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1.
Chinese Journal of Medical Imaging ; (12): 845-848, 2017.
Article in Chinese | WPRIM | ID: wpr-706414

ABSTRACT

Purpose To explore the CT and MRI manifestations of spinal solitary fibrous tumor (SFT) to improve the accuracy of imaging diagnosis.Materials and Methods CT and MRI manifestations of eight pathologically confirmed SFT were retrospectively analyzed.CT and MRI scan were performed in 8 cases.The location,shape,size,density/signal,margin,condition of the internal lesion,adjacent bone destruction and reinforcement characteristic were also analyzed.Results Of the 8 patients,4 cases were pathologically confirmed benign and the other 4 cases were malignant.6 cases showed trans-intervertebral foramen dumbbell shaped soft tissue masses,1 case showed lobulated soft tissue mass lying outside the invertebrate canal and 1 case showed long fusiform lying in intradural extramedullary of spinal canal.6 cases had adjacent bone swelling or osteolytic destruction,1 case had compressive bone defect,and 1 cases showed no obvious bone destruction.The tumor showed an equal/mixed density on CT scan.T1WI equal/low signal was seen in MRI scan.Equal/slightly higher T2WI signals were seen in 6 cases and mixed signals in 2 cases.All patients undergoing enhanced scan showed obviously inhomogeneous enhancement.Conclusion Spinal solitary fibrous tumors are lobulated or dumbbell shaped and growth clinging to or surround the dura mater.The feature of MRI signal is evident that T1WI is mostly equal/low signal and T2WI is usually slightly higher/equal signal,often accompanied by bone destruction.

2.
Chinese Journal of Medical Imaging ; (12): 690-694, 2017.
Article in Chinese | WPRIM | ID: wpr-706388

ABSTRACT

Purpose To explore the application value of dynamic contrast enhanced MRI (DCE-MRI) in judging and diagnosing metastasis of lung cancer.Material and Methods Sixty-one metastatic spinal tumor patients received DCE-MRI and their images acquired after scanning were post-processed.Signal intensity-time curve,signal intensity amplification in rising period of the curve (Peak SE%),maximum ascending linear slope of the curve (Max Wash-in SE%) and descending slope of the curve (Wash-out SE%) and other semiquantitative parameters were acquired.Double chamber pharmacokinetics was adopted to analyze and obtain Ktrans,rate constant (Kep) and other quantitative parameters.CHAID method was taken to establish tree structure model to confirm optimal sorting parameter and identify optimal division.Results For the DCE-MRI scanning parameters for 61 metastatic spinal tumor patients,differences of Wash-out SE% and Kep between lung cancer and other tumor spinal metastasis were statistically significant (P<0.01),while differences of Peak SE%,Max Wash-in SE% and Ktrans between the two were not statistically significant (P>0.05).When Wash-out SE%>-660.6% and Max Wash-in SE%>98.0%,original focus of about 94.7% was possible to come from lung.When taking tree structure model set up in the study for identification,10-fold cross-validation indicated (29.5±5.8)% error rate.Conclusion Taking DCE-MRI semi-quantitative and quantitative analysis parameters for identification and diagnosis of metastasis of lung cancer is feasible.It can provide reference evidence for source identification of spinal sarcoma and clinical treatment.

3.
International Journal of Biomedical Engineering ; (6): 348-352, 2015.
Article in Chinese | WPRIM | ID: wpr-489566

ABSTRACT

Objective To explore the effects of different doses of contrast agent (CA) on types of time-signal intensity curves (TICs) and semi-quantitative parameters after dynamic contrast-enhanced MRI (DCE-MRI) on Walker 256 murine breast tumor model.Methods A total of 12 rats burdened Walker256 breast cancer models were established and divided into 3 groups randomly, 4 in each group.Routine MR and DCE-MRI scans of the rats using Bruker Pharmascan 7T MR scanner were performed.Doses for the 3 groups were 0.2, 0.3, and 0.5 mmol/kg, respectively.MR data, TICs types and semi-quantitative parameters from each different dose group were statistically studied and compared to observe the differences.Results Tumors were enhanced significantly after injection.The types of TICs in all tumors were the Ⅲ pattern which was not influenced by CA doses.Semi-quantitative parameters of first enhancement (Efirst), maximal enhancement (Emax), washout enhancement (Ewash), and signal enhancement ratio (SER) showed statistical differences among the three dose groups (P<0.05).Semi-quantitative parameters of time to peak (Tpeak) and washout velocity (Vwash) showed no statistical differences among the three dose groups (P>0.05).Mean signal intensity of each group was highly negatively linear correlated with scan times after the peak (r=-0.972, P=0.000;r=-0.971, P=0.000;r=-0.989, P=0.000).The washout slope (slopewash) showed no statistical differences among the three groups (P>0.05).Conclusions Injection doses of CA didn't change the TIC type, Tpeak, Vwash, and Slopewash.These parameters are comparable among different medical centers and can be considered as prior parameters to monitor the efficacy of neoadjuvant chemotherapy.

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