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Atul C Mehta

Publications and source records attributed to Atul C Mehta.

41 records · Page 3Linked to original sources

Therapeutic bronchoscopy in lung cancer. Laser therapy, electrocautery, brachytherapy, stents, and photodynamic therapy.

Therapeutic bronchoscopic techniques such as LPR, EC, brachytherapy, stents, and PDT are effective tools in the palliation and local control of lung cancer. Palliation of malignant tracheobronchial obstruction by LPR, stents, brachytherapy, PDT, or a combination thereof results in relief of dyspnea, hemoptysis, and postobstructive pneumonia. Importantly, it avoids intubation in patients with respiratory distress and facilitates the weaning of patients from MV. In the exciting field of lung cancer screening and treatment of early lung cancer, PDT, brachytherapy, EC, and LPR may represent treatment alternatives to surgical resection, especially in a select group of patients with high surgical risk or favorable endobronchial lesions. Clinicians await the results of future studies, which will (1) better define the impact of each treatment modality on patient care in terms of cost, survival, and improvement in quality of life, and (2) determine the optimal combination therapy relative to bronchoscopic and conventional treatment for effective palliation and cure of lung cancer.

Brachytherapy↗

Syndrome of iron pill aspiration.

Bronchial stenosis (BS) consequent to iron pill aspiration (IPA) has been observed in few reported cases. This condition is often irreversible and may necessitate lobectomy in severe cases. Unlike most foreign bodies (FBs), the iron pill disintegrates in the airway and cannot be detected on bronchoscopy. However, bronchial biopsy and lung tissue may reveal iron deposits along with airway inflammation months after the aspiration. Thus, IPA can be diagnosed by a triad of aspiration, airway inflammation, and iron deposits on histology even in the absence of an FB. We report a case of IPA with BS in which the diagnosis was established by bronchial biopsy and was successfully managed with balloon bronchoplasty and therapy with topical mitomycin C.

Aged↗

Role of transbronchial needle aspiration in patients receiving mechanical ventilation.

STUDY OBJECTIVE: s: To evaluate the diagnostic accuracy and safety of transbronchial needle aspiration (TBNA) in patients receiving mechanical ventilation in the ICU. METHODS: Retrospective review of all patients in the medical and surgical ICUs from February 1999 to July 2001 who underwent TBNA while receiving mechanical ventilation. RESULTS: A total of eight histology (19 gauge) and eight cytology (22 gauge) TBNAs were performed on eight patients (four men and four women). TBNA yielded a definitive pathologic diagnosis in five of eight patients (62.5%). Diagnoses were posttransplantation lymphoproliferative disorder, large cell carcinoma, poorly differentiated non-small cell carcinoma, squamous cell carcinoma, and adenocarcinoma. Among patients with negative TBNA results (n = 3), two patients underwent mediastinoscopy. Results of mediastinoscopy were non-small cell carcinoma and inflamed tissue. TBNA led to management changes in five of these patients. Excluding one patient in whom a negative TBNA result could not be further confirmed, TBNA yielded a sensitivity of 83%, a specificity of 100%, a positive predictive value of 100%, and a negative predictive value of 50%. The overall accuracy of the procedure was 75%. There were no complications following any of the TBNAs. CONCLUSIONS: In this small group of patients, TBNA was safe and had a high diagnostic accuracy in selected patients receiving mechanical ventilation in the ICU.

Adult↗

Electromagnetic navigation during flexible bronchoscopy.

BACKGROUND: Flexible bronchoscopy is routinely utilized in the diagnosis and treatment of various lung diseases. Nondiagnostic bronchoscopy leads to more invasive interventions, such as transthoracic needle aspiration, mediastinoscopy or even thoracotomy. Electromagnetic navigation is a novel technology that facilitates approaching peripheral lung lesions, which are difficult to sample by conventional means. The navigation system involves creating an electromagnetic field around the chest and localizing an endoscopic tool using a microsensor overlaid upon previously acquired CT images. OBJECTIVES: To determine the practicality, accuracy and safety of real-time electromagnetic navigation, coupled with previously acquired 3D CT images, in locating artificially created peripheral lung lesions in a swine model. METHODS: Peripheral lung lesions were created in four swine models by insertion of a metal tube (1 x 10 mm) via a transthoracic approach. An electromagnetic field was created by placing the animal on an electromagnetic location board. A position sensor incorporated into the distal tip of a dedicated tool was used to navigate to the various target lesions. Information gathered in real time during bronchoscopy was presented on a monitor simultaneously by displaying previously acquired CT images. Upon reaching the target lesion, biopsies were performed and the functionality and safety of the superDimension/Bronchus System was observed and documented. RESULTS: The registration accuracy expressed by the fiducial target registration error, expressing both the registration quality and the stability of fiducial (registration) points, was 4.5 mm on average. No adverse effects, such as pneumothorax or internal bleeding, were encountered in any of the animals in this study. CONCLUSIONS: Real-time electromagnetic positioning technology coupled with previously acquired CT images is an accurate technology added to standard bronchoscopy to assist in reaching peripheral lung lesions and performing biopsies.

Animals↗