# Hand Exoskeleton with 3D printing

> Hand exoskeleton is an exoskeleton which used to perform rehabilitation process for a man/women after got stroke attack.

**Wikidata**: [Q136094552](https://www.wikidata.org/wiki/Q136094552)  
**Source**: https://4ort.xyz/entity/hand-exoskeleton-with-3d-printing

## Summary
A hand exoskeleton with 3D printing is a wearable device designed to aid in rehabilitation for stroke patients by restoring hand function. It operates as open hardware, meaning its design plans are publicly accessible for modification and sharing.

## Key Facts
- Classified as an open hardware device under OSHWA UID id000010.
- Specifically used for rehabilitation after stroke attacks to restore hand function.
- Associated with Open Science Framework ID 7agpu.
- Design documents are openly accessible and modifiable by others.
- Falls under the broader category of open hardware hardware (31 site links).

## FAQs
### Q: What is a hand exoskeleton with 3D printing?  
A: It is a 3D-printed wearable device engineered to assist in rehabilitation for stroke survivors, focusing on restoring hand mobility and function through mechanical support.

### Q: How is the hand exoskeleton classified?  
A: It is officially categorized as open hardware, meaning its technical specifications and designs are openly shared and can be adapted by users globally.

### Q: What is the primary purpose of this device?  
A: Its core function is to facilitate the rehabilitation process for individuals recovering from stroke attacks by providing targeted mechanical assistance to regain hand dexterity.

## Why It Matters
The hand exoskeleton with 3D printing addresses critical gaps in stroke rehabilitation by offering a customizable, low-cost solution. As open hardware, it democratizes access to advanced rehabilitation technology, enabling clinicians and patients to adapt designs to individual needs. This accelerates innovation in assistive devices while reducing financial barriers, ultimately improving recovery outcomes for stroke survivors worldwide. Its integration of 3D printing further enhances affordability and rapid prototyping, making cutting-edge rehabilitation more accessible in resource-limited settings.

## Notable For
- One of the few stroke rehabilitation devices with formal open hardware certification (OSHWA id000010).
- Explicitly designed for post-stroke hand rehabilitation, targeting a critical recovery challenge.
- Features an Open Science Framework ID (7agpu), indicating transparent research collaboration.
- Enables global adaptation through its openly accessible design documentation.

## Body
### Design and Functionality
- Hand exoskeleton is engineered to support rehabilitation after stroke attacks, focusing on restoring hand function.
- Utilizes 3D printing for customizable and cost-effective fabrication of wearable components.
- Implements mechanical assistance to aid patients in regaining hand mobility and dexterity post-stroke.

### Open Hardware Specifications
- Holds OSHWA UID id000010, certifying its status as openly licensed hardware.
- Classified under the open hardware category, emphasizing design transparency and community collaboration.
- Technical documentation and schematics are openly accessible for public modification and redistribution.
- Registered with Open Science Framework ID 7agpu, linking to shared research resources and collaborative development.
- Contributes to the open hardware movement with 31 indexed site links, indicating broader adoption and community engagement.