixed fixation, and updated 2D/3D visualisation.

Declared in the saved package. Remote tools may change independently.

Package details

Publisher declarations from the archived package. These are separate from our research and the live service's terms.

Package author
Nicholas Noye
Keywords
See publisher keywords
Getting started skill
./skills/create-frame-simulation/SKILL.md

Declared capabilities

  • Image generation
  • Document creation
  • Interactive 3D simulation

Package observed Oct 3, 2026.

Technical details
First seen
Sep 30, 2026 · 22:02 UTC
Last seen
Oct 3, 2026 · 06:00 UTC
Collection status
Collected

plugins_6aa3346d33bc8191997bc883c468a33a

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