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1.
Psychoneuroendocrinology ; 111: 104461, 2020 01.
Article in English | MEDLINE | ID: mdl-31630051

ABSTRACT

The influence of testosterone on the development of human brain lateralization has been subject of debate for a long time, partly because studies investigating this are necessarily mostly correlational. In the present study we used a quasi-experimental approach by assessing functional brain lateralization in trans boys (female sex assigned at birth, diagnosed with Gender Dysphoria, n = 21) before and after testosterone treatment, and compared these results to the functional lateralization of age-matched control groups of cisgender boys (n = 20) and girls (n = 21) around 16 years of age. The lateralization index of the amygdala was determined with functional magnetic resonance imaging (fMRI) during an emotional face matching task with angry and fearful faces, as the literature indicates that boys show more activation in the right amygdala than girls during the perception of emotional faces. As expected, the lateralization index in trans boys shifted towards the right amygdala after testosterone treatment, and the cumulative dose of testosterone treatment correlated significantly with amygdala lateralization after treatment. However, we did not find any significant group differences in lateralization and endogenous testosterone concentrations predicted rightward amygdala lateralization only in the cis boys, but not in cis girls or trans boys. These inconsistencies may be due to sex differences in sensitivity to testosterone or its metabolites, which would be a worthwhile course for future studies.


Subject(s)
Amygdala/drug effects , Testosterone/pharmacology , Transgender Persons/psychology , Adolescent , Amygdala/metabolism , Brain/metabolism , Emotions/physiology , Facial Expression , Female , Functional Laterality/drug effects , Gender Dysphoria/physiopathology , Gender Identity , Humans , Image Processing, Computer-Assisted/methods , Magnetic Resonance Imaging/methods , Male , Men , Sex Characteristics , Testosterone/metabolism , Transsexualism/drug therapy , Transsexualism/metabolism , Women
2.
Psychoneuroendocrinology ; 88: 78-91, 2018 02.
Article in English | MEDLINE | ID: mdl-29195161

ABSTRACT

After decades of research, the influence of prenatal testosterone on brain lateralization is still elusive, whereas the influence of pubertal testosterone on functional brain lateralization has not been investigated, although there is increasing evidence that testosterone affects the brain in puberty. We performed a longitudinal study, investigating the relationship between prenatal testosterone concentrations in amniotic fluid, pubertal testosterone concentrations in saliva, and brain lateralization (measured with functional Transcranial Doppler ultrasonography (fTCD)) of the Mental Rotation, Chimeric Faces and Word Generation tasks. Thirty boys and 30 girls participated in this study at the age of 15 years. For boys, we found a significant interaction effect between prenatal and pubertal testosterone on lateralization of Mental Rotation and Chimeric Faces. In the boys with low prenatal testosterone levels, pubertal testosterone was positively related to the strength of lateralization in the right hemisphere, while in the boys with high prenatal testosterone levels, pubertal testosterone was negatively related to the strength of lateralization. For Word Generation, pubertal testosterone was negatively related to the strength of lateralization in the left hemisphere in boys. For girls, we did not find any significant effects, possibly because their pubertal testosterone levels were in many cases below quantification limit. To conclude, prenatal and pubertal testosterone affect lateralization in a task-specific way. Our findings cannot be explained by simple models of prenatal testosterone affecting brain lateralization in a similar way for all tasks. We discuss alternative models involving age dependent effects of testosterone, with a role for androgen receptor distribution and efficiency.


Subject(s)
Functional Laterality/drug effects , Functional Laterality/physiology , Testosterone/physiology , Adolescent , Brain/physiopathology , Cognition/physiology , Female , Humans , Longitudinal Studies , Male , Pregnancy , Prenatal Exposure Delayed Effects/metabolism , Prenatal Exposure Delayed Effects/physiopathology , Puberty/metabolism , Receptors, Androgen , Sex Characteristics , Sexual Maturation , Testosterone/metabolism , Ultrasonography, Doppler, Transcranial/methods
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