A 3D surface coil with deep learning‐based noise reduction for parotid gland imaging at 7T

Author:

Gokyar Sayim12,Zhao Chenyang1,Gunamony Shajan34,Tang Liyang5,West Jonathan5,Kokot Niels5,Wang Danny J. J.16

Affiliation:

1. Laboratory of fMRI Technology (LOFT) USC Stevens Neuroimaging and Informatics Institute Keck School of Medicine University of South California Los Angeles California USA

2. GE HealthCare Waukesha Wisconsin USA

3. Imaging Centre of Excellence University of Glasgow Glasgow UK

4. MR CoilTech Limited Glasgow UK

5. Department of Otolaryngology – Head and Neck Surgery LAC+USC Medical Center Keck School of Medicine University of South California Los Angeles California USA

6. Department of Neurology Keck School of Medicine University of Southern California Los Angeles California USA

Abstract

AbstractBackgroundBackground: Parotid gland neoplasms occur near the facial nerve. Hence, it is crucial to determine whether the malignant neoplasms involve the facial nerve and whether sacrifice of the nerve in surgery is necessary. Furthermore, while 20% of all neoplasms are malignant, the most common benign neoplasm, pleomorphic adenoma, has a risk for malignant transformation, making early detection and treatment essential. 7T magnetic resonance imaging offers increased signal‐to‐noise ratio (SNR) and sensitivity.AimIn this work, we address imaging the parotid gland since it remains challenging at 7T because of its spatial location.Materials and MethodsHere, we present a novel three‐dimensional surface coil (3D Coil) architecture that offers increased depth penetration and SNR compared to the single channel surface coil. We further developed a deep learning (DL)‐based noise reduction method that receives inputs from three elements of the 3D Coil.ResultsThe 3D coil with DL‐based denoising method offers twice the SNR compared to the single channel surface coil for parotid gland imaging at 7T.Discussion and ConclusionThe proposed 3D Coil and DL‐based noise reduction method offers a promising way of achieving higher SNR for parotid salivary gland imaging at 7T, paving the road for clinical applications.

Publisher

Wiley

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