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Electromagnetic Navigation during Flexible Bronchoscopy

Respiration, 2003
<i>Background:</i> 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.
Yehuda, Schwarz   +6 more
openaire   +2 more sources

Electromagnetic Navigational Bronchoscopy: A Surgeon’s Perspective

The Annals of Thoracic Surgery, 2008
Diagnostic yield of flexible bronchoscopy is often limited by the size and location of the lesion of interest. Novel technologies have evolved that can improve the accuracy and expand the applicability of flexible bronchoscopy in rendering a tissue diagnosis for pulmonary nodules.
Todd S, Weiser   +5 more
openaire   +2 more sources

Electromagnetic Navigation Bronchoscopy

2013
Electromagnetic navigation bronchoscopy (ENB) has been in continuous evolution since its introduction in 2004. The basic components of this global positioning system-like technology include a magnetic field generator, a sensor and computer integration, and a computed tomography scan used as a three-dimensional map.
Thomas R. Gildea, Joseph Cicenia
openaire   +1 more source

Lesion characteristics affecting yield of electromagnetic navigational bronchoscopy

Respiratory Medicine, 2021
Electromagnetic navigational bronchoscopy (ENB) is an important, minimally invasive diagnostic tool for malignant and benign peripheral lung lesions, offering lower complication risks than transthoracic needle aspirations. As a relatively new technology, the best sampling modality and lesion characteristics for ENB has yet to be determined.
Christina Bellinger   +3 more
openaire   +2 more sources

Electromagnetic Navigation Bronchoscopy

The Bangkok Medical Journal, 2017
OBJECTIVE: Suspicious pulmonary nodules have become a more common finding since the advent of CT scans as a screening method for lung cancer. The challenge is to find a safer, practical and more accurate way to diagnose peripheral nodules and lesions while minimizing harm to the patient.
openaire   +1 more source

Safety of Pacemakers and Defibrillators in Electromagnetic Navigation Bronchoscopy

Chest, 2013
Electromagnetic Navigation Bronchoscopy (ENB) (InReach iLogic system; superDimension Inc) is a relatively new discipline, with promising diagnostic and therapeutic applications in patients with lung lesions. Navigation is performed in a magnetic field and, therefore, has been considered relatively contraindicated in patients with pacemakers and ...
Ahmed Y, Khan   +5 more
openaire   +2 more sources

Electromagnetic Navigational Bronchoscopy for Peripheral Pulmonary Nodules

Thoracic Surgery Clinics, 2016
Electromagnetic navigational bronchoscopy is a useful addition to the array of modalities available to sample peripheral lung lesions. Its utility in diagnosing peripheral lesions has been steadily increasing since the Food and Drug Administration first approved it in 2004.
Satish, Kalanjeri, Thomas R, Gildea
openaire   +2 more sources

Electromagnetic navigation bronchoscopy for peripheral nodules

Clinical Problems, 2019
Introduction: Electromagnetic navigation bronchoscopy (EMN) is a comparatively new technique for the diagnosis of peripheral lung lesions. We analysed the safety and efficacy of EMN in patients admitted to our institution. Methods: Retrospective study including 175 patients who underwent an EMN at a tertiary institution.
Kathleen Jahn   +5 more
openaire   +1 more source

Use of electromagnetic navigational bronchoscopy in robotic pulmonary resection

Journal of Robotic Surgery, 2018
Robotic resection of pulmonary lesions has become a more common approach in the field of thoracic surgery. The greatest drawback of robotic resection is the lack of tactile feedback as compared to open approaches, making identification of intrapulmonary lesion difficult.
Patrick F, Vining   +3 more
openaire   +2 more sources

Freehand Cocalibration of Optical and Electromagnetic Trackers for Navigated Bronchoscopy

2004
Recent technical advances in electromagnetic (EM) tracking have facilitated the use of EM sensors in surgical interventions. Due to the susceptibility to distortions of the EM field when placed in close proximity to metallic objects, they require calibration in situ to maintain an acceptable degree of accuracy.
Adrian James Chung   +3 more
openaire   +2 more sources

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