Complications of primary external radiation therapy followed by radical hysterectomy for bulky stage IB and II cervical cancer

2001 ◽  
Vol 37 ◽  
pp. S332 ◽  
Author(s):  
P. Morice ◽  
G. Le Bouedec ◽  
C. Pomel ◽  
C. Haie-Meder ◽  
J.L. Achard ◽  
...  
2021 ◽  
Vol 67 (1) ◽  
pp. 85-90
Author(s):  
Alyena Chernyshova ◽  
Vitaly Аntipov ◽  
Larisa Коlomiets ◽  
Vladimir Chernov ◽  
Victor Gyunter ◽  
...  

The development and implementation of organ-preserving treatment modalities is the priority trend in the current cancer treatment of patients of the reproductive age. Methods of expanding indications for organ-preserving treatment in cancer patients are becoming relevant. We present our experience in performing radical trachelectomy with uterine transposition in patients with stage IB-II cervical cancer. Our surgical technique allows the preservation of the uterus and adnexa in patients with invasive cervical cancer, who need to receive combined modality treatment including extended surgery followed by chemotherapy or radiation therapy to the pelvis. Transposition of the uterus and adnexa after radical abdominal or laparoscopic trachelectomy allows the movement of the uterus and ovaries out of the radiation field. After completion of radiation therapy, the uterus with adnexa is repositioned into the pelvis and uterine-vaginal anastomosis is formed using an implant made of titanium nickelide. Independent pregnancy and the use of assisted reproductive technologies are permitted after passing the time when distant metastases are most likely to develop.  


2009 ◽  
Vol 66 (7) ◽  
pp. 539-543 ◽  
Author(s):  
Vladimir Pazin ◽  
Svetlana Dragojevic ◽  
Zeljko Mikovic ◽  
Milan Djukic ◽  
Snezana Rakic ◽  
...  

Background/Aim. Therapy of the early stages of cervical carcinoma is surgical or radiation therapy, and for advanced stages chemoradiotherapy. Pelvic and paraaortic lymphadenectomy in early stages offers the most important prognostic factor for survival. To evaluate the method and possible influence on surgical staging and therapy of the disease, we performed sentinel node (SN) identification and excision during open radical hysterectomy and lymphadenectomy in stage Ib-IIa cervical carcinoma. Methods. Fifty patients initially diagnosed with invasive squamous-cell cervical cancer stage Ib-IIa were included in the study. Only blue dye was used for sentinel node mapping. During the surgery sentinel nodes were identified and sent to histopathology separately from the other lymph nodes. After lymphadenectomy, radical hysterectomy was performed. Results. The mean age of our fifty patients was 49.10 years (SD = 5.92), and the mean number of extracted lymph nodes per patient was 25.78 (SD = 5.58). The number of sentinel nodes identified per patient was between 0 and 5, mean 2.60 (SD = 1.54). There were no inframesenteric paraaortic sentinel nodes found among the patients. The dominant tumor grades were 1 and 2, 40% and 50% respectively, and 37 out of 50 patients (74%) had tumor diameter less than 2 cm. In four patients (8%) SN were not identified. In the rest of 46 patients the presence of SN was bilateral (19 patients, 38%) or unilateral (27 patients, 54%). Positive SN were found in 17 patients (34%), and negative in 29 patients (58%). Out of the whole group of patients (50), 21 of them (42%) had positive lymph nodes (LN). In the crosstab statistics, no differences were noticed in the group without SN found, in comparison with tumor grade and diameter. Finally, our test showed sensitivity of 85% (SE = 8%), specificity 100%, positive predictive value of 100%, negative predictive value of 89.6% (SE = 5.6%), and effectiveness of 93% (SE = 3.6%) regarding sentinel lymphadenectomy. Conclusion. This method of sentinel lymph node identification is simple, but not reliable enough to support further laparoscopic SN excision in order to make the final decision about the treatment of cervical cancer.


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