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The Bone & Joint Journal
Vol. 95-B, Issue 8 | Pages 1027 - 1034
1 Aug 2013
Khan T Joseph B

Congenital pseudarthrosis of the tibia (CPT) is a rare but well recognised condition. Obtaining union of the pseudarthrosis in these children is often difficult and may require several surgical procedures. The treatment has changed significantly since the review by Hardinge in 1972, but controversies continue as to the best form of surgical treatment. This paper reviews these controversies.

Cite this article: Bone Joint J 2013;95-B:1027–34.


The Bone & Joint Journal
Vol. 106-B, Issue 5 | Pages 425 - 429
1 May 2024
Jeys LM Thorkildsen J Kurisunkal V Puri A Ruggieri P Houdek MT Boyle RA Ebeid W Botello E Morris GV Laitinen MK

Chondrosarcoma is the second most common surgically treated primary bone sarcoma. Despite a large number of scientific papers in the literature, there is still significant controversy about diagnostics, treatment of the primary tumour, subtypes, and complications. Therefore, consensus on its day-to-day treatment decisions is needed. In January 2024, the Birmingham Orthopaedic Oncology Meeting (BOOM) attempted to gain global consensus from 300 delegates from over 50 countries. The meeting focused on these critical areas and aimed to generate consensus statements based on evidence amalgamation and expert opinion from diverse geographical regions. In parallel, periprosthetic joint infection (PJI) in oncological reconstructions poses unique challenges due to factors such as adjuvant treatments, large exposures, and the complexity of surgery. The meeting debated two-stage revisions, antibiotic prophylaxis, managing acute PJI in patients undergoing chemotherapy, and defining the best strategies for wound management and allograft reconstruction. The objectives of the meeting extended beyond resolving immediate controversies. It sought to foster global collaboration among specialists attending the meeting, and to encourage future research projects to address unsolved dilemmas. By highlighting areas of disagreement and promoting collaborative research endeavours, this initiative aims to enhance treatment standards and potentially improve outcomes for patients globally. This paper sets out some of the controversies and questions that were debated in the meeting.

Cite this article: Bone Joint J 2024;106-B(5):425–429.


The Journal of Bone & Joint Surgery British Volume
Vol. 83-B, Issue 7 | Pages 1087 - 1088
1 Sep 2001
Earnshaw P


The Bone & Joint Journal
Vol. 95-B, Issue 12 | Pages 1595 - 1602
1 Dec 2013
Modi CS Beazley J Zywiel MG Lawrence TM Veillette CJH

The aim of this review is to address controversies in the management of dislocations of the acromioclavicular joint. Current evidence suggests that operative rather than non-operative treatment of Rockwood grade III dislocations results in better cosmetic and radiological results, similar functional outcomes and longer time off work. Early surgery results in better functional and radiological outcomes with a reduced risk of infection and loss of reduction compared with delayed surgery.

Surgical options include acromioclavicular fixation, coracoclavicular fixation and coracoclavicular ligament reconstruction. Although non-controlled studies report promising results for arthroscopic coracoclavicular fixation, there are no comparative studies with open techniques to draw conclusions about the best surgical approach. Non-rigid coracoclavicular fixation with tendon graft or synthetic materials, or rigid acromioclavicular fixation with a hook plate, is preferable to fixation with coracoclavicular screws owing to significant risks of loosening and breakage.

The evidence, although limited, also suggests that anatomical ligament reconstruction with autograft or certain synthetic grafts may have better outcomes than non-anatomical transfer of the coracoacromial ligament. It has been suggested that this is due to better restoration horizontal and vertical stability of the joint.

Despite the large number of recently published studies, there remains a lack of high-quality evidence, making it difficult to draw firm conclusions regarding these controversial issues.

Cite this article: Bone Joint J 2013;95-B:1595–1602.


The Journal of Bone & Joint Surgery British Volume
Vol. 87-B, Issue 5 | Pages 608 - 617
1 May 2005
Bauer HCF


Orthopaedic Proceedings
Vol. 94-B, Issue SUPP_XXII | Pages 8 - 8
1 May 2012
Haddad S
Full Access

Most of the controversy surrounding management of the adult acquired flatfoot deformity revolves around the correction of Stage 2 deformity. Stage 1 deformity, uncommonly corrected surgically, involves tenosynovitis with preservation of tendon length and absence of structural deformity. Attempts at tenosynovectomy in light of structural deformity leads to operative failure, found in 10% of Teasdall and Johnson's 1992 patient population. Thus, with tenosynovectomy rarely becoming an operative situation, Stage 2 deformity becomes the mainstay of operative treatment of the adult flatfoot. Stage 2 deformity patients present with swelling medially, the inability to do a single heel raise, with a passively correctable subtalar joint. The tendon is functionally torn. In recent years, authors have subdivided Stage 2 deformity even further into A and B subcategories, where A involves less than 50% uncovering of the talonavicular joint, and B patients more than 50%. Recently, Anderson has added a C subtype, which may be applied to either A and B patients, in patients who have forefoot varus. Thus, Stage 2 patients suffer from pain that begins medially and progresses to the subfibular region over time. Most important, recognition of the continued sub classification in Stage 2 disease echoes the fact that this disorder is on a continuum, challenging the surgeon to recognize subtleties that, if unrecognized, lead to a poor patient outcome. The mainstay of treatment in Stage 2 disease is the medial slide calcaneal osteotomy, which realigns the hindfoot axis reducing valgus, improves the medial arch, protects the FDL tendon transfer, and allows the Achilles tendon to become a strong inverter. Over shift of the calcaneus can compromise the outcome, as will a lack of recognition of the congenital subtleties such that a valgus hindfoot can have a varus orientation to the calcaneus, both leading to lateral overload. A pure medial slide of a calcaneus that has a varus orientation does not correct deformity, rather, it creates it. Thus, an axial calcaneal view must be studied carefully, for a varus orientation may be corrected via a closing wedge osteotomy commensurate with the medial shift of the tuberosity. As noted above, the flexor digitorum longus tendon transfer is the staple procedure to replace the damaged posterior tibial tendon. This transfer balances the eversion power of the peroneal tendons, works in phase with the former posterior tibial tendon in the stance phase of gait, and replaces a painful diseased posterior tibial tendon. However, over tensioning the transfer results in a tenodesis rather than a functional tendon transfer, the relative weakness of the FDL tendon (30% as strong as the PTT) creates difficulty with heel raise, and inappropriate transfer to distal tarsal bones may compromise the result by limiting torque from the transferred tendon. Preservation of the posterior tibial tendon in combination with the transferred FDL tendon remains a consideration without answer, though Rosenfeld (2005) suggests a substantial improvement in strength through PTT preservation. Failure of the above protocol for treating Stage 2 disease most often revolves around the insufficient corrective power of the tandem procedures in longstanding ruptures. According to Guyton (2001), only 50% of patients report a perception in deformity improvement following FDL/calcaneal osteotomy procedures, and only 4% report a significant improvement in pre-existing deformity. Sangeorzan (2001) found such patients could not achieve a painless plantigrade foot due to acquired ligament laxity (primarily the Spring Ligament). Sangeorzan applied Evans' pediatric procedure to adults without confirming the pathomechanics of correction. Some speculate the windlass effect on the plantar fascia creates correction (refuted by Horton, 1998, finding the plantar fascia is loosened by a lateral column lengthening), others believe tightening the peroneus longus through lateral column lengthening increases first ray plantarflexion, restoring the medial arch. Controversy also remains in answering Cooper's (1997) claim that lengthening through the calcaneus creates static increase in pressure about the calcaneocuboid joint (1.4mPa total) that may lead to an arthritic joint long term. Painful lateral overload following lateral column lengthening remains difficult problem to both prevent and correct. This last point leads to some focusing their efforts on restoration of the medial column. This group focuses on the “C” type deformity noted by Anderson, those with forefoot varus. It is known that the medial column is supported by the navicular, the cuneiforms, and the first, second, and third metatarsals. While a Cotton (opening wedge medial cuneiform) osteotomy, a first tarsometatarsal joint arthrodesis, or a metatarsal osteotomy has value, the surgeon must note that this only corrects the first ray. Complete correction of the medial column is best achieved through naviculocuneiform joint arthrodesis. Standing radiographs commonly reveal collapse at that level; however, surgeons are reticent to perform such fusions in light of the higher nonunion rate.


The Journal of Bone & Joint Surgery British Volume
Vol. 84-B, Issue 8 | Pages 1208 - 1209
1 Nov 2002
Marshall R


The Bone & Joint Journal
Vol. 104-B, Issue 5 | Pages 532 - 540
2 May 2022
Martin H Robinson PG Maempel JF Hamilton D Gaston P Safran MR Murray IR

There has been a marked increase in the number of hip arthroscopies performed over the past 16 years, primarily in the management of femoroacetabular impingement (FAI). Insights into the pathoanatomy of FAI, and high-level evidence supporting the clinical effectiveness of arthroscopy in the management of FAI, have fuelled this trend. Arthroscopic management of labral tears with repair may have superior results compared with debridement, and there is now emerging evidence to support reconstructive options where repair is not possible. In situations where an interportal capsulotomy is performed to facilitate access, data now support closure of the capsule in selective cases where there is an increased risk of postoperative instability. Preoperative planning is an integral component of bony corrective surgery in FAI, and this has evolved to include computer-planned resection. However, the benefit of this remains controversial. Hip instability is now widely accepted, and diagnostic criteria and treatment are becoming increasingly refined. Instability can also be present with FAI or develop as a result of FAI treatment. In this annotation, we outline major current controversies relating to decision-making in hip arthroscopy for FAI.

Cite this article: Bone Joint J 2022;104-B(5):532–540.


Orthopaedic Proceedings
Vol. 105-B, Issue SUPP_12 | Pages 51 - 51
23 Jun 2023
Adeyemo EA Riepen DW Collett GA Au BK Huo MH
Full Access

The current evidence favors replacement for the treatment of displaced femoral neck fractures in the older patients. Controversies remain whether total hip replacement (THR), or hemiarthroplasty (HA) would result in better outcomes. The purpose of this study is to compare the outcomes, and the complications in patients who underwent THR or HA for displaced femoral neck fractures. There were 345 consecutive patients who had undergone either a THR or HA at a single institution. THR was done in 137, and HA was done in 208 patients, respectively. Standard peri-operative data were collected. The mean values for the data in the THR group are: age 69 years, ASA 2.7, OR time was 99 minutes, estimated blood loss 354 ml, and the length of stay 8 days. The mean values for the data in the HA group are: age 75 years, ASA 3.0, OR time 88 minutes, estimated blood loss 200 ml, and the length of stay 10 days. The overall complications were 8.8% (THR), and 9.1% (HA), respectively. The mortality rates for the patients were: at the 1-year (9.5% THR vs 16.3% HA), at the 3-year (15.3% THR vs 24.0% HA), and at the 5-year (19.7% THR vs 26.9% HA), respectively. Our data demonstrated similar peri-operative data and short-term complications between the two groups. There was a difference in the mortality rates between the two groups at all 3-time intervals following the surgery. This could be a reflection of the patient selection bias for each of the operations


Orthopaedic Proceedings
Vol. 94-B, Issue SUPP_XXXVII | Pages 334 - 334
1 Sep 2012
Engesaeter L Dale H Hallan G Schrama J Lie S
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Introduction. Infection after total hip arthroplasty is a severe complication. Controversies still exist as to the use of cemented or uncemented implants in the revision of infected THAs. Based on the data in the Norwegian Arthroplasty Register (NAR) we have studied this topic. Material and Methods. During the period 2002–2008 45.724 primary THAs were reported to NAR. Out of these 459 were revised due to infection (1,0%). The survival of the revisions with uncemented prostheses were compared to revisions with cemented prostheses with antibiotic loaded cement and to cemented prostheses with plain cement. Only prostheses with the same fixation both in acetabulum and in femur were included in the study. Cox-estimated survival and relative revision risks were calculated with adjustments for differences among groups in gender, type of surgical procedure, type of prosthesis, and age at revision. Results. 92 (23%) of all the revisions were performed with uncemented prostheses, 286 (71%) with cemented prostheses with antibiotic loaded cement, and 25 (6%) with plain cement. Compared to uncemented prostheses and with all reasons for revision as endpoint in the Cox-analyses, prostheses fixed with antibiotic loaded cement had 3.0 (1.4–6.3) times increased risk for re-revision (p=0.004) and prostheses with plain cement 1.9 (0.4–9.3) times increased risk (p=0.44). With infection as endpoint, prostheses with antibiotic loaded cement had 2.8 (1.2–6.4) times increased risk for re-revision (p=0.02) and prostheses with plain cement 2.6 (0.5–13.7) times increased (p=0.26). 77% of the re-revisions (48 of 60) were performed due to infection. Conclusion. Data in the Norwegian Arthroplasty Registry indicate that uncemented prostheses should be used in the revision of infected total arthroplasties


Orthopaedic Proceedings
Vol. 94-B, Issue SUPP_XLIV | Pages 97 - 97
1 Oct 2012
Hammoud S Suero E Maak T Rozell J Inra M Jones K Cross M Pearle A
Full Access

Controversies about the management of injuries to the soft tissue structures of the posteromedial corner of the knee and the contribution of such peripheral structures on rotational stability of the knee are of increasing interest and currently remain inadequately characterised. The posterior oblique ligament (POL) is a fibrous extension off the distal aspect of the semimembranosus that blends with and reinforces the posteromedial aspect of the joint capsule. The POL is reported to be a primary restraint to internal rotation and a secondary restraint to valgus translation and external rotation. Although its role as a static stabiliser to the medial knee has been previously described, the effect of the posterior oblique ligament (POL) injuries on tibiofemoral stability during Lachman and pivot shift examination in the setting of ACL injury is unknown. The objective of this study was to quantify the magnitude of tibiofemoral translation during the Lachman and pivot shift tests after serial sectioning of the ACL and POL. Eight knees were used for this study. Ligamentous constraints were sequentially sectioned in the following order: ACL first, followed by the POL. Navigated mechanised pivot shift and Lachman examinations were performed before and after each structure was sectioned, and tibiofemoral translation was recorded. Lachman test: There was a mean 6.0 mm of lateral compartment translation in the intact knee (SD = 3.3 mm). After sectioning the ACL, translation increased to 13.8 mm (SD = 4.6; P<0.05). There was a nonsignificant 0.7 mm increase in translation after sectioning the POL (mean = 14.5 mm; SD = 3.9 P>0.05). Mechanised pivot shift: Mean lateral compartment translation in the intact knee was −1.2 mm (SD = 3.2 mm). Sectioning the ACL caused an increase in anterior tibial translation (mean = 6.7 mm; SD = 3.0 mm; P<0.05). No significant change in translation was seen after sectioning the POL (mean = 7.0 mm, SD = 4.0 mm; P>0.05). Sectioning the POL did not significantly alter tibiofemoral translation in the ACL deficient knee during the Lachman and pivot shift tests. This study brings into question whether injuries to the POL require reconstruction in conjunction with ACL reconstruction. More studies are needed to further characterise the role of the injured POL in knee stability and its clinical relevance in the ACL deficient and reconstructed knee


Orthopaedic Proceedings
Vol. 94-B, Issue SUPP_XLIV | Pages 101 - 101
1 Oct 2012
Hammoud S Suero E Maak T Rozell J Inra M Jones K Cross M Pearle A
Full Access

Controversies about the management of injuries to the soft tissue structures of the posteromedial corner of the knee and the contribution of such peripheral structures on rotational stability of the knee are of increasing interest and currently remain inadequately characterised. The posterior oblique ligament (POL) is a fibrous extension off the distal aspect of the semimembranosus that blends with and reinforces the posteromedial aspect of the joint capsule. The POL is reported to be a primary restraint to internal rotation and a secondary restraint to valgus translation and external rotation. Although its role as a static stabiliser to the medial knee has been previously described, the effect of the posterior oblique ligament (POL) injuries on tibiofemoral stability during Lachman and pivot shift examination in the setting of ACL injury is unknown. The objective of this study was to quantify the magnitude of tibiofemoral translation during the Lachman and pivot shift tests after serial sectioning of the ACL and POL. Eight knees were used for this study. Ligamentous constraints were sequentially sectioned in the following order: ACL first, followed by the POL. Navigated mechanised pivot shift and Lachman examinations were performed before and after each structure was sectioned, and tibiofemoral translation was recorded. Lachman test: There was a mean 6.0 mm of lateral compartment translation in the intact knee (SD = 3.3 mm). After sectioning the ACL, translation increased to 13.8 mm (SD = 4.6; P<0.05). There was a nonsignificant 0.7 mm increase in translation after sectioning the POL (mean = 14.5 mm; SD = 3.9 P>0.05). Mechanised pivot shift: Mean lateral compartment translation in the intact knee was −1.2 mm (SD = 3.2 mm). Sectioning the ACL caused an increase in anterior tibial translation (mean = 6.7 mm; SD = 3.0 mm; P<0.05). No significant change in translation was seen after sectioning the POL (mean = 7.0 mm, SD = 4.0 mm; P>0.05). Sectioning the POL did not significantly alter tibiofemoral translation in the ACL deficient knee during the Lachman and pivot shift tests. This study brings into question whether injuries to the POL require reconstruction in conjunction with ACL reconstruction. More studies are needed to further characterise the role of the injured POL in knee stability and its clinical relevance in the ACL deficient and reconstructed knee


Orthopaedic Proceedings
Vol. 94-B, Issue SUPP_XXII | Pages 21 - 21
1 May 2012
Saltzman C
Full Access

Ankle sprains in the athlete are one of the most common injuries, and syndesmosis type sprains seem to becoming diagnosed at an increasing rate. There still exists a paucity of information on optimal conservative and operative management. Treatment. Because of the spectrum of injury, there is a spectrum of treatment. if there is mortise widening, operative stabilization is required. if the mortise is normal, even with external rotation stress test positive, conservative treatment has been employed. staged conservative regimen directed at reducing pain and swelling acutely, at regaining range of motion and strength subacutely, and then progressed to functional training and finally return to sport. The timeframe for these was in the range of 2 to 6 weeks without very specific progression criteria. In the athlete, pain with rotational stress, greater severity of sprain, may treat operatively to stabilize the syndesmosis and aggressive rehab with earlier return to sport. Tightrope vs screw fixation vs both. Use of arthroscopy. Chronic sprains with recalcitrant pain and functional instability usually require operative treatment. very poor evidence exists as to the timing or type of procedure. Arthroscopy is required to confirm the diagnosis, treat intraarticular problems, and provide fixation of the distal tibiofibular syndesmosis. The postoperative regimen used is generally the same as the one used when treating an acute syndesmosis disruption. Tight rope vs Screw Fixation. clinical studies tightrope fixation has been acceptable and comparable to screw fixation. laboratory studies demonstrate comparable construct stability in the laboratory/cadaveric setting. indications for tightrope fixation are becoming more clear with more experience. my indications:. syndesmotic sprains with complete or incomplete disruption. fractures with syndesmotic disruption augment with screws, leave in place following screw removal. Summary and Controversies. Syndesmotic or high ankle sprains continue to be a common injury that result in significant time lost from sport. The conclusion that can be drawn from the current evidence is that the current diagnostic process probably fails to clearly assess the severity of the injury, which reduces the likelihood of accurately predicting the time lost from sport. Syndesmosis sprains can be a significant injuries that result in an inability to play sports for significant periods of time(up to 137 days). We need to be able to identify the more severe ones earlier in order to improve their treatment, perhaps lead to operative stabilization. Tightrope fixation avoids screw removal, minimally invasive, permanent stabilization


Bone & Joint Open
Vol. 4, Issue 11 | Pages 825 - 831
1 Nov 2023
Joseph PJS Khattak M Masudi ST Minta L Perry DC

Aims

Hip disease is common in children with cerebral palsy (CP) and can decrease quality of life and function. Surveillance programmes exist to improve outcomes by treating hip disease at an early stage using radiological surveillance. However, studies and surveillance programmes report different radiological outcomes, making it difficult to compare. We aimed to identify the most important radiological measurements and develop a core measurement set (CMS) for clinical practice, research, and surveillance programmes.

Methods

A systematic review identified a list of measurements previously used in studies reporting radiological hip outcomes in children with CP. These measurements informed a two-round Delphi study, conducted among orthopaedic surgeons and specialist physiotherapists. Participants rated each measurement on a nine-point Likert scale (‘not important’ to ‘critically important’). A consensus meeting was held to finalize the CMS.


Orthopaedic Proceedings
Vol. 88-B, Issue SUPP_I | Pages 5 - 5
1 Mar 2006
Lindahl J Hietaranta H
Full Access

Combined anterior cruciate ligament (ACL) and posterior cruciate ligament (PCL) disruptions are uncommon orthopaedic injuries. They are usually caused by high- or low-velocity knee dislocations. Because knee dislocations might spontaneously reduce before initial evaluation, the true incidence is unknown. Dislocation involves injury to multiple ligaments of the knee. Both of the cruciate ligaments are usually disrupted, and they are often combined with a third ligamentous disruption (medial collateral ligament or lateral collateral ligament and/or posterior lateral complex). Associated neurovascular, meniscal, and osteochondral injuries are often present and complicate treatment. Classification Knee dislocations are classified by relating the position of the displaced tibia on the femur; anterior, posterior, medial, lateral, or rotational. Both cruciate ligaments might be disrupted in all these injuries. A rotatory knee dislocation occurs around one of the collateral ligaments (LCL) leading to a combined ACL and PCL injury and a tear of the remaining collateral ligament. Knee dislocations that spontaneously reduce are classified according to the direction of instability. Knee dislocations are classified as acute (< 3 weeks) or chronic (> 3 weeks). Initial management The vascular status of the limb must be determined quickly. The knee should be reduced immediately through gentle traction-countertraction with the patient under anesthesia. After reduction, repeat vascular examination. If the limb remains ischemic, emergent surgical exploration and revascularisation is required. If the initial vascular examination is normal, postreduction a formal angiogram should be done especially if the patient has a high velocity injury, is polytraumatized or have altered mental status. Compartment syndrome, open injury, and irreducible dislocation are other indications for emergent surgery. Definitive management Many authors have noted superior results of surgical treatment of bicruciate injuries when compared to nonsurgical treatment. In most cases early ligament surgery (at the second or third week) seems to produce better results compared to late reconstructions. Still the management of knee dislocations remains controversial. Controversies persist regarding surgical timing, technique, graft selection, and rehabilitation. The goal of operative treatment is to retain knee stability, motion, and function. The most common injury patterns include both cruciate ligaments and either medial collateral ligament (MCL) or lateral collateral ligament (LCL) and/or posterolateral structures. Less commonly both collateral ligaments are disrupted. Our policy has been early (from 7 to 21 days) simultaneous reconstruction of both cruciate ligaments and repairing of grade III LCL and posterolateral structures. Most acute grade III MCL tears are successfully treated with brace treatment when ACL and PCL are reconstructed early. Most cruciate ligament injuries are midsubstance tears that need to be reconstructed with autografts or allografts. Repairs can be done in cases of bony avulsion of cruciate ligaments or grade III collateral ligament or capsular injuries. Bone-patellar tendon-bone (BPTB) autograft has mainly used in our clinics to reconstruct the ACL. In some cases BTPB allograft or hamstring tendon autografts has been used. For PCL reconstruction, BPTB allograft (11 mm in diameter) or Achilles tendon allograft has been used. Intrasubstance grade III tears of the LCL can be repaired (in early state) but may need to be augmented with tendon allograft. The LCL and/or the popliteofibular ligament are reconstructed either with an Achilles tendon allograft, hamstring tendon autograft/allograft, tibialis anterior tendon allograft, or the BPTB allograft. Both cruciate ligaments are reconstructed arthroscopically. The ACL tunnels are placed in the center of its anatomic insertion in tibia and in its isometric or anatomic insertion in femur. A transtibial tunnel technique for PCL reconstruction is used. The PCL tibial tunnel is drilled first under arthroscopic guidance using the PCL guide. The ACL tibial guide is drilled at least 2 cm proximal to the PCL tunnel to ensure that wide enough bone bridge remains between these tunnels. Fluoroscopy is used to ensure the right guidewire placement. Sequence of bicruciate ligament reconstruction with BPTB grafts. Drill PCL tibial tunnel first, then ACL tibial tunnel. Drill ACL femoral tunnel, then PCL femoral tunnel. Pass PCL graft through tibial tunnel and fix in femoral tunnel. Pass ACL graft through tibial tunnel and fix in femoral tunnel. Fix PCL graft on tibia at 90° of flexion with anteromedial step off. Fix ACL graft on tibia at extension. Rehabilitation Our protocol after bicruciate ligament reconstruction with MPTB grafts has been very active. Progressive range of motion is started early after the operation with an unlocked functional brace. If simultaneous suturation of a meniscus tear has been performed, motion is limited to 60° of flexion during the first 4 weeks. Progression from partial to full weight bearing is done over the first 6 weeks. Quadriceps exercises are progressed to open-chain knee extension exercises early as well as closed-chain hamstring exercises. Brace is discontinued after 12 weeks


Bone & Joint 360
Vol. 7, Issue 5 | Pages 45 - 45
1 Oct 2018


Bone & Joint 360
Vol. 7, Issue 4 | Pages 45 - 45
1 Aug 2018


Bone & Joint 360
Vol. 5, Issue 5 | Pages 44 - 44
1 Oct 2016


The Bone & Joint Journal
Vol. 97-B, Issue 5 | Pages 590 - 594
1 May 2015
Smith NA Costa ML Spalding T

The anatomy and microstructure of the menisci allow the effective distribution of load across the knee. Meniscectomy alters the biomechanical environment and is a potent risk factor for osteoarthritis. Despite a trend towards meniscus-preserving surgery, many tears are irreparable, and many repairs fail.

Meniscal allograft transplantation has principally been carried out for pain in patients who have had a meniscectomy. Numerous case series have reported a significant improvement in patient-reported outcomes after surgery, but randomised controlled trials have not been undertaken.

It is scientifically plausible that meniscal allograft transplantation is protective of cartilage, but this has not been established clinically to date.

Cite this article: Bone Joint J 2015; 97-B:590–4.


Bone & Joint 360
Vol. 4, Issue 1 | Pages 6 - 11
1 Feb 2015
Manktelow A Bloch B

This review examines the future of total hip arthroplasty, aiming to avoid past mistakes