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Bone & Joint 360
Vol. 7, Issue 2 | Pages 18 - 20
1 Apr 2018


Bone & Joint 360
Vol. 5, Issue 2 | Pages 16 - 18
1 Apr 2016


The Bone & Joint Journal
Vol. 99-B, Issue 1 | Pages 5 - 11
1 Jan 2017
Vulcano E Myerson MS

The last decade has seen a considerable increase in the use of in total ankle arthroplasty (TAA) to treat patients with end-stage arthritis of the ankle. However, the longevity of the implants is still far from that of total knee and hip arthroplasties.

The aim of this review is to outline a diagnostic and treatment algorithm for the painful TAA to be used when considering revision surgery.

Cite this article: Bone Joint J 2017;99-B:5–11.


The Bone & Joint Journal
Vol. 98-B, Issue 5 | Pages 634 - 640
1 May 2016
Pedowitz DI Kane JM Smith GM Saffel HL Comer C Raikin SM

Aims

Few reports compare the contribution of the talonavicular articulation to overall range of movement in the sagittal plane after total ankle arthroplasty (TAA) and tibiotalar arthrodesis. The purpose of this study was to assess changes in ROM and functional outcomes following tibiotalar arthrodesis and TAA.

Patients and Methods

Patients who underwent isolated tibiotalar arthrodesis or TAA with greater than two-year follow-up were enrolled in the study. Overall arc of movement and talonavicular movement in the sagittal plane were assessed with weight-bearing lateral maximum dorsiflexion and plantarflexion radiographs. All patients completed Short Form-12 version 2.0 questionnaires, visual analogue scale for pain (VAS) scores, and the Foot and Ankle Ability Measure (FAAM).


Aims

The purpose of this study was to compare the clinical and radiographic outcomes of total ankle arthroplasty (TAA) in patients with pre-operatively moderate and severe arthritic varus ankles to those achieved for patients with neutral ankles.

Patients and Methods

A total of 105 patients (105 ankles), matched for age, gender, body mass index, and follow-up duration, were divided into three groups by pre-operative coronal plane tibiotalar angle; neutral (< 5°), moderate (5° to 15°) and severe (> 15°) varus deformity. American Orthopaedic Foot and Ankle Society (AOFAS) ankle-hindfoot score, a visual analogue scale (VAS), and Short Form (SF)-36 score were used to compare the clinical outcomes after a mean follow-up period of 51 months (24 to 147).


Bone & Joint 360
Vol. 6, Issue 1 | Pages 16 - 19
1 Feb 2017


Bone & Joint 360
Vol. 5, Issue 5 | Pages 17 - 19
1 Oct 2016


Bone & Joint 360
Vol. 2, Issue 5 | Pages 22 - 24
1 Oct 2013

The October 2013 Foot & Ankle Roundup360 looks at: Operative treatment of calcaneal fractures advantageous in the long term?; Varus ankles and arthroplasty; Reducing autograft complications in foot and ankle surgery; The biomechanics of ECP in plantar fasciitis; Minimally invasive first ray surgery; Alcohol: better drunk than injected?; Is it different in the foot?; It’s all about the temperature


The Journal of Bone & Joint Surgery British Volume
Vol. 91-B, Issue 4 | Pages 481 - 486
1 Apr 2009
Hobson SA Karantana A Dhar S

We carried out 123 consecutive total ankle replacements in 111 patients with a mean follow-up of four years (2 to 8). Patients with a hindfoot deformity of up to 10° (group A, 91 ankles) were compared with those with a deformity of 11° to 30° (group B, 32 ankles). There were 18 failures (14.6%), with no significant difference in survival between groups A and B. The clinical outcome as measured by the post-operative American Orthopaedic Foot and Ankle Surgeons score was significantly better in group B (p = 0.036). There was no difference between the groups regarding the post-operative range of movement and complications. Correction of the hindfoot deformity was achieved to within 5° of neutral in 27 ankles (84%) of group B patients. However, gross instability was the most common mode of failure in group B. This was not adequately corrected by reconstruction of the lateral ligament.

Total ankle replacement can safely be performed in patients with a hindfoot deformity of up to 30°. The importance of adequate correction of alignment and instability is highlighted.


Bone & Joint 360
Vol. 5, Issue 3 | Pages 17 - 19
1 Jun 2016


The Journal of Bone & Joint Surgery British Volume
Vol. 90-B, Issue 7 | Pages 885 - 888
1 Jul 2008
Thomason K Eyres KS

Salvage of a failed total ankle replacement is technically challenging and although a revision procedure may be desirable, a large amount of bone loss or infection may preclude this. Arthrodesis can be difficult to achieve and is usually associated with considerable shortening of the limb.

We describe a technique for restoring talar height using an allograft from the femoral head compressed by an intramedullary nail. Three patients with aseptic loosening were treated successfully by this method with excellent symptomatic relief at a mean follow-up of 32 months (13 to 50).


Bone & Joint 360
Vol. 1, Issue 2 | Pages 18 - 19
1 Apr 2012

The April 2012 Foot & Ankle Roundup360 looks at injecting the tendon sheath, total ankle replacement, heterotopic ossification, replacement or arthrodesis, achilles tendinopathy, healing of the torn Achilles, grafting of the calcaneal bone cyst, avulsion fractures in athletes, percutaneous distal osteotomy for bunionette formation, and repairing the torn tibiofibular syndesmosis


Bone & Joint 360
Vol. 1, Issue 1 | Pages 13 - 14
1 Feb 2012


Bone & Joint 360
Vol. 3, Issue 1 | Pages 20 - 23
1 Feb 2014

The February 2014 Foot & Ankle Roundup360 looks at: optimal medial malleolar fixation; resurfacing in the talus; predicting outcome in mobility ankles; whether mal-aligned ankles can be successfully replaced; cartilage colonisation in bipolar ankle grafts; CTs and proof of fusion; recalcitrant Achilles tendinopathy; and recurrent fifth metatarsal stress fractures.


The Journal of Bone & Joint Surgery British Volume
Vol. 94-B, Issue 6 | Pages 793 - 798
1 Jun 2012
Bianchi A Martinelli N Sartorelli E Malerba F

The Bologna–Oxford (BOX) total ankle replacement (TAR) was developed with the aim of achieving satisfactory pain-free movement of the ankle. To date, only one single multicentre study has reported its clinical results. The aim of this study was to conduct an independent review of its mid-term results.

We retrospectively reviewed a total of 60 prospectively followed patients in whom 62 BOX TARs had been implanted between 2004 and 2008. We used the American Orthopedic Foot and Ankle Society (AOFAS) score to assess the clinical results. Standardised radiographs taken at the time of final follow-up were analysed by two observers. The overall survival was 91.9% at a mean follow-up of 42.5 months (24 to 71). The mean AOFAS score had improved from 35.1 points (sd 16.6; 4 to 73) pre-operatively to 78.0 (sd 10.7; 57 to 100) at final follow-up (p < 0.01). Tibial radiolucencies < 2 mm in width were seen around 16 TARs. Talar radiolucencies < 2 mm were seen around four TARs. A total of 47 patients (78.3%) were very satisfied or satisfied with the outcome. Five patients required revision for functional limitation or continuing pain.


Bone & Joint 360
Vol. 4, Issue 6 | Pages 2 - 5
1 Dec 2015
Dodd L Sharpe I Mandalia VI Toms AD Phillips JRA

The global economy has been facing a financial crisis. Healthcare costs are spiraling, and there is a projected £30 billion health funding gap by 2020 in the UK.1 This has prompted a drive for efficiency in healthcare provision in the UK, and in 2012, the Health and Social Care Act was introduced, heralding a fundamental change to the structure of the National Health Service, especially in the way that healthcare is funded in England.2

What is happening in the UK is a reflection of a global problem. Rationing of healthcare is a topic of much discussion; as unless spending is capped, providing healthcare will become unsustainable. Who decides how money is spent, and which services should be rationed?

In this article we aim to discuss the impact that rationing may have on orthopaedic surgery, and we will discuss our own experiences of attempts to ration local services.3 We also seek to inform and educate the general orthopaedic community on this topic.


Bone & Joint 360
Vol. 4, Issue 2 | Pages 1 - 1
1 Apr 2015
Ollivere B


Bone & Joint 360
Vol. 1, Issue 4 | Pages 15 - 17
1 Aug 2012

The August 2012 Foot & Ankle Roundup360 looks at: calcaneocuboid distraction arthrodesis with allograft for acquired flatfoot; direct repair of the plantar plate; thromboembolism after fixation of the fractured ankle; weight loss after ankle surgery; Haglund’s syndrome and three-portal endoscopic surgery; Keller’s procedure; arthroscopy of the first MTPJ; and Doppler spectra in Charcot arthropathy.


Bone & Joint 360
Vol. 4, Issue 2 | Pages 20 - 23
1 Apr 2015

The April 2015 Shoulder & Elbow Roundup360 looks at: Distal clavicular resection not indicated in cuff repair?; Platelet-rich plasma in rotator cuff repair; Radial head geometry: time to change?; Heterotopic ossification in elbow trauma; Another look at heterotopic ossification in the humerus; Triceps on for total elbow arthroplasty?; Predicting outcomes in rotator cuff repair; Deltoid fatty infiltration and reverse shoulder arthroplasty


The Bone & Joint Journal
Vol. 97-B, Issue 5 | Pages 662 - 667
1 May 2015
Mani SB Do H Vulcano E Hogan MV Lyman S Deland JT Ellis SJ

The foot and ankle outcome score (FAOS) has been evaluated for many conditions of the foot and ankle. We evaluated its construct validity in 136 patients with osteoarthritis of the ankle, its content validity in 37 patients and its responsiveness in 39. Data were collected prospectively from the registry of patients at our institution.

All FAOS subscales were rated relevant by patients. The Pain, Activities of Daily Living, and Quality of Life subscales showed good correlation with the Physical Component score of the Short-Form-12v2. All subscales except Symptoms were responsive to change after surgery.

We concluded that the FAOS is a weak instrument for evaluating osteoarthritis of the ankle. However, some of the FAOS subscales have relative strengths that allow for its limited use while we continue to seek other satisfactory outcome instruments.

Cite this article: Bone Joint J 2015; 97-B:662–7.