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Biomedical subjects

J Gómez-Amor

Publications and source records attributed to J Gómez-Amor.

5 recordsLinked to original sources

Gender differences in cardiovascular and electrodermal responses to public speaking task: the role of anxiety and mood states.

Gender moderates psychophysiological responses to stress. In addition to the hormonal background, different psychological states related to social stressors, such as anxiety and mood, could affect this response. The purpose of this study was to examine the existence of gender differences in the cardiovascular and electrodermal responses to a speech task and their relationship with anxiety and the mood variations experienced. For this, non-specific skin conductance responses (NSRs), heart rate (HR), and finger pulse volume (FPV) were measured at rest, and during preparation, task and recovery periods of an academic career speech in undergraduate men (n=15) and women (n=23), with assessment of changes in the state version of the State-Trait Anxiety Inventory (STAI-S) and in the Profile of Mood States (POMS) questionnaires. Men and women did not differ in trait anxiety, hostility/aggressiveness, or in the appraisal of the task, which were evaluated with the trait version of the State-Trait Anxiety Inventory (STAI-T), the Buss and Durkee Hostility Inventory (BDHI), and a self-report elaborated by ourselves, respectively. Women had higher FPV in all periods except during the task, and were more reactive to the stressor in state anxiety, and in the amplitude of NSRs. No gender differences for HR and for the frequency of NSRs were found. Anxiety and mood states were differently related to cardiovascular and electrodermal measurements in men and women. Further studies should consider the hormonal variations in addition to the psychological dimensions, in order to offer a more integrative perspective of the complex responses to stress.

Adult↗

Electrodermal activity in menstrual cycle phases: a comparison of within- and between-subjects designs.

Electrodermal activity (EDA) changes in menstrual cycle were studied in two experiments. In both experiments subjects were presented with 16 80-dB tones; 15 tones were 4 s, 1000 Hz, and the last one - change trial - was a 6-s, 3000-Hz tone. In Expt. 1, a within-subjects design was employed, and 15 women were studied throughout a complete menstrual cycle. No significant changes in EDA associated with menstrual cycle phases were found, but significant decreases in electrodermal responsiveness during experimental sessions in EDA parameters were observed. In Expt. 2, with a between-subjects design, 56 women were divided in menstrual (n = 10), follicular (n = 12), ovulatory (n = 14), luteal (n = 13) and premenstrual (n = 7) groups, according to the cycle phase in which the subject was at the time of recording. At the ovulatory phase there were significant increases in skin conductance response (SCR) magnitude, skin conductance level, SCR habituation rate, and SCR amplitude to stimulus change, in relation to menstrual, luteal, and premenstrual phases. The discrepancies in the EDA data coming from the two experiments may be explained by practice effects appearing in Expt. 1.

Adult↗

Electrodermal activity, hormonal levels and subjective experience during the menstrual cycle.

Changes in electrodermal activity and subjective experience were studied during the menstrual cycle. Sixty-two women, grouped into menstrual, follicular, ovulatory, luteal and premenstrual phases, were presented with 15, 4-s, 80-dB, 1000-Hz tones. Psychological states and psychosomatic symptoms were tested with Spielberger's State-Trait Anxiety Inventory and a self-report questionnaire. Two estimation procedures of the hormonal phases were used: one based on the onset of menses and cycle length, and another on the basal body temperature. Subjects were grouped into low or high levels of luteinizing hormone, follicle-stimulating hormone and progesterone. There were significant increases in nonspecific response frequency, skin conductance response magnitude, skin conductance level, and a decrease in habituation rate at the ovulatory phase in comparison with luteal and premenstrual phases. No changes between the cycle phases were found in subjective experience. High follicle-stimulating hormone levels were associated with slower habituation rates and low trait-anxiety. The relationship between arousal changes and subjective experience in menstrual cycle is discussed.

Adult↗

Sex differences and the asymmetry of specific and non-specific electrodermal responses.

Phasic electrodermal conductance responses were bilaterally recorded from 30 subjects (15 males and 15 females). After a 5-min adaptation period subjects were presented with two series of ten 80-dB tones each, with a 4-min rest period between the two series. Data from sinistrals, ambidextrous, and from subjects with familial sinistrality were excluded from statistical analysis. Males displayed more asymmetry between hands both in their non-specific and specific responses, with larger skin conductance responses on the left hand. Females showed a less marked asymmetry, with larger skin conductance responses on the right hand. Similar results were found in skin conductance levels. It was concluded that sex differences are an important variable in the study of electrodermal asymmetry.

Acoustic Stimulation↗

Sex differences and bilateral electrodermal activity: a replication.

The present study was aimed at replicating the results of a previous work on sex differences and electrodermal asymmetry from our laboratory (Román, et al. 1987). Skin conductance was bilaterally recorded in a sample of 44 dextral volunteers (22 males and 22 females) during a stimulus-free period, and the performance of two tasks (verbal and spatial). Subjects were grouped into two groups of right-hand and left-hand dominance in their electrodermal responses (EDRs) in accordance with their laterality coefficient scores at rest. During the tasks subjects appeared clearly differentiated by their lateralization in the magnitude and frequency of EDRs independently of gender: right-hand responders showed higher electrodermal activity on their right hand, while left-hand responders showed higher electrodermal activity on their left hand. Sex differences were not observed within each responsiveness pattern. The orientation of phasic electrodermal changes remained constant throughout the different conditions.

Adolescent↗