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find Keyword "Pulmonary ground-glass nodule" 2 results
  • Multi-Slice Spiral CT Perfusion Imaging for Blood Supply of Pulmonary Mixed Ground-Glass Nodules

    ObjectiveTo investigate the clinical value of multi-slice spiral CT perfusion imaging for blood supply of pulmonary mixed ground-glass nodules (mGGN). MethodsThe mGGN patients were retrospectively analyzed from March 2011 to May 2015 in Affiliated Hospital of Hebei University of Engineering, Handan First Hospital and Xingtai People's Hospital. Multi-slice spiral CT perfusion imaging for blood supply was applied to evaluate the blood supply of solid lesions in mGGN, and the diagnostic values of CT perfusion parameters were compared for differentiating the benigh mGGN from the malignant mGGN. ResultsTotally 97 mGGN patients were enrolled in this study, in which 80 were malignant mGGN and 17 were benigh mGGN. Blood volume (BV), peak enhancement image (PEI) and permeability surface (PS) in malignant mGGN lesions were higher than those of benign lesions, while the time to peak was less than that of benign lesions, and the differences were all statistically significant (P < 0.05). BV, PEI and PS in minimally invasive adenocarcinoma (MIA) and invasive adenocarcinoma (IAC) patients were significantly higher than those in the patients with precancerous lesions (P < 0.05). BV and PS in IAC patients were significantly higher than those in MIA patients (P < 0.05). Logistic regression analysis showed that IAC, MIA and the precancerous lesions, BV, PEI and PS were positively correlated with mGGN. Receiver operating characteristic (ROC) curve showed that the sensitivity, specificity, positive predictive value, negative predictive value, and diagnostic accuracy rates with BV+PS+PEI combined, were 95.28%, 86.65%, 91.10%, 87.52% and 91.76%, respectively, while the area under ROC curve was significantly higher than those with single parameter (P < 0.05). ConclusionMulti-slice spiral CT perfusion imaging can evaluate the blood supply of mGGN, and BV+PS+PEI combined can be used in differentiation of the benigh and malignant mGGN.

    Release date:2016-10-10 10:33 Export PDF Favorites Scan
  • Preoperative localization indication of clinical peripheral pulmonary ground-glass nodules by Da Vinci robot surgery

    ObjectiveTo investigate the preoperative localization of pulmonary glabrous nodules.MethodsA total of 192 patients admitted to General Hospital of Northern Theater Command from April 2012 to September 2019 were selected for the study. There were 95 males and 97 females at an age of 56.47±11.79 years. All patients completed preoperative examination, and were divided into a positioning group (n=97) and a non-positioning group (n=95) according to whether the preoperative positioning was performed. And the surgical indicators between the two groups were compared. According to the substance of ground-glass opacity, they were divided into a pure ground-glass nodules group (n=23) and a mixed ground-glass nodules group (n=74) in the positioning group and a pure ground-glass nodules group (n=14) and a mixed ground-glass nodules group (n=81) in the non-positioning group . According to the size and distance of the nodules from the pleura and whether the nodules could be detected, the corresponding linear function was obtained.ResultsThe operative time of methylene blue localization group was shorter than that of the no localization group. In the scatter plot, the corresponding diameter and depth of the nodules and the corresponding coordinate points which can be explored were described. And linear regression was performed on all the coordinate points to obtain the linear function: depth=0.648×diameter–1.446 (mm). It can be used as an indication for the preoperative localization of pure ground-glass nodules in Da Vinci robotic surgery. Linear function: depth=0.559 5×diameter+0.56 (mm). It can be used as an indication of preoperative localization of mixed ground-glass nodules in Da Vinci robotic surgery.ConclusionThis equation can be used as a preoperative indication for clinical peripheral pulmonary ground-glass nodules.

    Release date:2020-02-26 04:33 Export PDF Favorites Scan
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