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Artículo en Chino | WPRIM | ID: wpr-880791

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OBJECTIVE@#To explore the application of the"five-line division method "in selecting the surgical approach for occupying lesions in the saddle area and its adjacent areas.@*METHODS@#Based on the natural anatomic structures, 5 lines (alpha, beta, theta line and lambda, epsilon line) were drawn on the images of the craniocerebral axial plane crossing the middle of the saddle area and the craniocerebral median sagittal plane, thus dividing the saddle area and its adjacent areas into 6 regions in the axial plane (1, 2, 3, 1', 2', and 3' regions) and into 4 regions in the sagittal plane (I, II, III, and IV regions). Based on these divisions, the large space-occupying lesions in the saddle area and adjacent areas were classified and their respective surgical approaches were determined after reviewing the commonly used approaches in the saddle area and clinical experiences. We collected the data of 116 patients undergoing surgeries for space-occupying lesions involving the saddle and the adjacent areas in our hospital between September, 2014 and August, 2017, and analyzed their classifications and the corresponding surgical approaches based on the "five- line division method " to compare the consistency between the hypothetic approaches and the approaches adopted in the actual surgeries.@*RESULTS@#The actual surgical approaches adopted in the 116 cases were all selected under the guidance of experts in our hospital. The hypothetic surgical approaches selected based on the"five- line division method "showed a good consistency with the actually adopted approaches.@*CONCLUSIONS@#The"five-line division method "can spatially classify the commonly seen space-occupying lesions involving the saddle area and its adjacent area to provide assistance in the selection of surgical approaches for such lesions.


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Humanos , Cirugía General/métodos
2.
Chinese Journal of Neuromedicine ; (12): 878-883, 2016.
Artículo en Chino | WPRIM | ID: wpr-1034446

RESUMEN

Objective To explore the experimental methods and conditions of 131I-labeled anti-epidermal growth factor receptor (EGFR) vⅢ preparation,and to evaluate the targeting distribution of 131I-Anti-EGFRvⅢ in malignant glioma-loading nude mice.Methods The 131I labeling on anti-EGFRvⅢ was performed by Iodogen method.The labeling rate was determined after separation and purification and paper chromatography was used for the determination of radioactive chemical purity.Twenty-eight U87-EGFRvⅢ malignant glioma-loading nude mice with glioma average diameter of 10-15 mm were chosen and randomly divided into group of 131I-Anti-EGFRvⅢ intravenous injection,group of Na131I intravenous injection,group of 131I-Anti-EGFRvⅢ intratumor injection and group of Na131I intratumor injection;7.5 MBq/0.1 mL labeled products with 131I-Anti-EGFRvⅢ or Na131I were injected in the veins or the tumors to observe the changes of the radioactivity distribution of malignant glioma-loading nude mice with SPECT imaging.Results The rate of 131I-labeled anti-EGFRvⅢ was (68.12±6.19)%,and the immediate rate of radiochemieal purity was (95.12±0.59)%,and (87.78 ±5.35)% in room temperature and (85.12±3.58)% in 37 ℃ serum placed for 24 h.SPECT scan showed that the tumor site had significantly stronger imaging than the thyroid gland with the labeled products either by intravenous or intratumor injection.Conclusions It is applicable to the 131I-labeled Anti-EGFRvⅢ with Iodogen method.131I-Anti-EGFRvⅢ has good radiation chemical purity and stability in vitro and in vivo,and could be combined with tumor tissue specificity.

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