Aluminum Thin Film Nanostructure Traces in Pediatric EEG Net for MRI and CT Artifact Reduction
H Jeong, G Ntolkeras, T Warbrick, M Jaschke, R Gupta… - Sensors, 2023 - mdpi.com
Magnetic resonance imaging (MRI) and continuous electroencephalogram (EEG)
monitoring are essential in the clinical management of neonatal seizures. EEG electrodes,
however, can significantly degrade the image quality of both MRI and CT due to substantial
metallic artifacts and distortions. Thus, we developed a novel thin film trace EEG net
(“NeoNet”) for improved MRI and CT image quality without compromising the EEG signal
quality. The aluminum thin film traces were fabricated with an ultra-high-aspect ratio (up to …
monitoring are essential in the clinical management of neonatal seizures. EEG electrodes,
however, can significantly degrade the image quality of both MRI and CT due to substantial
metallic artifacts and distortions. Thus, we developed a novel thin film trace EEG net
(“NeoNet”) for improved MRI and CT image quality without compromising the EEG signal
quality. The aluminum thin film traces were fabricated with an ultra-high-aspect ratio (up to …
Aluminum Thin Film Nanostructure Traces in Pediatric EEG Net for MRI and CT Artifact Reduction
G Ntolkeras MD - 2023 - scholarlycommons.libraryinfo.bhs …
Magnetic resonance imaging (MRI) and continuous electroencephalogram (EEG)
monitoring are essential in the clinical management of neonatal seizures. EEG electrodes,
however, can significantly degrade the image quality of both MRI and CT due to substantial
metallic artifacts and distortions. Thus, we developed a novel thin film trace EEG net ("
NeoNet") for improved MRI and CT image quality without compromising the EEG signal
quality. The aluminum thin film traces were fabricated with an ultra-high-aspect ratio (up to …
monitoring are essential in the clinical management of neonatal seizures. EEG electrodes,
however, can significantly degrade the image quality of both MRI and CT due to substantial
metallic artifacts and distortions. Thus, we developed a novel thin film trace EEG net ("
NeoNet") for improved MRI and CT image quality without compromising the EEG signal
quality. The aluminum thin film traces were fabricated with an ultra-high-aspect ratio (up to …
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