Background: Computed tomography (CT) helps physicians locate and diagnose pathological conditions. In some conditions, having an airway segmentation method which facilitates reconstruction of the airway from chest CT images can help hugely in the assessment of lung diseases. Many efforts have been made to develop airway segmentation algorithms, but methods are usually not optimized to be reliable across different CT scan parameters. Methods: In this paper, we present a simple and reliable semi-automatic algorithm which can segment tracheal and bronchial anatomy using the open-source 3D Slicer platform. The method is based on a region growing approach where trachea, right and left bronchi are cropped and segmented independently using three d...
Abstract This paper presents a fully automatic and end-to-end optimised airway segmentation method f...
Airway segmentation in computed tomography images can be used to analyze pulmonary diseases, however...
Introduction: Our motivation is increased bronchoscopic diagnostic yield and optimized preparation, ...
Background: Computed tomography (CT) helps physicians locate and diagnose pathological conditions. I...
Airway segmentation is a crucial step for the analysis of pulmonary diseases including asthma, bronc...
Chronic obstructive pulmonary disease (COPD) is a common lung disease, and quantitative CT-based bro...
International audienceThis paper describes a framework for establishing a reference airway tree segm...
This paper describes a framework for establishing a reference airway tree segmentation, which was us...
Item does not contain fulltextThis paper describes a framework for establishing a reference airway t...
Rationale and Objectives. The segmentation of airways from CT images is a critical first step for nu...
Combined positron emission tomography (PET) and computed tomography (CT) scanning provides superior ...
Direct measurements of airway tree and wall areas are potentially useful as a diagnostic tool and as...
Chronic obstructive pulmonary disease (COPD) is a chronic inflammatory lung disease that causes obst...
Our motivation is increased bronchoscopic diagnostic yield and optimized preparation, for navigated ...
Introduction Our motivation is increased bronchoscopic diagnostic yield and optimized preparation, f...
Abstract This paper presents a fully automatic and end-to-end optimised airway segmentation method f...
Airway segmentation in computed tomography images can be used to analyze pulmonary diseases, however...
Introduction: Our motivation is increased bronchoscopic diagnostic yield and optimized preparation, ...
Background: Computed tomography (CT) helps physicians locate and diagnose pathological conditions. I...
Airway segmentation is a crucial step for the analysis of pulmonary diseases including asthma, bronc...
Chronic obstructive pulmonary disease (COPD) is a common lung disease, and quantitative CT-based bro...
International audienceThis paper describes a framework for establishing a reference airway tree segm...
This paper describes a framework for establishing a reference airway tree segmentation, which was us...
Item does not contain fulltextThis paper describes a framework for establishing a reference airway t...
Rationale and Objectives. The segmentation of airways from CT images is a critical first step for nu...
Combined positron emission tomography (PET) and computed tomography (CT) scanning provides superior ...
Direct measurements of airway tree and wall areas are potentially useful as a diagnostic tool and as...
Chronic obstructive pulmonary disease (COPD) is a chronic inflammatory lung disease that causes obst...
Our motivation is increased bronchoscopic diagnostic yield and optimized preparation, for navigated ...
Introduction Our motivation is increased bronchoscopic diagnostic yield and optimized preparation, f...
Abstract This paper presents a fully automatic and end-to-end optimised airway segmentation method f...
Airway segmentation in computed tomography images can be used to analyze pulmonary diseases, however...
Introduction: Our motivation is increased bronchoscopic diagnostic yield and optimized preparation, ...