PURPOSE: Sex hormones have profound effects on the nervous system in vitro and in vivo. The present study examines the effect of the menstrual cycle on maximal isometric force (MVC) and tremor during an endurance task. METHODS: Nine eumenorrheic females participated in five study visits across their menstrual cycle. In each menstrual phase, an MVC and an endurance task to failure were performed. Tremor across the endurance task was quantified as the coefficient of variation in force and was assessed in absolute time and relative percent time to task failure. RESULTS: MVC decreases 23% from ovulation to the mid luteal phase of the menstrual cycle. In absolute time, the mid luteal phase has the highest initial tremor, though the early folli...
Context: Acute decreases in strength have been associated with risky biomechanical strategies that m...
Background: Concentrations of endogenous sex hormones fluctuate across the menstrual cycle (MC), whi...
Hormonal variations during the menstrual cycle (MC) may influence trainability of strength. We inves...
Background: Estrogen and progesterone are the primary female sex hormones and have net excitatory an...
Purpose To examine the effects of fatiguing power-loading on neuromuscular properties, force produ...
BACKGROUND: There are alterations in strength in relation to menstrual cycle phase but little data a...
Estrogen and progesterone have distinct concentrations across the menstrual cycle, each one promotin...
Background: Estrogen and progesterone are the primary female sex hormones and have net excitatory an...
Hormonal fluctuations during the menstrual cycle may influence on muscular tensions and probably alt...
The purpose of this study was to identify and confirm biochemically three phases of the menstrual c...
Aim: To investigate whether hormonal fluctuations during the menstrual cycle affect corticospinal ex...
Sex hormone concentrations of eumenorrheic women typically fluctuate across the menstrual cycle and ...
The purpose of this study was to compare the maximal voluntary contraction of lower limbs pre-, duri...
Purpose: The female menstrual cycle (MC) is characterized by hormonal fluctuations throughout its di...
To investigate whether hormonal fluctuations during the menstrual cycle affect corticospinal excitab...
Context: Acute decreases in strength have been associated with risky biomechanical strategies that m...
Background: Concentrations of endogenous sex hormones fluctuate across the menstrual cycle (MC), whi...
Hormonal variations during the menstrual cycle (MC) may influence trainability of strength. We inves...
Background: Estrogen and progesterone are the primary female sex hormones and have net excitatory an...
Purpose To examine the effects of fatiguing power-loading on neuromuscular properties, force produ...
BACKGROUND: There are alterations in strength in relation to menstrual cycle phase but little data a...
Estrogen and progesterone have distinct concentrations across the menstrual cycle, each one promotin...
Background: Estrogen and progesterone are the primary female sex hormones and have net excitatory an...
Hormonal fluctuations during the menstrual cycle may influence on muscular tensions and probably alt...
The purpose of this study was to identify and confirm biochemically three phases of the menstrual c...
Aim: To investigate whether hormonal fluctuations during the menstrual cycle affect corticospinal ex...
Sex hormone concentrations of eumenorrheic women typically fluctuate across the menstrual cycle and ...
The purpose of this study was to compare the maximal voluntary contraction of lower limbs pre-, duri...
Purpose: The female menstrual cycle (MC) is characterized by hormonal fluctuations throughout its di...
To investigate whether hormonal fluctuations during the menstrual cycle affect corticospinal excitab...
Context: Acute decreases in strength have been associated with risky biomechanical strategies that m...
Background: Concentrations of endogenous sex hormones fluctuate across the menstrual cycle (MC), whi...
Hormonal variations during the menstrual cycle (MC) may influence trainability of strength. We inves...