Age and Gender Classification From Ear Images
Dogucan Yaman, Fevziye Irem Eyiokur, Nurdan Sezgin, Haz{\i}m Kemal, Ekenel

TL;DR
This study explores age and gender classification from ear images using geometric and deep learning features, achieving high gender accuracy but moderate age estimation performance, highlighting the potential and challenges of ear biometrics.
Contribution
First to analyze age classification from ear images using deep CNNs and geometric features, with domain adaptation on a new ear dataset.
Findings
94% accuracy in gender classification
52% accuracy in age classification
Appearance-based methods outperform geometric features
Abstract
In this paper, we present a detailed analysis on extracting soft biometric traits, age and gender, from ear images. Although there have been a few previous work on gender classification using ear images, to the best of our knowledge, this study is the first work on age classification from ear images. In the study, we have utilized both geometric features and appearance-based features for ear representation. The utilized geometric features are based on eight anthropometric landmarks and consist of 14 distance measurements and two area calculations. The appearance-based methods employ deep convolutional neural networks for representation and classification. The well-known convolutional neural network models, namely, AlexNet, VGG-16, GoogLeNet, and SqueezeNet have been adopted for the study. They have been fine-tuned on a large-scale ear dataset that has been built from the profile and…
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Taxonomy
Methods1x1 Convolution · Convolution · Average Pooling · Local Response Normalization · Auxiliary Classifier · Inception Module · Grouped Convolution · *Communicated@Fast*How Do I Communicate to Expedia? · Dropout · Dense Connections
