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Charles E Dye

Publications and source records attributed to Charles E Dye.

3 recordsLinked to original sources

Clinical impact of on-site cytopathology interpretation on endoscopic ultrasound-guided fine needle aspiration.

OBJECTIVES: Endoscopic ultrasound-guided fine needle aspiration (EUS-guided FNA) is becoming a preferred modality for diagnosing and staging GI and mediastinal malignancies. Although experts advocate on-site cytopathology assessment for tissue sample adequacy, there are few data to support this claim. Our goal was to determine whether on-site cytopathology interpretation improves the diagnostic yield of EUS-guided FNA. METHODS: EUS-guided FNA results from two university hospital centers were reviewed and compared. At center 1, where EUS-guided FNA was performed with a cytopathologist on site, the results of 108 consecutive patients were evaluated. At center 2, where a cytopathologist is unavailable, the results of 87 consecutive patients were reviewed. One endoscopist performed all procedures at both institutions. Cytologic diagnoses were categorized as positive or negative for malignancy, suspicious for malignancy, atypical/indeterminate, or unsatisfactory. The number of repeat procedures, needle passes, medication use, target site, age, and sex were compared between the two sites. RESULTS: Patients at center 2 were older (p = 0.04) and predominantly female (p = 0.03). Pancreas was the most common target site at center 2, whereas thoraco-abdominal nodes were the most common at center 1 (p = 0.0001). Patients at center 1 had a diagnosis of positive or negative for malignancy more frequently (p = 0.001) and were less likely to have an unsatisfactory specimen (p = 0.035) or repeat procedure, although the latter was not significant (p = 0.156). CONCLUSION: On-site cytopathology interpretation improves the diagnostic yield of EUS-guided FNA. EUS centers should allocate resources to cover for on-site cytopathology evaluation.

Adult↗

Endoscopic ultrasound.

Indications and the clinical utility of endosonography have evolved as new technology, such as linear array echoendoscopes and EUS-guided fine needle aspiration, has emerged. The most noteworthy of the EUS applications are for cancer staging; including rectal, pancreatic, lung, and esophageal malignancies. There is little doubt that EUS is a powerful tool for cancer imaging, but its clinical impact in patient care and management has yet to be validated in prospective outcome studies. Other imaging modalities such as positron emission tomography (PET), dual-phased helical CT, and MR imaging technology will undoubtedly provide increasingly accurate diagnostic and staging information for gastrointestinal diseases. EUS imaging alone may assume a less significant role in relation to these noninvasive modalities in the future. EUS-guided FNA, as well as therapeutic EUS applications, will likely continue to expand in scope and play an important role in clinical medicine for many years to come.

Digestive System Neoplasms↗

Interventional endosonography.

Endoscopic ultrasound (EUS) has become the most accurate imaging modality for locoregional cancer staging of the gastrointestinal (GI) tract. Fine-needle aspiration (FNA) capabilities have added a whole new level of accuracy in nodal staging with reported numbers in the 90% range for luminal and pancreaticobiliary disease. In addition, new non-GI applications are being evaluated like the role of EUS-FNA for non-small cell lung carcinoma and exploration of the posterior mediastinum. Furthermore, the same capabilities that allow for safe tissue sampling are being explored for interventional applications like EUS-guided celiac plexus neurolysis and fine-needle injection. The following review describes the current clinical status of EUS in GI oncology as well as future and novel indications and therapeutic strategies for this technology.

Biopsy, Needle↗