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1.
Panminerva Med ; 61(3): 290-297, 2019 Sep.
Article in English | MEDLINE | ID: mdl-30394714

ABSTRACT

Over the last decade transbronchial lung cryobiopsy (TBLC) has proven to be an "innovative application" of an "old procedure" for the histologic diagnosis of diffuse interstitial lung diseases (DILDs). Thus, the technique of TBL cryobiopsy is now adopted for diagnostic purposes, transbronchially in peripheral airways to sample lung parenchyma, whereas this same technique was traditionally employed in the past for therapeutic purposes, essentially for the management of malignant obstruction of central airways. When patients with interstitial lung diseases (ILDs) need histopathological data in their diagnostic pathway, this bioptic approach could be a valid alternative to surgical lung biopsy, that is still the gold standard at the moment. TBL cryobiopsy has a good safety profile, its sensitivity and specificity appear good overall in idiopathic pulmonary fibrosis. In the last ten years, many papers have been published about this procedure defining modalities by which cryobiopsy should be performed. These studies have shown that TBL cryobiopsy is feasible, it allows to obtain larger lung parenchymal specimens (3 times larger than "classic" transbronchial biopsies), characterized by unaltered and artefact-free morphology, and it represents a safe and poorly invasive diagnostic tool for the histologic diagnosis of ILDs. The technical aspects are really important, and they still need a complete standardization. TBL cryobiopsy should be part of an equipment of the modern interventional pulmonologist, who should know indications and contraindications of this methodic and the technical aspects of the procedure. This is a complex procedure requiring to be performed by endoscopists working in specialized centers with specific knowledge of DILDs, and a multidisciplinary approach, which represent pre-requisites for admission to training in this procedure.


Subject(s)
Bronchi/pathology , Clinical Competence , Cryosurgery/methods , Lung Diseases, Interstitial/diagnosis , Lung/pathology , Biopsy , Bronchi/diagnostic imaging , Bronchoscopy/methods , Cold Temperature , Endoscopy/methods , Humans , Lung Diseases, Interstitial/pathology , Pulmonary Medicine/methods , Sensitivity and Specificity
2.
Panminerva Med ; 61(3): 280-289, 2019 Sep.
Article in English | MEDLINE | ID: mdl-30394715

ABSTRACT

Options for non-surgical tissue diagnosis of the peripheral nodule include CT scan-guided TTNA, fluoroscopy-guided bronchoscopy, radial endobronchial ultrasound (EBUS), electromagnetic navigation bronchoscopy (ENB), and virtual bronchoscopy navigation (VBN). For physicians who choose to pursue non-surgical biopsy, the decision to perform CT scan-guided or ultrasound-guided TTNA, conventional bronchoscopy or bronchoscopy guided by EBUS, ENB, or VBN will depend on a number of factors. CT scan-guided TTNA is preferable for nodules located near the chest wall or for deeper lesions, provided that there is no need to go through the fissures and there is no surrounding emphysema. Ultrasound-guided TTNA requires contact between the lesion and the costal pleura. Bronchoscopic techniques are preferable for nodules ≥2 cm located near a patent bronchus, or in individuals at high risk for pneumothorax following TTNA. In most other situations, operator experience should guide the decision. Trainees must possess a perfect knowledge of anatomy and be fully competent in the interpretation of imaging (CT with contrast medium and PET) and have a thorough knowledge of navigation technology in all its complexities. Practical training can be performed on animal, cadaver or plastic models. In the last years, to improve diagnostic yield, navigational bronchoscopy has attracted significant attention.


Subject(s)
Biopsy/methods , Bronchi/diagnostic imaging , Bronchoscopy/education , Clinical Competence , Lung Diseases/diagnosis , Pulmonary Medicine/education , Bronchi/pathology , Contrast Media , Endosonography/methods , Fluoroscopy/methods , Humans , Lung/pathology , Positron-Emission Tomography , Tomography, X-Ray Computed , Ultrasonography
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