Search PubMedSearch

Biomedical subjects

E C Giblin

Publications and source records attributed to E C Giblin.

5 recordsLinked to original sources

Sleep patterns related to menstrual cycle phase and premenstrual affective symptoms.

An ovulatory menstrual cycle is characterized by fluctuating levels of progesterone. Progesterone, a gonadal hormone known for its soporific and thermogenic effects, is present in negligible levels prior to ovulation and in high levels after ovulation. To describe and compare sleep patterns in relation to ovulatory cycles and premenstrual mood state, sleep was monitored in healthy women at two phases of the menstrual cycle. Results indicated that rapid-eye-movement (REM) latency was significantly shorter during the postovulatory (luteal) phase compared to the preovulatory (follicular) phase, but there was no significant difference in latency to sleep onset or the percentage of REM sleep. While there were no menstrual cycle phase differences in the percentages of various sleep stages, the women with negative affect symptoms during the premenstruum demonstrated significantly less delta sleep during both menstrual cycle phases in comparison with the asymptomatic subjects.

Adult

Sleep.

Explore the source record for details and available documents.

Adult

Testosterone replacement in hypogonadal men: effects on obstructive sleep apnoea, respiratory drives, and sleep.

The obstructive sleep apnoea syndrome occurs predominantly in men. To determine the effect of testosterone on ventilatory function and whether testosterone may play a role in the development of obstructive apnoea, we performed waking ventilatory drive studies and sleep studies in five hypogonadal men. These androgen-deficient subjects were studied both while receiving no treatment and after six weeks of testosterone replacement therapy (testosterone oenanthate 200 mg i.m. every 2 weeks). Hypoxic ventilatory drive decreased significantly, from 158 +/- 39 (mean +/- SEM) off testosterone to 88 +/- 19 on testosterone therapy (P less than 0.05). Hypercapnoeic ventilatory drive did not change significantly on testosterone. Obstructive sleep apnoea developed in one man and markedly worsened in another man in association with testosterone administration. Both of these subjects also exhibited marked decreases in oxygen saturation with the development of cardiac dysrhythmias during sleep and large increases in haematocrit. The remaining three hypogonadal men did not demonstrate significant sleep apnoea either on or off testosterone. The percentage of sleep time spent in REM sleep increased from 14 +/- 3% to 22 +/- 2% when the men were receiving testosterone (P less than 0.01), but the episodes of sleep apnoea tended to occur during non-REM sleep. We conclude that in some hypogonadal men, replacement dosages of testosterone may affect ventilatory drives and induce or worsen obstructive sleep apnoea. The obstructive sleep apnoea syndrome is a potential complication of testosterone therapy.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult