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Clinical Trial Summary

The investigators plan to evaluate the effect of the number of needle revolutions inside the node on the diagnostic yield of endobronchial ultrasound-guided transbronchial needle aspiration (EBUS-TBNA) in patients with sarcoidosis.


Clinical Trial Description

Sarcoidosis is a multisystem disorder of unknown etiology characterized by granulomatous inflammation involving various body organs. The diagnosis is made on the basis of compatible clinicoradiological feature, histopathologic evidence of non-caseating granuloma, and exclusion of other known causes for granulomatous inflammation. As the lung and mediastinal lymph nodes are the most commonly involved structures in sarcoidosis, various bronchoscopic techniques like endobronchial biopsy (EBB), transbronchial biopsy (TBLB) and transbronchial needle aspiration (TBNA) are needed for tissue sampling.

Among the bronchoscopic techniques, TBNA of lymph nodes has emerged as the most useful modality in addition to the previously known endobronchial and transbronchial biopsies. The efficacy and safety of conventional TBNA are well established. With improvements in technology, last decade has seen the use of EBUS to guide transbronchial needle aspiration. This technique is a minimally invasive and offers the additional advantage of choosing the appropriate node for sampling based on the vascularity, echogenicity and size. Studies subsequently have demonstrated the superiority EBUS-TBNA over conventional TBNA.

Once the role of TBNA in diagnostic bronchoscopy was clear, technical aspects of the procedure became the topic of research. This includes the number of aspirations or passes required per lymph node station, needle gauge (21 vs. 22 gauge), suction pressure, and the distance travelled by the needle within the lymph node. The number of revolutions i.e. the number of times the needle should be moved back-and-forth inside the lymph node is one such factor. The recommendation is to move the needle ten to twenty times. However the optimum number of times the needle should be moved back and forth for extracting adequate tissue material has not been studied to date. The investigators have observed that performing revolutions during EBUS-TBNA frequently leads to aspiration of blood during the procedure.

The investigators hypothesize that the number of revolutions will not affect the diagnostic yield, and the yield would be similar in 10 compared to 20 revolutions. In this study, the investigators plan to evaluate the effect of the number of needle revolutions inside the node on the diagnostic yield of EBUS-TBNA in patients with sarcoidosis. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT02875756
Study type Interventional
Source Postgraduate Institute of Medical Education and Research
Contact
Status Completed
Phase Phase 2/Phase 3
Start date August 2016
Completion date December 2017

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