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Biomedical subjects

K T Ragnarsson

Publications and source records attributed to K T Ragnarsson.

15 recordsLinked to original sources

Neuroendocrine changes during functional electrical stimulation.

This study examined the effects of a computerized functional electrical stimulation exercise program on plasma beta-endorphin-like immunoreactivity (BEP-ir), cortisol levels and depression parameters in spinal cord-injured individuals. Nine subjects from 1.2 to 33.5 yr postinjury with both motor and sensory complete lesions between C5 and T12 participated. It was determined that patients who sustained spinal cord-injuries less than 5 yr before this study had lower than normal baseline levels of BEP-ir and flattened circadian rhythms. Patients who sustained their injury greater than 5 yr before this study had higher baseline levels of BEP-ir with some return to normal circadian rhythmicity. Baseline cortisol levels, regardless of time since injury, appeared to be dysregulated. Regular exercise with computerized functional electrical stimulation caused significantly (P less than 0.05) sustained increases in BEP-ir in all patients and improved the regulation of cortisol. Furthermore, the more strenuous the exercise training, greater increases in BEP-ir levels were seen. Last, depression scores improved, which suggests a possible association between subjective mood and BEP-ir levels.

Adult

Rehabilitation in spinal cord disorders. 3. Comprehensive management of spinal cord injury.

This self-directed learning module highlights advances in the management of the person with a spinal cord deficit. Traumatic spinal cord injury is being used as the model, but the principles apply to all patients with spinal cord deficits. This article is part of the chapter on rehabilitation of spinal cord disorders for the Self-Directed Medical Knowledge Program Study Guide for practitioners and trainees in physical medicine and rehabilitation. Specifically, this section contains information regarding prehospital care, acute assessment and management, primary rehabilitation by systems, sexuality and psychosocial issues, management of pain and spasticity, functional goals, the role of functional electrical stimulation, and long-term follow-up.

Humans

Rehabilitation in spinal cord disorders. 2. Anatomy, pathogenesis, and research for neurologic recovery.

This self-directed learning module highlights advances in this topic area. It is part of the chapter on rehabilitation in spinal cord disorders in the Self-Directed Medical Knowledge Program Study Guide for practitioners and trainees in physical medicine and rehabilitation. This article contains learning objectives on the anatomy of the spine and spinal cord, pathogenesis of spinal cord trauma, mechanisms of spinal fractures and dislocations, causes of nontraumatic spinal cord disorders, and research on neurologic recovery. Advances that are covered in this section include various experimental animal models for producing spinal cord injury and new approaches to limit damage in acute injury and to promote recovery in chronic injury.

Animals

Aerobic training effects of electrically induced lower extremity exercises in spinal cord injured people.

Eleven people with spinal cord injury (SCI) (C4-T6) participated in a program of functional electric stimulation (FES) of their paralyzed leg muscles using the REGYS I system. Individualized protocols consisted of an initial phase of weight lifting, an intermediate phase of ergometer pedalling against 0 Kilopond (kp) alternated with 1/8kp for six two-minute runs separated by two-minute rest periods, and a final phase of 36 sessions of continuous ergometer pedalling against variable resistance. A metabolic analyzer measured exercise stress test parameters before and after each phase while subjects pedalled against incremented resistance. Peak oxygen consumption and total stress test time increased markedly. The respiratory exchange ratio (R=VCO2/VO2) at termination, however, did not differ from unity at any phase, indicating that fatigue (defined as a failure to maintain a pedalling frequency of 35 rpm) occurred when the anaerobic threshold was reached, and that FES exercise can increase the aerobic capacity of persons with SCI. The initial velocity of quadriceps shortening (derived from patellar tendon displacements) also decreased in five of eight subjects tested, suggesting corresponding increases in quadriceps twitch time. Since muscle inactivity converts slow-twitch to fast-twitch fibers, our subjects' increased muscle endurance accompanied by decreased muscle-shortening velocity were compatible with a disproportionate increase in the function of slow-twitch fibers relative to fast-twitch fibers. Although these findings demonstrate that lower extremity FES exercises can safely achieve significant aerobic training effects in patients with SCI, the peak levels of cardiorespiratory performance were similar to those reported for quadriplegic people performing maximal voluntary upper extremity exercises.

Adult

Physiologic effects of functional electrical stimulation-induced exercises in spinal cord-injured individuals.

Spinal cord injury (SCI) results in multiple degenerative changes that may in part be related to physical inactivity. There are indications that some of these changes may be reversed by exercise and fitness training. Computerized functional electrical stimulation (FES) allows active exercise of limbs paralyzed by upper motor neuron lesions. Thirty SCI subjects safely participated in an FES-induced exercise program for lower extremity strengthening and endurance training. Increased strength, endurance, and bulk of stimulated muscles were noted. The subjects were able to perform a greater amount of work on a lower extremity ergometer, both per unit of time and per length of time, indicating a training effect. A multistage stress test showed evidence that the subjects had increased their aerobic metabolism during the training program. Twitch time tests showed slowing of muscle contraction, and computed tomography showed increased muscle density.

Adolescent

Clinical evaluation of computerized functional electrical stimulation after spinal cord injury: a multicenter pilot study.

This study investigated the safety and effects of computerized functional electrical stimulation (FES) on spinal cord injured individuals. Nineteen subjects two to ten years postinjury, with clinically complete motor and sensory lesions between C4 and T10, participated. All subjects met the specific selection criteria. None had received lower extremity electrical stimulation before. In phase I, subjects received surface electrical stimulation to the quadriceps muscle bilaterally for resistive knee extension 3 times a week for four weeks. The resistance and number of completed lifts was recorded daily. In phase II, 36 sessions provided sequential surface electrical stimulation to the quadriceps, hamstrings, and gluteus muscles bilaterally in order for subjects to pedal a lower extremity ergometer with resistance varied depending on completed run time. For each session, heart rate, blood pressure, temperature, and work performance were recorded. Tests done before and after the training program included fasting blood chemistries, 24-hour urinalysis, arm-crank ergometer stress testing, and midthigh girth measurement. Results indicate that this form of FES is safe, that quadriceps strength and endurance is increased, that endurance for ergometer pedaling is increased, and that there may be a training effect as more work is done at a similar heart rate and systolic blood pressure and as muscle bulk is increased. The FES effect on cardiovascular conditioning and general health requires further research to precisely determine its benefits.

Adult

Visually displayed EMG feedback: single case studies of hemiplegic upper extremity rehabilitation.

The efficacy of visually displayed EMG feedback in treating hemiplegic upper limb motor disorders was investigated in 5 patients (0.5-4 years poststroke). A single case experimental method "multiple-baseline across target behaviors" was used to compare performance during the feedback phase to that occurring in the monitored baseline phase. The nonfeedback baseline phase was followed by the staggered introduction of audiovisual feedback for each of the targeted pairs of muscles. EMG feedback obtained from muscle pairs (shoulder: anterior deltoid and upper trapezius; elbow: brachial triceps and biceps; digits: extensor digitorum communis and digit flexors) was displayed as two distinct waveforms on a videomonitor during therapy. Nonfeedback assessment of each of the three pairs was performed during each session. The effects of feedback were not uniformly distributed. Elbow control responded best, and statistical tests confirmed the effects of intervention observed clinically in all 5 patients. Clinical improvements in shoulder flexion were observed in 4 patients but could be statistically attributed to EMG gains in just 1. Improvement in finger extension observed clinically in 3 patients was statistically attributable to EMG gains in 2. All patients regained control of at least one target activity. EMG gains were accompanied by increases in active range of motion and by varying functional improvement. Marked functional gains in 3 patients were obtained with recovery of finger control.

Adult

Sudden quadriplegia after a minor trauma. The role of preexisting spinal stenosis.

Three patients are described who became quadriplegic after a minor trauma to the spine without suffering a spinal fracture dislocation. Radiologic investigation revealed marked stenosis of the spinal canal, due to developmental stenosis with superimposed degenerative changes in two patients, and calcification of posterior longitudinal ligament of the spine in one. Two patients recovered almost completely with conservative measures. The spinal cord may be able to tolerate slowly increasing mechanical pressure for many years and conform to the shape of the spinal canal without causing any neurological symptoms. However, when stenosis is severe, any additional pressure, for example, swelling and edema from trauma, may cause a neurologic catastrophe.

Aged

Deep venous thrombosis: diagnosis in spinal cord injured patients.

Because the acute spinal cord injured patient is at high risk for the development of deep venous thrombosis (DVT), accurate diagnosis is critical. Clinical evaluation is unreliable 50% of the time, however, and the two highly accurate diagnostic procedures--venography and 125I-labelled fibrinogen scanning--are invasive and present serious drawbacks. The literature concerning the effectiveness of the two most widely used noninvasive diagnostic alternatives (Doppler ultrasound and venous occlusion plethysmography [VOP]) is equivocal. In our systematic evaluation of a series of 21 patients, using clinical examination, Doppler ultrasound and VOP, all patients who developed DVT were identified by all three methods. Overall accuracy, sensitivity and specificity were 100%.

Adolescent

Serum albumin as a predictor of course and outcome on a rehabilitation service.

To determine the effect of nutritional status on the medical course and rehabilitation outcome of patients on an adult rehabilitation service, serum albumin (SA) and total lymphocyte count (TLC) were prospectively studied on 36 patients. Readings were taken on admission (T-1), at which time a Barthel Index Mobility Goal (BIMG) was assigned, and again 4 to 8 weeks after admission (T-2). A Barthel Index Mobility Score (BIMS) was assigned at discharge. Rehabilitation program restrictions due to medical complications correlated negatively with both the SA level at T1 (r = -.328, p less than 0.05) and at T2 (r = -.523, p less than 0.01). The SA level at T2 correlated positively with the BIMS:BIMG ratio (r = .416, p less than 0.05) at discharge, suggesting that SA levels may predict patient mobility outcome.

Adolescent

Pneumatic orthosis for paraplegic patients: functional evaluation and prescription considerations.

Fourteen paraplegic patients were studied during ambulation training, 11 with pneumatic orthoses and with conventional metal orthoses, and 3 with pneumatic orthoses only. The purposes of the study were to establish whether pneumatic orthoses could be used by paraplegic patients for effective ambulation, whether these devices presented any advantages or disadvantages over conventional orthoses and how their use would affect the expected level of rehabilitation and independence. As far as application, standing up, sitting down and ambulation within a rehabilitation center are concerned, similar skills and levels of independence were obtained with both types of orthoses. Reduced tendency for orthostatic hypotension, availability, light weight and better endurance make the pneumatic orthosis especially suitable for early ambulation training, but several mechanical problems, mainly its inflation with motorized and heavy compressor units, limit its usefulness for community ambulation.

Adolescent