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Computational Designer
Teaching July 18-19 : @thepaacademy
Jewelry : @orbweaver.shop
Wearable Biomorphic Algorithms.
POSTS STORIES REELS TAGGED
Day 2: making a medical arm brace with computational design tools
What should I design next?
#grasshopper3d #computationaldesign
0
a year ago
Day 30: designing a custom fit cranial medial implant with computational design tools. 
What should I design next?
#grasshopper3d #computationaldesign
2
a year ago
Day 9: designing a FDM slicing tool to create lattice structures using robotic arms and computational design tools. 
What should I design next?
#grasshopper3d #computationaldesign
0
a year ago
How to grow a living mycelium sculpture in 180 days 🍄🛠️✨

We spent the last six months figuring out how to grow three life sized, living mycelium sculptures for installation at @neverendingglen in Scotland for @kelburnparties 

Seeing them finished and fruiting was more beautiful than we ever could have predicted! 🥰🍄

Thanks to everyone who’s been following this project and who walked up the glen to see them in person! 

In collaboration with @robot.objects 

#biodesign #mycelium #sculpture
4
6 hours ago
This weekend, July 18-19, I’ll be teaching the second installment of my workshop “Dynamic Wearables for Fashion Design 2.0” hosted by @thepaacademy 

We will explore how computational tools and additive manufacturing can shape responsive, experimental, and visually dynamic wearable concepts. I aim to provide all participants with a wide range of Grasshopper tools that you can use right now in your projects- whether that be generating complex patterns, improving your algorithmic thinking, or splitting your design into manageable, 3D printed parts that you can bring to life today. 

Act now to be a part of this unique live session - Check the link in my bio to reserve your seat.
17
9 days ago
Every digital design tool has its strengths.

I use organic modeling to create a patient-specific splint that conforms to each individual’s anatomy.

Then I use parametric modeling to quickly adjust design features like strap loops, perforation patterns, borders, and other customizable elements before sending the splint to print.

This hybrid workflow combines the flexibility of organic modeling with the efficiency of parametric design.

Huge thanks to RJ @robot.objects for collaborating on the parametric portion of this workflow.

I’m exploring the idea of turning this into software for designing custom upper-extremity orthoses. Is this something you’d be interested in using? Let me know in the comments!

#occupationaltherapy #handtherapy #customsplints #3dprinting
18
12 days ago
One chat. A whole sculptural chess set.

For this collaboration with @meshy.ai , I tested the new Meshy 3D Agent by creating a full family of style-consistent chess pieces — each one different enough to be recognizable, but unified enough to feel like part of the same dark fantasy universe.

The design direction combines computational geometry, biomorphic forms, game-asset language, and collectible sculpture.

What makes the 3D Agent exciting is the ability to start with a simple conversation, refine the idea through chat, lock the style, and carry that same visual language across the king, queen, knight, bishop, rook, pawn, and board.

Got an idea? Meshy it.

🎉 New users 50% OFF! Start Meshy-ing today by using the link in my bio ☝🏼

#MeshyAI #Meshy6 #SculptingLevelAI #computationaldesign #3dprintedfashion
16
17 days ago
Every patient is unique, but that doesn’t mean every splint needs to be designed from scratch.

Most of my custom splints begin with organic modeling—sculpting directly on a 3D scan to match the patient’s anatomy. Parametric workflows take a different approach, using adjustable rules and anatomical landmarks to generate a splint pattern that remains fully editable.

In this example, a custom splint is created from just five points, and the trim lines can be refined in seconds. While I still rely on organic modeling for many cases, tools like this have the potential to make custom orthosis design faster, more consistent, and more accessible.

Huge thanks to @robot.objects for developing this Grasshopper workflow and for the collaboration. Excited to continue pushing digital splint design forward.

#occupationaltherapy #handtherapy #orthopedics #customsplints #3dprinting
4
19 days ago
The sculpture is alive! ☺️✨🍄

Living mycelium sculpture for @neverendingglen arts trail

In collaboration with @robot.objects
243
21 days ago
Mycelium = Artist 😈🍄🏴‍☠️

Now the sculpture is ready to fruit! The fruiting bodies will grow out from the sculpture, changing the look, texture, and feel of the entire piece. 

Exhibiting in @neverendingglen for @kelburnparties 

In collaboration with @robot.objects 

#biodesign #mycelium #sculpture
1k
24 days ago
Baby’s fruiting 🥺🍄✨

Come check out the sculpture at @neverendingglen during @kelburnparties to see how big the oyster mushrooms get! 🥰

In collaboration with @robot.objects 

#biodesign #mycelium #mushroom
40
25 days ago
No body no crime! 🤭🥰🍄

Another day demoulding our living mycelium sculptures inside Kelburn Castle! Our babies are starting to fruit, hopefully they make it up to the @neverendingglen for @kelburnparties in one piece 🥺🤞

In collaboration with @robot.objects 

#biodesign #mycelium #ecoart
46
a month ago
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