The physiological and psychological changes after anterior cruciate ligament reconstruction (ACLR) do not always allow a return to sport in the best condition and at the same level as before. Moreover, the number of significant re-injuries, especially in young athletes should be considered and physical therapists must develop rehabilitation strategies and increasingly specific and ecological test batteries to optimize safe return to play. The return to sport and return to play of athletes after ACLR must progress through the recovery of strength, neuromotor control, and include cardiovascular training while considering different psychological aspects. Because motor control seems to be the key to a safe return to sport, it should be associated with the progressive development of strength, and cognitive abilities should also be considered throughout rehabilitation. Periodization, the planned manipulation of training variables (load, sets, and repetitions) to maximize training adaptations while minimizing fatigue and injury, is relevant to the optimization of muscle strengthening, athletic qualities, and neurocognitive qualities of athletes during rehabilitation after ACLR. Periodized programming utilizes the principle of overload, whereby the neuromuscular system is required to adapt to unaccustomed loads. While progressive loading is a well-established and widely used concept for strengthening, the variance of volume and intensity makes periodization effective for improving athletic skills and attributes, such as muscular strength, endurance, and power, when compared with non-periodized training. The purpose of this clinical commentary is to broadly apply concepts of periodization to rehabilitation after ACLR.
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http://dx.doi.org/10.26603/001c.73035 | DOI Listing |
J Biomech Eng
January 2025
Department of Mechanical Engineering, Vanderbilt University, 2201 West End Avenue, Nashville, TN, 37235.
Achilles tendon overuse injuries are common for long-distance runners. Ankle exos (exoskeletons and exosuits) are wearable devices that can reduce Achilles tendon loading and could potentially aid in the rehabilitation or prevention of these injuries by helping to mitigate and control tissue loading. However, most ankle exos are confined to controlled lab testing and are not practical to use in real-world running.
View Article and Find Full Text PDFAm J Sports Med
January 2025
Rothman Orthopaedic Institute, Thomas Jefferson University Hospital, Philadelphia, Pennsylvania, USA.
Background: Distal triceps tendon injuries are relatively rare injuries, often occurring in highly active patients with physically demanding jobs or lifestyles. Information on return to work, sport, and activity is essential for patient education and counseling after a distal triceps tendon rupture.
Purpose: To determine the rates of return to work, sport, and sport-related activity after distal triceps tendon repair.
Am J Sports Med
January 2025
Department of Orthopaedic Surgery, Hospital for Special Surgery, New York, New York, USA.
Background: Continued advancements in cartilage surgery and an accumulating body of evidence warrants a contemporary synthesis of return to sport (RTS) outcomes to provide updated prognostic data and to better understand treatment response.
Purpose: To perform an updated systematic review of RTS in athletes after knee cartilage restoration surgery.
Study Design: Systematic review; Level of evidence, 4.
Vet Clin North Am Equine Pract
January 2025
Department of Clinical Sciences, College of Veterinary Medicine and Biomedical Sciences, Colorado State University, Colorado State University Veterinary Teaching Hospital, Equine Orthopaedic Research Center, 2250 Gillette Drive, Fort Collins, CO 80523, USA.
Rehabilitation following muscle injury is critical in restoring the equine athlete to full function. Rehabilitation protocols should be tailored to each patient's global functional assessment, taking into account sports-specific demands, goals for return-to-performance, and overall prognosis. Rehabilitation protocols are often designed to modulate pain, enhance repair, improve proprioception, increase flexibility, restore muscle strength, joint range-of-motion, and neuromotor control.
View Article and Find Full Text PDFInt J Sports Med
January 2025
School of Exercise and Nutrition Sciences, Queensland University of Technology (QUT), Brisbane, Australia.
Mental fatigue is referred to as a psychophysiological or neurobiological state caused by prolonged periods of demanding cognitive activity. Sports and exercise science research have investigated the effects of experimentally induced mental fatigue on cognitive performance, with mixed results. It has been suggested that negative effects of mental fatigue on cognition performance in laboratory studies could translate to impaired sport performance.
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