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1.
Photobiomodul Photomed Laser Surg ; 38(4): 206-214, 2020 Apr.
Article in English | MEDLINE | ID: mdl-32186975

ABSTRACT

Objective: To determine the potential efficacy and feasibility of photobiomodulation therapy (PBMT) before and after knee arthroplasty (KA) surgery. Background: Total knee replacements (total knee arthroplasty, TKA) are one of the most common and successful surgical interventions for osteoarthritis. Up to 20,000 knee replacement arthroplasties are performed in Australia annually. Although TKA aims to restore knee alignment and relieve pain in the long term, the initial post-operative period is difficult and rehabilitation is often hindered by persistent pain and swelling. A promising therapeutic approach, PBMT using a novel self-adhesive light patch system, may be feasible for reducing post-operative pain and swelling and aiding recovery. Materials and methods: This is an interventional clinical feasibility study protocol. Patients from a surgical waitlist will be invited to take part. PBMT will be applied for 30 min daily for 7 days pre-operatively using a novel light patch system (CareWear®) with both 450 nm (6.75 mW/cm2) and 640 nm (2.25 mW/cm2) microdiodes. Post-operative treatment will utilize the same device second daily for 1 week after removal of compression bandages. Results: Outcomes will be evaluated at seven time points: baseline at week 1 pre-operatively, 1 day before surgery, day 4 after surgery, weekly for a further 2 weeks, and fortnightly until 6 weeks post-hospital discharge. Outcome measures include the following: Numeric Pain Rating Scale, stair climb test, 30-sec chair stand test, timed up and go test, 40-m fast-paced walk test, modified Iowa Level of Assistance Scale, muscle strength, knee range of motion, Knee Injury and Osteoarthritis Outcome Score, and Lower Limb Functional Index. Conclusions: This study will provide an assessment of feasibility of using PBMT applied using a novel light patch system for management of pain symptoms and swelling, and aiding recovery of patients undergoing TKA. The results of this feasibility study will contribute to planning of the design and methods of a large clinical trial.


Subject(s)
Arthroplasty, Replacement, Knee/methods , Low-Level Light Therapy/instrumentation , Osteoarthritis, Knee/therapy , Postoperative Complications/prevention & control , Arthroplasty, Replacement, Knee/adverse effects , Feasibility Studies , Humans , Low-Level Light Therapy/methods , Postoperative Care , Postoperative Complications/etiology , Preoperative Care
2.
Orthop J Sports Med ; 5(4): 2325967117701882, 2017 Apr.
Article in English | MEDLINE | ID: mdl-28451620

ABSTRACT

BACKGROUND: The pathomechanics of hip microinstability are not clearly defined but are thought to involve anatomical abnormalities, repetitive forces across the hip, and ligamentous laxity. PURPOSE/HYPOTHESIS: The purpose of this study was to explore the relationship between generalized joint hypermobility (GJH) and hip capsular thickness. The hypothesis was that GJH would be predictive of a thin hip capsule. STUDY DESIGN: Cross-sectional study; Level of evidence, 3. METHODS: A prospective study was performed on 100 consecutive patients undergoing primary hip arthroscopy for the treatment of hip pain. A Beighton test score (BTS) was obtained prior to each procedure. The maximum score was 9, and a score of ≥4 was defined as hypermobile. Capsular thickness at the level of the anterior portal, corresponding to the location of the iliofemoral ligament, was measured arthroscopically using a calibrated probe. The presence of ligamentum teres (LT) pathology was also recorded. RESULTS: Fifty-five women and 45 men were included in the study. The mean age was 32 years (range, 18-45 years). The median hip capsule thickness was statistically greater in men than women (12.5 and 7.5 mm, respectively). The median BTS for men was 1 compared with 4 for women (P < .001). A statistically significant association was found between BTS and capsular thickness; a BTS of <4 is strongly predictive of having a capsular thickness of ≥10 mm, while a BTS ≥4 correlates with a capsular thickness of <10 mm. There was a statistically greater incidence of LT tears in patients with a capsular thickness of ≤7.5 mm and a BTS of ≥4 (P < .001). CONCLUSION: Measurement of the GJH is highly predictive of hip capsular thickness. A BTS of <4 correlates significantly with a capsular thickness of ≥10 mm, while a BTS ≥4 correlates significantly with a thickness of <10 mm.

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