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An online tutorial explaining a treadmill stress test brought to you by University of Iowa Children's Hospital.
Stressing the heart might not sound like a safe thing for someone with a cardiovascular condition, but a cardiac stress test is an important tool for doctors.
UnityPoint Health - Cedar Rapids Cardiology Clinic Cardiologist Dr. Subhi Halawa talks about treadmill tests and why they are needed in the diagnosis of ...
Stress can take a toll on our bodies. In fact, many health reports encourage us to take time to relax to lower stress. But health experts say during a stress test they ...
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Pediatric patients with cardiac devices report fear and anxiety associated with exertion and activity resulting in high avoidance of activities, things, or places post-device implant. Extant pediatric cardiac literature is minimal, establishing the need for improved description of the sample. The field is in need of a better understanding of the role of anxiety in physical activity and self-limiting behaviors of the pediatric arrhythmia population. Examining the strength of relationship between patient estimations for duration of exercise capacity and general anxiety, as well as cardiac specific anxiety, may provide clinicians with information to guide intervention for re-engaging this population in exertive behavior. The primary aims of the current project were: 1) to examine feasibility of using treadmill stress tests as a clinical intervention, 2) determine the effects of a treadmill test on anxiety, and 3) examine the strength of relationship between patient-predicted treadmill stress test duration and activity, psychosocial distress, and cardiac specific distress. Participants were recruited from an outpatient electrophysiology (EP) clinic at Texas Children's Hospital in Houston, Texas, presenting for a standard of care (SOC) exercise treadmill test (ETT). Child report of general anxiety and device specific anxiety was collected, as well as predicted and total ETT time for six cardiac device patients aged 12-17. Analyses included descriptives, paired t-tests, and correlations. Results indicated moderate feasibility for the current study design, after multiple logistical adjustments to the recruiting process, the protocol, and the personnel necessary to complete the procedures. The use of ETT as an anxiety intervention was not statistically efficacious in this sample. Statistical results indicated strong relationships between predicted ETT duration and general anxiety (r = 0.85, p = 0.033), post-ETT state anxiety and device acceptance (r = -0.82, p = 0.048), general anxiety and report of normal daily functioning (r = -0.84, p = 0.036), body image and Total ETT duration (r = 0.85, n = 6, p = 0.032), and post-ETT state anxiety and report of device distress (r = -0.84, p = 0.036). In conclusion, future projects could be feasible with increased research personnel, increased engagement of clinic EPs, expanded eligibility criteria, and funding to compensate families for parking or traveling expenses. Participants and families saw inherent value in researchers' improved understanding of fears of exertion via ETT. Future research should determine the impact of number of exposure sessions necessary to impact anxiety in patients who report marked anxiety or activity avoidance.
This text summarises current scientific methods for the assessment of human physiological fitness. The authors provide a rationale for methods of assessment, examine the limitations of some methods and provide details of alternative techniques.
Equine Exercise Physiology provides the most up-to-date, in-depth coverage of the basic sciences required for an understanding of the physiology of the equine athlete. This book provides a thorough grounding in the basic physiology of each body system and in particular the responses of each body system to exercise and training. It is the ideal resource for those interested in equine exercise physiology: undergraduate and post-graduate students in exercise science, comparative physiology, biology and veterinary science; veterinary students; horse trainers and owners of sport horses; journalists writing in equine specialty magazines; and interested lay persons. Topics include: the musculoskeletal system and physiology; tendon, ligament and joint physiology; the biomechanics of locomotion; respiratory, cardiovascular and gastrointestinal systems; metabolism and nutritional management; thermoregulation; hematology and immunology Written by the top experts currently working in the area of equine exercise physiology Designed for those seeking comprehensive information in a digestible format about the basic science of equine exercise physiology, rather than the clinical aspects Over 250 high quality illustrations that amplify and illustrate important points Information available in a readily accessible format.
The patient walks on a treadmill while the blood pressure and EKG are monitored. The treadmill test evaluates the heart's response to exercise and helps uncover ...
Learn more from WebMD about stress tests and how they're used to diagnose heart disease.
The submaximal treadmill test is used to examine the cardiovascular health of athletes and those who may have heart disease. Also referred to as stress ...
The Bruce treadmill test is a maximal running test performed on a treadmill. It is one of the most commonly used tests in USA. Instructions: 1.
Procedure and description of the Bruce Treadmill Test for evaluation of cardiac function