Voice-Analyzing Diagnosis Systems

View More

Max Little is Developing this Cheaper Parkinson's Diagnosis Tool

Using voice recordings and smartphone movements you can make a Parkinson's diagnosis. Diagnosing Parkinson's Disease can be a long and difficult process as there is no blood test for it and it often involves multiple visits with a neurologist. The Parkinson's Voice Initiative is working on finding a less expensive and more accessible way to use people's voice patterns.

Beyond trembling limbs and a stopped gait, Parkinson's Disease symptoms include breathiness and specific fluctuations of the voice. Led by Max Little, this Parkinson's diagnosis project is looking to create a method to test these voice patterns, using a smartphone for instance. The British mathematician and visiting professor at MIT is currently analyzing recordings, after which he will be able to develop a system that automatically analyzes voices.
Trend Themes
1. Voice-analyzing Diagnosis - Using voice recordings and smartphone movements to diagnose Parkinson's Disease presents a disruptive innovation opportunity in healthcare.
2. Less Expensive Diagnostics - Developing a less expensive and more accessible method to diagnose Parkinson's Disease through voice patterns can disrupt the healthcare industry.
3. Automated Voice Analysis - Creating a system that automatically analyzes voices for Parkinson's Disease can lead to disruptive innovation in the healthcare sector.
Industry Implications
1. Healthcare - The healthcare industry can benefit from the disruptive innovation opportunity of voice-analyzing diagnosis systems for Parkinson's Disease.
2. Mobile Technology - The mobile technology industry can explore opportunities to incorporate voice analysis and smartphone movements for diagnostic purposes in Parkinson's Disease.
3. Data Analysis - The data analysis industry can contribute to developing automated voice analysis systems for diagnosing Parkinson's Disease, creating a disruptive innovation potential.

Related Ideas

Similar Ideas
VIEW FULL ARTICLE & IMAGES