A Web-Based Automated Image Processing Research Platform for Cochlear Implantation-Related Studies.
Jan MargetaRaabid HussainPaula López DiezAnika MorgensternThomas DemarcyZihao WangDan GnansiaOctavio Martinez ManzaneraClair VandersteenHervé DelingetteAndreas BüchnerThomas LenarzFrançois PatouNicolas GuevaraPublished in: Journal of clinical medicine (2022)
The robust delineation of the cochlea and its inner structures combined with the detection of the electrode of a cochlear implant within these structures is essential for envisaging a safer, more individualized, routine image-guided cochlear implant therapy. We present Nautilus-a web-based research platform for automated pre- and post-implantation cochlear analysis. Nautilus delineates cochlear structures from pre-operative clinical CT images by combining deep learning and Bayesian inference approaches. It enables the extraction of electrode locations from a post-operative CT image using convolutional neural networks and geometrical inference. By fusing pre- and post-operative images, Nautilus is able to provide a set of personalized pre- and post-operative metrics that can serve the exploration of clinically relevant questions in cochlear implantation therapy. In addition, Nautilus embeds a self-assessment module providing a confidence rating on the outputs of its pipeline. We present a detailed accuracy and robustness analyses of the tool on a carefully designed dataset. The results of these analyses provide legitimate grounds for envisaging the implementation of image-guided cochlear implant practices into routine clinical workflows.
Keyphrases
- deep learning
- convolutional neural network
- artificial intelligence
- machine learning
- primary care
- high resolution
- high throughput
- healthcare
- computed tomography
- clinical practice
- contrast enhanced
- image quality
- single cell
- dual energy
- magnetic resonance imaging
- hearing loss
- positron emission tomography
- carbon nanotubes
- quality improvement
- magnetic resonance
- mesenchymal stem cells
- case control
- real time pcr
- solid state