Endoscopy is an important technique in medicine to diagnose internal organs. Video endoscopy has been the most common technique providing clear, real time video images of organs' surfaces. However, this technique only images the surface and cannot effectively diagnose diseased tissues that develop in endothelial tissues. Endoscopic ultrasound (EUS) has been developed to overcome this limitation, and it is widely utilized in diagnosing GI diseases. This technique can image very deep areas of organs, up to several centimeters; however, it suffers from speckle artifacts and cannot adequately provide early diagnosis of tissue abnormalities that do not show mechanical properties that differ significantly from those of normal tissues. The investigators propose that photoacoustic endoscopy (PAE), an endoscopic embodiment of the rapidly growing photoacoustic tomography (PAT) technology, can fulfill the aforementioned need.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
DIAGNOSTIC
Masking
NONE
Enrollment
8
Washington University School of Medicine
St Louis, Missouri, United States
Feasibility of PA endoscopic imaging as an alternative real-time noninvasive tool for evaluation of Barrett's esophagus as measured by the agreement between the PA imaging system and the standard esophageal biopsy for diagnosing Barrett's epithelium
-The investigators will image a series of human esophagi in patients with an established diagnosis of Barrett's esophagus with/without dysplasia to fine-tune the PA imaging system. The investigators will assess the agreement between the PA imaging system and the standard clinical practice of four-quadrant esophageal biopsy previously performed in this cohort of patients as part of his/her active surveillance program.
Time frame: Day 1
Sensitivity and specificity of PA endoscopic imaging for identification of Barrett's epithelium compared to esophageal biopsy
-The investigators will image a series of human esophagi in patients with an established diagnosis of Barrett's esophagus with/without dysplasia to fine-tune the PA imaging system. The investigators will assess the agreement between the PA imaging system and the standard clinical practice of four-quadrant esophageal biopsy previously performed in this cohort of patients as part of his/her active surveillance program.
Time frame: Day 1
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