Key result
Twin fetal sex combinations are linked to distinct linear and entropy heart rate dynamics.
Why the study?
Twins may have sex-specific differences in linear and nonlinear fetal heart rate indices, but these differences have not been well characterized.
Do fetal heart rate variability indices differ according to fetal sex combination in twins?
Observational (n=28)
Do fetal heart rate variability indices differ according to fetal sex combination in twins?
Fetal sex combination in twins is associated with specific differences in linear and nonlinear indices of fetal heart rate variability, suggesting sex-specific autonomic nervous system development.
May inform sex-specific twin monitoring research; leaves open whether indices predict outcomes or warrant adjusted thresholds.
AIMS: To evaluate the differences in linear and complex heart rate dynamics in twin pairs according to fetal sex combination [male-female (MF), male-male (MM), and female-female (FF)]. METHODS: Fourteen twin pairs (6 MF, 3 MM, and 5 FF) were monitored between 31 and 36.4 weeks of gestation. Twenty-six fetal heart rate (FHR) recordings of both twins were simultaneously acquired and analyzed with a system for computerized analysis of cardiotocograms. Linear and nonlinear FHR indices were calculated. RESULTS: Overall, MM twins presented higher intrapair average in linear indices than the other pairs, whereas FF twins showed higher sympathetic-vagal balance. MF twins exhibited higher intrapair average in entropy indices and MM twins presented lower entropy values than FF twins considering the (automatically selected) threshold rLu. MM twin pairs showed higher intrapair differences in linear heart rate indices than MF and FF twins, whereas FF twins exhibited lower intrapair differences in entropy indices. CONCLUSIONS: The results of this exploratory study suggest that twins have sex-specific differences in linear and nonlinear indices of FHR. MM twins expressed signs of a more active autonomic nervous system and MF twins showed the most active complexity control system. These results suggest that fetal sex combination should be taken into consideration when performing detailed evaluation of the FHR in twins.
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Tendais et al. (2014) conducted an observational in Twin pregnancy (n=28). Fetal sex combination vs. Different sex combinations (MF, MM, FF) was evaluated on Linear and nonlinear fetal heart rate indices. Fetal sex combination in twins was associated with distinct heart rate dynamics, with male-male twins showing higher linear indices and male-female twins exhibiting higher entropy indices.
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