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Biomedical subjects

A J Santiesteban

Publications and source records attributed to A J Santiesteban.

7 recordsLinked to original sources

The effects of muscle fatigue on bone strain.

There is anecdotal evidence that bone strains may increase to the point that bone becomes susceptible to rapid failure when muscles become fatigued. To determine whether neuromuscular response could be a factor in accelerating bone failure, we tested the hypothesis that muscle fatigue causes a significant increase in peak principal and shear strains in bone. Ten adult foxhounds were subjected to rigorous exercise that caused muscular fatigue while myoelectrical activity of the quadriceps and hamstrings and strain on the distal tibia were monitored simultaneously. Ground reaction forces on the dog hindlimbs were measured before and after strain gauges had been applied to the tibia. The data show a significant shift to lower median myoelectrical frequencies in the quadriceps, indicating muscular fatigue, following the 20 min exercise period. In conjunction with this shift, peak principal and shear strains increased on both compressive and tensile cortices of the tibia and shear strain on the tensile cortex increased significantly (P = 0.02). The largest changes were along the anterior and anterolateral surfaces of the tibia, where peak principal strain increased by an average of 26-35% following muscular fatigue. The cross-sectional strain distribution was calculated at the gauge site at peak strain at the beginning of the exercise period and at peak strain after 20 min of exercise. These data show a change in strain distribution when muscle becomes fatigued. Strains on the posterior cortex of the bone showed the greatest change. Correlation analysis demonstrated a significant inverse association between median myoelectrical frequency and bone strain after 20 min of exercise (Spearman r2 = 1.00; P = 0.05). These data show that muscle fatigue may be associated with increased bone strain.

Animals

Isometric exercises and a simple appliance for temporomandibular joint dysfunction: a case report.

This case report presents a treatment approach for a patient with temporomandibular joint (TMJ) dysfunction signs and symptoms. Temporomandibular joint pain, jaw clicking and locking, and postural abnormalities were treated with gentle isometric (static) exercises, coordination exercises, and an easily fitted and readily available appliance. After treatment, the patient showed reduced TMJ pain, no jaw locking, and improved TMJ mobility. The patient also showed improved postural awareness. The results of treatment and the relatively minor cost of the appliance make the sharing of this case study potentially worthwhile for those clinicians treating patients with TMJ dysfunction.

Adult

Electromyographic and dynamometric characteristics of female pelvic-floor musculature.

The purpose of this study was to determine whether differences existed on dynamometer recordings of muscle strength and electromyographic activity of the pelvic floor in 5 pregnant and 10 nonpregnant women. Pelvic-floor musculature strength measurements, using a perineometer, showed no significant differences between groups. All subjects could hold maximal voluntary contractions for three seconds, but pelvic-floor strength measurements decreased rapidly beyond three seconds. Integrated electromyographic recordings failed to show significant differences between groups. A periodicity of integrated electromyographic activity was observed in both pregnant and nonpregnant subjects. Great variability in the amount of integrated electromyographic activity was observed among both groups during maximal voluntary contractions. The practice of requesting that individuals with pelvic-floor dysfunction hold maximal voluntary contractions longer than three seconds may not be efficacious. Electromyographic measures must be complemented by strength measures for adequate evaluation and treatment of pelvic-floor dysfunction.

Adult

The role of physical agents in the treatment of spine pain.

Transcutaneous electrical nerve stimulation (TENS) and electroacupuncture are effective agents in the management of spine pain. Ultrasound and shortwave therapy are often used, but the demonstrated effectiveness of these physical agents in the treatment of spine pain is questionable. Pain relief is the major reason for the use of physical agents. As the pain is controlled, the patient is better able to carry out a home program, tolerate traction, or relax sufficiently to allow mobilization of the spine. Physical agents alone have no long-range value.

Acupuncture Therapy