scholarly journals Asymptomatic endobronchial tuberculosis represented as a solitary airway stenosis without tree‐in‐bud appearance on computed tomography

2021 ◽  
Vol 9 (9) ◽  
Author(s):  
Hirokazu Toyoshima ◽  
Motoaki Tanigawa
2003 ◽  
Vol 10 (8) ◽  
pp. 445-448 ◽  
Author(s):  
Halil Yanardag ◽  
Cüneyt Tetikkurt ◽  
Seza Tetikkurt ◽  
Sabriye Demirci ◽  
Tuncer Karayel

BACKGROUND: The therapeutic response to endobronchial tuberculosis is usually evaluated by bronchoscopy. Currently, there are no published studies investigating the use of computed tomography for the evaluation of therapeutic response in endobronchial tuberculosis.OBJECTIVE: A retrospective study was performed to evaluate the bronchoscopic and computed tomographic features of endobronchial tuberculosis before and after treatment. The aim of this study was to investigate the usefulness of computed tomography for the assessment of treatment.METHODS: The clinical, pathological and bronchoscopic features of endobronchial tuberculosis were evaluated in 55 patients. The age range of the patients was 21 to 52 years. Computed tomography and bronchoscopy were performed before and after treatment.RESULTS: Diagnosis of tuberculosis was confirmed by culture and histopathological examination. Bronchoscopic examination revealed 89 endobronchial lesions of various types in 55 patients. The exudative type was the most common. Follow-up bronchoscopy revealed that exudative-, ulcerative- and granular-type lesions healed completely. Computed tomography performed after treatment correlated well with the follow-up bronchoscopic findings.CONCLUSION: The results suggest that follow-up computed tomography is useful for the evaluation of therapeutic response and complications associated with endobronchial tuberculosis, and may replace bronchoscopy.


2009 ◽  
Vol 73 (6) ◽  
pp. 1065-1066 ◽  
Author(s):  
Jingxi Zhang ◽  
Qiang Li ◽  
Chong Bai ◽  
Yiping Han ◽  
Yi Huang

Author(s):  
H.W. Deckman ◽  
B.F. Flannery ◽  
J.H. Dunsmuir ◽  
K.D' Amico

We have developed a new X-ray microscope which produces complete three dimensional images of samples. The microscope operates by performing X-ray tomography with unprecedented resolution. Tomography is a non-invasive imaging technique that creates maps of the internal structure of samples from measurement of the attenuation of penetrating radiation. As conventionally practiced in medical Computed Tomography (CT), radiologists produce maps of bone and tissue structure in several planar sections that reveal features with 1mm resolution and 1% contrast. Microtomography extends the capability of CT in several ways. First, the resolution which approaches one micron, is one thousand times higher than that of the medical CT. Second, our approach acquires and analyses the data in a panoramic imaging format that directly produces three-dimensional maps in a series of contiguous stacked planes. Typical maps available today consist of three hundred planar sections each containing 512x512 pixels. Finally, and perhaps of most import scientifically, microtomography using a synchrotron X-ray source, allows us to generate maps of individual element.


2001 ◽  
Vol 120 (5) ◽  
pp. A3-A3
Author(s):  
C HASSAN ◽  
P CERRO ◽  
A ZULLO ◽  
C SPINA ◽  
S MORINI

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