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Biomedical subjects

Stuart J Warden

Publications and source records attributed to Stuart J Warden.

23 records · Page 2Linked to original sources

Delayed- and non-union following opening wedge high tibial osteotomy: surgeons' results from 182 completed cases.

Opening wedge high tibial osteotomy (OWHTO) is a recently described procedure for medial compartment arthritis of the knee in the active, younger population. Despite having a number of advantages over the traditional closing wedge high tibial osteotomy (CWHTO) a potential complication of OWHTO is a high rate of delayed- and non-union. This study reports the occurrence of delayed- and non-union following OWHTO for medial compartment arthritis of the knee. Questionnaires were sent to all current members of the Australian Knee Society (n=45), a special interest group of the Australian Orthopaedic Group. Surgeons were asked primarily to indicate how many OWHTOs they had performed, and how many of these had progressed to union, delayed-union and non-union. All 45 questionnaires were returned, with 21 surgeons (47%) performing OWHTOs. A total of 188 OWHTO cases were reported, of which 182 were complete. Of these complete cases 167 (91.8%) were classed as united, 12 (6.6%) delay-united and 3 (1.6%) non-united. The results of this study demonstrate that the rate of delayed- and non-union following OWHTO for medial compartment arthritis of the knee is relatively low and comparable to that reported for traditional CWHTO.

Australia↗

Patellar tendinopathy.

Patellar tendinopathy is a common and serious condition in athletes. Although there have been many advances in the understanding of the histopathology, imaging, and surgical outcomes in this condition in the past decade, successful management of athletes with patellar tendinopathy remains a major challenge for both the practitioner and patient. There is a definite need for further prospective studies into etiological factors and randomized controlled trials into treatment choices.

Anti-Inflammatory Agents, Non-Steroidal↗

A new direction for ultrasound therapy in sports medicine.

Ultrasound therapy is a widely available and frequently used electrophysical agent in sports medicine. However, systematic reviews and meta-analyses have repeatedly concluded that there is insufficient evidence to support a beneficial effect of ultrasound at dosages currently being introduced clinically. Consequently, the role of ultrasound in sports medicine is in question. This does not mean that ultrasound should be discarded as a therapeutic modality. However, it does mean that we may need to look in a new direction to explore potential benefits. A new direction for ultrasound therapy has been revealed by recent research demonstrating a beneficial effect of ultrasound on injured bone. During fresh fracture repair, ultrasound reduced healing times by between 30 and 38%. When applied to non-united fractures, it stimulated union in 86% of cases. These benefits were generated using low-intensity (<0.1 W/cm(2)) pulsed ultrasound (LIPUS), a dose alternative to that traditionally used in sports medicine. Although currently developed for the intervention of bone injuries, LIPUS has the potential to be used on tissues and conditions more commonly encountered in sports medicine. These include injuries to ligament, tendon, muscle and cartilage. This review discusses the effect of LIPUS on bone fractures, the dosages introduced and the postulated mechanisms of action. It concludes by discussing the relevance of these latest findings to sports medicine and how this evidence of a beneficial clinical effect may be implemented to intervene in sporting injuries to bone and other tissues. The aim of the paper is to highlight this latest direction in ultrasound therapy and stimulate new lines of research into the efficacy of ultrasound in sports medicine. In time this may lead to accelerated recovery from injury and subsequent earlier return to activity.

Evidence-Based Medicine↗

Ultrasound usage and dosage in sports physiotherapy.

Ultrasound (US) therapy is the most widely available and frequently used electrophysical agent in physiotherapy. Despite this, there is minimal scientific evidence supporting its use. This raises the question of how is US being used in clinical practice? With a questionnaire, this study investigated US usage and dosage in sports physiotherapy. The results confirm the wide availability and frequent use of US. Applications were found to cover a wide range of clinical scenarios, during which therapists use a range of dosages. Two trends in dosage were evident and relate to the treatment of either acute or chronic conditions. Although rationale exists for these dosages, clinical evidence is currently lacking. Reasons for this lack of evidence are discussed. The results of this study provide a profile of US usage and dosage in sports physiotherapy and highlight the need for further research into its effects.

Adult↗

Aetiology of rib stress fractures in rowers.

Rib stress fractures are a common and significant problem in the rowing population. They occur in approximately 6.1 to 12% of rowers and account for the most time lost from on-water training and competition. This review discusses possible causative factors for rib stress fractures in rowers. Central to the establishment of causative factors is the identification that each rib forms part of a closed ring of bone that is completed anteriorly by the sternum and posteriorly by the thoracic vertebrae. Because of the shared sternum anteriorly each ring of bone is mechanically connected. Subsequently, during rowing individual ribs are not loaded in isolation, rather the rib cage is loaded as a complete unit. Incorporating this functioning as a complete unit a possible mechanism by which different factors contribute to rib stress fracture can be developed. In rowing, muscle factors generate loading of the rib cage. The characteristics of this loading stimulus are influenced by equipment, technique and joint factors. Rib-cage loading generates bone strain in individual ribs with the response of each rib depending upon site-specific skeletal factors. Depending on the characteristics of the bone strain in terms of the magnitude and rate of strain, microdamage may develop. The bone response to this microdamage is reparative remodelling. Whether this response is capable of repairing the damage to prevent progression to a stress fracture is dependent upon training and gender factors. Identification of these factors will generate a better understanding of the aetiology of this injury, which is required for improved prevention and treatment strategies.

Athletic Injuries↗