About Victoria Hand Project

The Victoria Hand Project (VHP) designs low-cost, highly functional, 3D-printed prosthetics. In collaboration with our international clinical partners, we make these prosthetics available to amputees throughout the world. Our system uses advanced and cost effective tools: 3D printing, 3D laser scanning, and 3D software, to fabricate the devices directly within the countries where they are used. With our prosthesis, amputees can regain the ability to do home or work-related tasks, and improve their quality of life.

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Website
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Employees
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Industry
Medical Devices
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Headquarter
3800 Finnerty Rd, Victoria, British Columbia V8P, CA
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Founded
2015
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Keywords
3D Printing And Prosthetic Hands

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Industry
Medical Devices
Industry
Medical Devices
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Medical Devices
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Medical Devices
Industry
Medical Devices
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Medical Devices
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Medical Devices
Industry
Medical Devices

Frequently Asked Questions about Victoria Hand Project

Who is the CEO of Victoria Hand Project?

Michael Peirone is the CEO of Victoria Hand Project. To contact Michael Peirone email at [email protected].

Who are the decision makers in Victoria Hand Project?

The decision makers in Victoria Hand Project are Michael Peirone, etc. Click to Find Victoria Hand Project decision makers emails.

What types of prosthetic hands does the Victoria Hand Project offer?

The Victoria Hand Project specializes in designing low-cost, highly functional 3D-printed prosthetic hands. Our offerings include various models tailored to different needs, including mechanical hands that utilize a simple cable system for movement, as well as more advanced models that can be customized for specific user requirements. Each design aims to provide amputees with improved functionality and comfort.

How does the Victoria Hand Project ensure the quality and safety of its prosthetics?

Quality and safety are paramount at the Victoria Hand Project. We collaborate with international clinical partners who help us conduct thorough testing and evaluation of our prosthetic designs. Our 3D-printed prosthetics undergo rigorous quality control processes to ensure they meet safety standards and provide reliable performance for users. Additionally, we gather feedback from users and healthcare professionals to continuously improve our designs.

Who can benefit from the prosthetic solutions provided by the Victoria Hand Project?

The Victoria Hand Project aims to assist individuals of all ages who have experienced limb loss, particularly those in low-resource settings where access to traditional prosthetics may be limited. Our prosthetics are designed to be adjustable and adaptable, making them suitable for children, adults, and elderly amputees. We focus on providing solutions that enhance the quality of life for users by restoring functionality and independence.

How can I get involved with the Victoria Hand Project?

There are several ways to get involved with the Victoria Hand Project. You can volunteer your time or expertise, donate to support our mission, or help us spread awareness about our work. We also welcome partnerships with healthcare providers, universities, and organizations interested in improving access to prosthetic solutions for amputees. Visit our website for more information on how to contribute.

What is the process for obtaining a prosthetic hand through the Victoria Hand Project?

To obtain a prosthetic hand through the Victoria Hand Project, individuals typically need to be referred by a healthcare professional or clinic that partners with us. After an assessment, we work with local clinics to provide the necessary fittings and adjustments to ensure the prosthetic meets the user's needs. Our goal is to make the process as seamless and supportive as possible for each individual.

What materials are used in the 3D printing of prosthetic hands?

The Victoria Hand Project utilizes durable and lightweight materials for 3D printing our prosthetic hands, primarily focusing on PLA (polylactic acid) and PETG (polyethylene terephthalate glycol). These materials are chosen for their strength, flexibility, and biocompatibility, ensuring that the prosthetics are both functional and comfortable for users. We continuously explore new materials and technologies to enhance the performance of our prosthetic solutions.

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