Modified sequential laser photocoagulation of placental communicating vessels for twin–twin transfusion syndrome to prevent fetal demise of the donor twin

2009 
Aims:  Twin–twin transfusion syndrome (TTTS) complicated with absent or reversed end-diastolic flow in the umbilical artery (UA-AREDF) of the donor has a high perinatal mortality rate. To improve the prenatal outcome, we introduced and modified the technique of sequential selective laser photocoagulation of communicating vessels (SQLPCV), and assessed the clinical efficacy. Methods:  The modified SQLPCV was designed with the following order of coagulation: (i) artery-to-artery (AA) anastomoses; (ii) venous-to-venous anastomoses; (iii) artery-to-venous anastomoses from donor to recipient; and (iv) artery-to-venous anastomoses from recipient to donor. TTTS patients with UA-AREDF of donors were recruited, and the perinatal outcome and its association with the types of anastomoses were compared in patients who underwent the standard selective laser method (SLPCV). Results:  Twenty-three patients underwent modified SQLPCV and 29 underwent SLPCV. Total intrauterine fetal death (IUFD) was significantly lower in modified SQLPCV than in SLPCV (9% vs 38%; P < 0.001). Donor IUFD was significantly lower in modified SQLPCV than in SLPCV (13% vs 52%; P = 0.007); however, no significant effect was noted in the recipient IUFD cases. When AA anastomoses were present, donor IUFD was significantly lower in modified SQLPCV than it was in SLPCV (18% vs 71%; P = 0.018); however, the difference was not significant when AA anastomoses were not present (8% vs 25%; P = 0.59). Logistic regression analysis revealed that modified SQLPCV served as the protective factor against the donor's IUFD (odds ratio = 0.015; 95% confidence interval [0.0001–0.775]; P = 0.037). Conclusion:  The modified SQLPCV was useful for the prevention of the donor's IUFD in cases of TTTS with UA-AREDF.
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