The goal of this project is to test our central hypothesis that the spinal cord neuroplasticity in females will be modulated by the level of estradiol concentration. under aim 1 we will determine the influence of estradiol fluctuations on spinal circuit excitability post afferent (sensory) mediated subthreshold motor priming in young healthy females and males. We will use an established repetitive peripheral nerve electrical stimulation with a stimulation intensity below the motor threshold to prime the spinal motor circuits. under aim 2 we seek to characterize the input output property of spinal circuit excitability after descending drive (motor) mediated priming in young healthy male participants. in aim 3 we will examine the influence of estradiol fluctuations on descending drive mediated motor priming in young healthy females.
Study Type
OBSERVATIONAL
Enrollment
50
AIM 1: Investigate the estradiol effect on spinal circuit excitability post afferent (sensory) mediated subthreshold motor priming in young healthy women and men. AIM 2: Characterize the Input output property of spinal circuit excitability following descending drive (motor) mediate priming in young healthy participants AIM 3: Examine the estradiol effect on spinal circuit excitability following descending drive (motor) mediated priming in young healthy females
University of Texas Southwestern Medical Center
Dallas, Texas, United States
RECRUITINGChange in Spinal circuit excitability
Change in Spinal circuit excitability will be assessed by measuring Hoffmann reflex/ M wave ratio of the soleus muscle. Higher scores indicate poorer outcome.
Time frame: Baseline 1, Post-60mins after peripheral nerve stimulation
Change in Motor neuron excitability
Changes in motor neuron excitability, as quantified by Delta-F values.
Time frame: Baseline 2, Post-60mins after priming
Change in spinal reflex expression
Time frame: Baseline 2, Post-60mins after priming
Change in descending drive mediated motor priming
Time frame: Baseline 2, Post-60mins after priming
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