Dennison Chelsea B, Onnis Carlotta, Ali Sumera, Huang Hui, Jergel Andrew, Alazraki Adina, Parikh Ashishkumar
Final Pr. ID: Poster #: SCI-072
Foreign body (FB) aspiration is a common medical emergency in children, which can be fatal. Prompt diagnosis is crucial to avoid complication. Bronchoscopy represents the gold standard for diagnosis; however, false negatives can lead to unnecessary invasive testing and exposes children to procedural risks. While lateral decubitus radiographs can assess for air trapping, this exam has low sensitivity for detecting airway foreign bodies. Thus, there is a need for a sensitive and specific diagnostic imaging test in the detection of airway FB. We developed and implemented a FB chest CT protocol that is characterized by low-dose relative to a standard chest CT and no intravenous contrast. We hypothesize that low-dose chest CT is a sensitive and specific modality for detection of airway FB in the pediatric population that may ultimately decrease the negative bronchoscopy rate. Read More
Authors: Dennison Chelsea B , Onnis Carlotta , Ali Sumera , Huang Hui , Jergel Andrew , Alazraki Adina , Parikh Ashishkumar
Keywords: Chest Computed Tomography (CT), Foreign Body Ingestion, Low Dose Protocol
Flowers Colleen, Kaplan Summer, Zhu Xiaowei
Final Pr. ID: Poster #: EDU-014 (T)
The objective for a low dose imaging protocol was to eliminate patient risks and to reduce radiation doses. Tube placements are confirmed via imaging thereby avoiding utilization of malpositioned tubes. Reduced technical parameters lessen the absorbed skin dose. A limited field of view which includes distal espohagus and airway allows accurate assessment of feeding tube position. The new region of interest eliminates unnecessary exposure to hypersensitive organs including, thyroid and reproductive structures. This coned down view requires a lower image quality thereby allowing a lower dose approach. Read More
Authors: Flowers Colleen , Kaplan Summer , Zhu Xiaowei
Keywords: Low Dose Protocol, Feeding tube confirmation