Exploiting Nonlinear Recurrence and Fractal Scaling Properties for Voice Disorder Detection
arXiv:0707.0086 · doi:10.1186/1475-925X-6-23
Abstract
Voice disorders affect patients profoundly, and acoustic tools can potentially measure voice function objectively. Nonetheless, existing tools are limited to analysing voices displaying near periodicity, and do not account for inherent biophysical nonlinearity and non-Gaussian randomness. They do not directly measure complex nonlinear aperiodicity, and turbulent, aeroacoustic, non-Gaussian randomness. Often these tools have limited clinical usefulness. This paper introduces two new tools to speech analysis: recurrence and fractal scaling, which overcome the range limitations of existing tools by addressing directly these two symptoms of disorder, and a simple bootstrapped classifier distinguishes normal from disordered voices to 91.8% overall accuracy on a large database of subjects with a wide variety of voice disorders. They are widely applicable to the whole range of disordered voice phenomena by design. These new measures could therefore be used for a variety of practical clinical purposes.
1 ZIP file containing 1 LaTeX file, 6 EPS figures, 1 BBL file, 1 BST and 1 CLS file. Eprint for Biomed Eng Online, 2007 Jun 26, 6(1):23
Cited by in corpus (14)
- Principal Component Analysis: A Natural Approach to Data Exploration
- Robust and Complex Approach of Pathological Speech Signal Analysis
- Analysis and Detection of Pathological Voice using Glottal Source Features
- Recurrence threshold selection for obtaining robust recurrence characteristics in different embedding dimensions
- Automatic design of quantum feature maps
- Analysing spatially extended high-dimensional dynamics by recurrence plots
- Can complexity decrease in Congestive Heart failure?
- Stickiness and recurrence plots: an entropy-based approach
- Customized training with an application to mass spectrometric imaging of cancer tissue
- Clustering, factor discovery and optimal transport
- A bibliographic view on recurrence plots and recurrence quantification analyses
- Characterizing and quantifying weak chaos in fractional dynamics
- Flow-Aware Ellipsoidal Filtration for Persistent Homology of Recurrent Signals
- To Explore What Isn't There -- Glyph-based Visualization for Analysis of Missing Values