BACKGROUND:Following ulnar shortening osteotomies, plates are often removed due to discomfort or irritation. The screw holes left after plate removal act as stress risers and predispose the bone to fracture. To our knowledge, calcium phosphate cement (CPC) is yet to be investigated for its use in reinforcing screw holes. The aim of this study was to determine if filling screw holes with CPC in a synthetic anatomical ulna model will improve its immediate mechanical strength compared to leaving screw holes unfilled. METHODS:Eighteen synthetic anatomical ulna models were randomly divided into three equal groups. The control group was left unaltered, the drilled group received six 3.5 mm screw holes, and the CPC group had the six 3.5 mm screw holes filled with CPC. All bones were subjected to torsional loading until failure. Peak torque at failure, stiffness, and energy absorption were measured. FINDINGS:Compared to the drilled group, the CPC group had greater peak torque, stiffness, and energy absorption. Group effects on peak torque and stiffness were moderate (eta squared = 0.12 for both) but did not reach statistical significance (p = 0.37 and 0.38, respectively). A statistically significant group effect was found for energy absorption (p < 0.001); but post-hoc analysis revealed no difference between the drilled and CPC groups. INTERPRETATION:Effect sizes suggest CPC may improve mechanical performance, albeit modestly. Clinicians may consider using CPC for reinforcing screw holes after plate removal in bones like the ulna when refracture is of concern.
Background Rupture of the scapholunate (SL) interosseous ligament (SLIL) is a challenging injury to treat surgically due to the small and complex nature of the SL linkage. This study was a preliminary robotic assessment of the immediate biomechanical effects of a novel 3D-printed scaffold used to reconstruct the ruptured SLIL. Methods Nine minimally loaded cadaveric wrists underwent robotically manipulated flexion-extension and radial-ulnar deviation under conditions of intact, transected, and reconstructed SLIL. Simulated radiographic measures (i.e., SL angle and SL gap) and three-dimensional SL gap across wrist motions were used to assess static and dynamic stability of the reconstructed SLIL. Results Three cadaveric specimens produced complete results across all experimental conditions. Intact SL linkage had a SL angle comparable (but slightly lower) than normative literature values. Once the native SLIL was transected, SL angle disruption was evident, and largely restored once the scaffold was surgically installed. Similar results were seen for SL gap. Results of the dynamic three-dimensional SL gap indicated the scaffold restored dynamic stability to a limited extent. Conclusion Static and dynamic stability of the SL linkage was not compromised by surgical installation of the scaffold. Scaffold installation provided limited restoration of SL linkage towards native values; however, the small number of cadaveric specimens and minimal articular loading applied to the radiocarpal joint limits generalization. Overall, the scaffold may provide adequate mechanical fixation of the SL linkage and enable biological ingrowth of ligament.
BACKGROUND:There are many factors that may influence patient recovery following triangular fibrocartilage complex (TFCC) foveal repair surgery. This study aimed to retrospectively analyze patient records following TFCC foveal repair surgery to identify characteristics that predict patient outcomes. METHODS:A multicenter, retrospective case-series was conducted. Informed written consent was obtained from participating hand therapy clinics, who provided deidentified patient records for adult patients following TFCC foveal repair surgery between January 1 2015 and December 31 2020. Predictors of outcomes were identified using Linear Mixed Effects Regression and Logistic Regression models. RESULTS:A total of 210 patients were included. The most notable improvements in range of motion (ROM) and grip strength, and pain reduction, were observed in the first 10 weeks postsurgery. Longer forearm immobilization duration predicted poorer ROM for pronation, flexion, and extension. Workcover (compensable) patients demonstrated poorer ROM progression compared with private patients. Forty-two patients (20%) required further surgery, of which was due to postoperative TFCC rupture for 22 patients (10%). Patients who received a shorter wrist immobilization period were more likely to experience TFCC rupture. The duration of time between injury and operative treatment did not predict ROM, grip strength, or pain progression. CONCLUSIONS:Longer forearm immobilization predicted poorer ROM and grip strength progression, whereas shorter wrist immobilization predicted an increased risk of TFCC rupture. These findings support a staggered commencement of wrist and forearm ROM exercises, whereby forearm rotation exercises could commence earlier than wrist exercises. The duration of time between injury and operative treatment did not predict ROM, grip strength, or pain progression.
Background: To restore distal radioulnar joint stability following injury to the Triangular Fibrocartilage Complex (TFCC), foveal repair surgery may be necessary. Post-surgery rehabilitation is prescribed to restore wrist and hand function; however, no universally accepted or definitive rehabilitation protocol currently exists. The aim of this study was to survey hand and wrist surgeons regarding their recommended postoperative rehabilitation protocols following TFCC foveal repair surgery. Methods: Australian hand and wrist surgeons were invited to complete a descriptive survey containing 10 questions. Questions included clinical recommendations for wrist and forearm immobilisation, range of motion (ROM) exercise timeframes and surgeon experience of TFCC rupture. Descriptive statistics and between-group (TFCC rupture vs. no-rupture) comparisons (Pearson's Chi2) were calculated. Results: Thirty-one surgeons completed the survey. Recommendations for post-surgery immobilisation ranged from 'not required' to 8 weeks (mode 6 weeks). Wrist and forearm ROM commencement time ranged from 'immediately' to 'later than 8 weeks' (mode 6 weeks). The most recommended orthosis was a 'sugar-tong' (57%). Thirty-seven percent (37%) reported experience of post-surgery re-rupture. Conclusions: While surgeon recommendations varied, the majority recommended 4- to 6-week timeframe for immobilisation and ROM exercise commencement. Additional clinical research is recommended to evaluate whether postoperative rehabilitation decisions influence patient outcomes. Level of Evidence: Level V (Therapeutic).
Background: Microsuturing, the gold standard for peripheral nerve repair, can create tension and damage at the repair site, potentially impacting regeneration and causing neuroma formation. A sutureless and atraumatic polymer-assisted system was developed to address this challenge and support peripheral nerve repair. The system is based on a biocompatible and biodegradable biosynthetic polymer and consists of a coaptation chamber and a light-activated polymer for securing to the nerve. In this study, we compare the system’s biomechanical performance and mechanism of action to microsutures and fibrin repairs. Methods: The system’s fixation force was compared with microsutures and fibrin glue, and evaluated across various nerve diameters through tensile testing. Tension and tissue morphology at the repair site were assessed using finite element modeling and scanning electron microscopy. Results: The fixation force of the polymer-assisted repair was equivalent to microsutures and superior to fibrin glue. This force increased linearly with nerve diameter, highlighting the correlation between polymer surface contact area and performance. Finite element modeling analysis showed stress concentration at the repair site for microsuture repairs, whereas the polymer-assisted repair dissipated stress along the nerve, away from the repair site. Morphological analysis revealed nerve alignment with no tissue trauma for the polymer-assisted repair, unlike microsutures. Conclusions: The mechanical performance of the polymer-assisted coaptation system is suitable for peripheral nerve repair. The achieved fixation forces are equivalent to those of microsutures and superior to fibrin glue, minimizing stress concentration at the repair site and avoiding trauma to the severed nerve ends.
INTRODUCTION:Distal forearm fractures are common in children and adolescents with a spectrum of severity. There are fracture patterns that are suitable for minimal interventions, such as a splint or bandage. The objective of this review was to identify which types of paediatric distal forearm fractures can be safely and effectively managed with a removable splint or bandage. MATERIALS AND METHODS:A scoping review was performed. Databases searched were PubMed, Embase, The Cochrane Library and CINAHL; two trial registries were also searched. All primary study designs with children <18 years of age with a distal forearm fracture that was managed in either a splint or bandage were included. Quality of evidence was determined using the GRADE tool. RESULTS:Twenty-two eligible articles were included from 20 unique studies: 12 randomised controlled trials, seven cohort studies and a case report. Twelve studies focused solely on buckle/torus fractures, with remaining studies including other fracture types, such as incomplete ('greenstick'), complete ('transverse'), or physeal (Salter-Harris). Twelve studies reported that participants with either bandage or splint had appropriate reduction in pain and recovery of function at completion of follow-up for all fracture types. All 20 studies reported minimal adverse events related to fracture management. One study reported worsening angulation with bandage immobilisation for complete fractures in two participants, which required manipulation under anaesthesia. DISCUSSION:There is high quality evidence to support the safety and effectiveness of a splint or bandage for treatment of distal radius buckle and non-displaced incomplete fractures. Several studies supported the use of minimal interventions for various distal radius cortical breach fracture types, with good outcomes, but were limited by heterogeneity (methodology, interventions, outcome measures, reference standard) and potential bias. CONCLUSIONS:Included studies confirmed the inherent stability of buckle fractures. The current literature gap to support minimal interventions for a range of other paediatric distal forearm fracture types was highlighted. High-quality evidence with well-designed, large, multicentre randomised control trials in defined age groups is required to identify which paediatric distal forearm fractures can be safely and effectively managed with either a removable splint or bandage.
The regeneration of the ruptured scapholunate interosseous ligament (SLIL) represents a clinical challenge. Here, we propose the use of a Bone-Ligament-Bone (BLB) 3D-printed polyethylene terephthalate (PET) scaffold for achieving mechanical stabilisation of the scaphoid and lunate following SLIL rupture. The BLB scaffold featured two bone compartments bridged by aligned fibres (ligament compartment) mimicking the architecture of the native tissue. The scaffold presented tensile stiffness in the range of 260 ± 38 N/mm and ultimate load of 113 ± 13 N, which would support physiological loading. A finite element analysis (FEA), using inverse finite element analysis (iFEA) for material property identification, showed an adequate fit between simulation and experimental data. The scaffold was then biofunctionalized using two different methods: injected with a Gelatin Methacryloyl solution containing human mesenchymal stem cell spheroids (hMSC) or seeded with tendon-derived stem cells (TDSC) and placed in a bioreactor to undergo cyclic deformation. The first approach demonstrated high cell viability, as cells migrated out of the spheroid and colonised the interstitial space of the scaffold. These cells adopted an elongated morphology suggesting the internal architecture of the scaffold exerted topographical guidance. The second method demonstrated the high resilience of the scaffold to cyclic deformation and the secretion of a fibroblastic related protein was enhanced by the mechanical stimulation. This process promoted the expression of relevant proteins, such as Tenomodulin (TNMD), indicating mechanical stimulation may enhance cell differentiation and be useful prior to surgical implantation. In conclusion, the PET scaffold presented several promising characteristics for the immediate mechanical stabilisation of disassociated scaphoid and lunate and, in the longer-term, the regeneration of the ruptured SLIL.
BACKGROUND:We examined the effect of Kirschner wire (K-wire) reuse and use of oscillating mode on heat generation within cortical bone.METHODS:Two trocar-tipped K-wires were drilled through the diaphysis of each of 30 human metacarpals and phalanges: one K-wire was inserted in rotary mode and another in oscillating mode. Each wire was reused once. Thermocouples placed within the dorsal and volar bone adjacent to the K-wire drill path measured temperatures throughout each test.RESULTS:Peak cortex temperatures were 25°C to 164°C. Rotary drilling achieves peak temperatures quicker (31 ± 78 seconds vs 44 ± 78 seconds, P = .19) than oscillating drilling, but insertion time is also less, resulting in lower overall heat exposure. This effect is also seen when the K-wire is reused (34 ± 70 seconds vs 41 ± 85 seconds, P = .4). The length of time that cortical bone was exposed to critical temperatures (47°C or more) was significantly higher when a wire was reused (36 ± 72 seconds vs 43 ± 82 seconds, P = .008). Peak temperatures greater than 70°C (a temperature associated with instantaneous cell death) were observed on many occasions.CONCLUSIONS:Overall heat exposure may be higher if a K-wire is reused or inserted in oscillating mode. In the absence of external cooling, K-wire insertion into cortical bone can easily expose bone to temperatures that exceed 70°C and may increase the risk of osteonecrosis.
The aim of the present cadaveric study was to assess resistance to first metacarpal subsidence of three techniques of suspensionplasty after trapeziectomy. In total, 18 forearms (mean age 60 years [range 20–89]) were used with six specimens per surgical technique: palmar oblique ligament reconstruction with tendon interposition (LRTI), abductor pollicis longus (APL) suspensionplasty, or suture suspensionplasty. There was no significant difference in mean trapezial space height after trapeziectomy and suspensionplasty compared to the preoperative trapezial height. However, after simulation of physiological lateral pinch, there was a significant ( p < 0.05) difference in mean trapezial space height between the APL suspensionplasty and the suture suspensionplasty compared to the LRTI group. After axial loading, there was significantly greater metacarpal subsidence in the LRTI group compared to the APL and suture suspensionplasty groups but no statistically significant difference between the suture suspensionplasty and the APL suspensionplasty groups. Level of evidence: V
STUDY OBJECTIVE:In patients aged 5 to 15 years with a clinically nondeformed distal forearm injury presenting to the emergency department (ED), we examined whether point-of-care ultrasound or radiographic imaging had better diagnostic accuracy, with the reference diagnosis determined by an expert panel review. METHODS:This multicenter, open-label, diagnostic randomized controlled trial was conducted in South East Queensland, Australia. Eligible patients were randomized to receive initial imaging through point-of-care ultrasound performed by an ED clinician or radiograph. Images were defined as "no," "buckle," or "other" fracture by the treating clinician. The primary outcome was the diagnostic accuracy of the treating clinician's interpretation compared against the reference standard diagnosis, which was determined retrospectively by an expert panel consisting of an emergency physician, pediatric radiologist, and pediatric orthopedic surgeon, who reviewed all imaging and follow-up. RESULTS:Two-hundred and seventy participants were enrolled, with 135 randomized to each initial imaging modality. There were 132 (97.8%) and 112 (83.0%) correctly diagnosed participants by ED clinicians in the point-of-care ultrasound and radiograph groups, respectively (absolute difference [AD]=14.8%; 95% confidence interval [CI] 8.0% to 21.6%; P<.001). Point-of-care ultrasound had better accuracy for participants with "buckle" fractures (AD=18.5%; 95% CI 7.1% to 29.8%) and "other" fractures (AD=17.1%; 95% CI 2.7% to 31.6%). No clinically important fractures were missed in either group. CONCLUSION:In children and adolescents presenting to the ED with a clinically nondeformed distal forearm injury, clinician-performed (acquired and interpreted) point-of-care ultrasound more accurately identified the correct diagnosis than clinician-interpreted radiographic imaging.
BACKGROUND:Following injury to the Triangular Fibrocartilage Complex (TFCC), foveal repair surgery may be indicated to restore joint stability and function. Protection of the repaired ligament is a clinical consideration during post-surgical rehabilitation, although no "gold standard" rehabilitation protocol currently exists. PURPOSE:To describe the professional opinions of Accredited Hand Therapists (AHT) regarding post-operative rehabilitation recommendations following TFCC foveal repair surgery. STUDY DESIGN:Cross-sectional descriptive study. METHODS:All Australian AHTs were invited to complete a quantitative, online, 10-item survey between December 2019 and March 2020. The survey included questions regarding clinical recommendations for wrist and forearm immobilization, range of motion and exercise methods, and timeframes. AHT characteristics and experience of patients sustaining a TFCC re-rupture were also collected. Categorical and nominal survey responses were reported descriptively and effects of AHT characteristics on survey responses were assessed using Pearson Chi2, with significance set to <0.05. RESULTS:Survey responses were received from 135 AHTs or approximately 37% of the available population at the time of completion (March 2020). Recommendations for post-surgery immobilization ranged from "not required" to 8 weeks, 6 weeks representing the most common answer. Wrist and forearm range of motion commencement time ranged from "immediately" to "later than 8 weeks," with 6 weeks also the most common answer. When asked whether post-surgery rupture had been experienced in their respective patient groups, 15 therapists (11%) indicated "Yes." The most recommended thermoplastic orthosis was a Sugartong orthosis (41%) followed by a Muenster orthosis (30%), both of which immobilizes the wrist and forearm. CONCLUSIONS:Rehabilitation varied widely between AHTs. Further prospective research is recommended to explore whether patient-related or rehabilitation factors influence outcomes following TFCC repair.
Background Chronic injuries to the scapholunate ligament (SLIL) alter carpal kinematics and may progress to early degenerative osteoarthritis. To date, there is no consensus for the best method for SLIL reconstruction. This study aims to assess the use of growth factors (bone morphogenetic protein [BMP]2 and growth and differentiation factor 5 [GDF5]) for compartmentalized regeneration of bone and ligament in this multiphasic scaffold in a rabbit knee model.Case Description A total of 100 mu g of BMP2 and 30 mu g of GDF5 were encapsulated into a heparinized gelatin-hyaluronic acid hydrogel and loaded into the appropriate compartment of the multiphasic scaffold. The multiphasic scaffold was implanted to replace the native rabbit medial collateral ligament ( n = 16). The rabbits were randomly assigned to two different treatment groups. The first group was immobilized postoperatively with the knee pinned in flexion with K-wires for 4 weeks ( n = 8) prior to sacrifice. The second group was immobilized for 4 weeks, had the K-wires removed followed by a further 4 weeks of mobilization prior to sample harvesting.Literature Review Heterotopic ossification as early as 4 weeks was noted on gross dissection and confirmed by microcomputed tomography and histological staining. This analysis revealed formation of a bony bridge located within and over the ligament compartment in the intra-articular region. Biomechanical testing showed increased ultimate force of the ligament compartment at 4 weeks postimplantation consistent with the presence of bone formation and higher numbers of scaffold failures at the bone-tendon junction. This study has demonstrated that the addition of BMP2 and GDF5 in the bone-ligament-bone (BLB) scaffold resulted in heterotopic bone formation and failure of the ligament compartment.
Surgical simulation models are becoming increasingly more prevalent, complex and niche within the medical industry, yet there has been nothing developed to date that focuses specifically on scapholunate interosseous ligament (SLIL) injuries, which are common amongst a large range of ages and demographics. This study seeks to present the design process of a surgical practice rig designed to support care for the ruptured SLIL. The novelty of this practice rig is apparent, because it explores multiple 3D printing technologies in order to evaluate which is the most suitable for a medical practice rig of this nature. User feedback indicated that hybrid manufacturing applications utilising traditional fabrication techniques and 3D printing technologies was superior when accounting for the requisite movement capabilities and modularity the rig needed to process. Throughout the design process, a user-centred approach was used to translate the needs of the surgeon into a functional product. An emergent design methodology was used to incorporate feedback from medical professionals and engineers. These two methodological approaches were used to ensure the end-product fulfilled several functions: aiding surgeons to understand a new surgical implant, providing reasonable bio-fidelity in wrist function to enable surgical practice, and remaining simple enough to be understood by a patient undergoing a complex procedure. Following user tests with a variety of hand and wrist surgeons, we found this rig suitable for several applications. The rig functioned as expected, providing surgeons with a means to experiment with a new surgical implant, and proved an effective tool for patient education.
Chauffeur fractures or isolated radial styloid fractures (IRSF) are known to be associated with scapholunate ligament (SL) injuries. Diagnosis without arthroscopic confirmation is difficult in acute fractures. Acute management of this injury with early repair may prevent the need for more complex reconstructive procedures for chronic injuries. We investigated if all IRSF should be assessed arthroscopically for concomitant SL injuries.We performed a prospective cohort study on patients above the age of 16, presenting to the Gold Coast University Hospital with an IRSF, over 2 years. Plain radiographs and computerized tomography (CT) scans were performed. All patients had a diagnostic wrist arthroscopy performed in addition to an internal fixation of the IRSF. Patients were followed up for at least 3 months post operatively. SL repair was performed for all Geissler Grade 3/4 injuries.10 consecutive patients were included in the study. There was no radiographic evidence of SL injuries in all patients. SL injuries were identified arthroscopically in 60% of patients and one third of these required surgical stabilisation. There were no post operative complications associated with wrist arthroscopy.We found that SL injuries occurred in 60% of IRSF and 20% of patients require surgical stabilisation. This finding is in line with the literature where SL injuries are reported in up to 40-80% of patients. Radiographic investigations were not reliable in predicting possible SL injuries in IRSF. However, no SL injuries were identified in undisplaced IRSF. In addition to identifying SL injuries, arthroscopy also aids in assisting and confirming the reduction of these intra-articular fractures.In conclusion, we should have a high index of suspicion of SL injury in IRSF. Arthroscopic assisted fixation should be considered in all displaced IRSF. This is a safe additional procedure which may prevent missed SL injuries and their potential sequelae.
Background/Aims: Scaphoid non-union causes osteoarthritis but factors associated are poorly understood. We investigated the rate of osteoarthritis after scaphoid fracture non-union, and if duration and fracture location influenced arthritis and its severity.Methods: This retrospective cross-sectional observational study of 278 consecutive cases with scaphoid fracture non-union retrieved data on demographics, non-union duration, fracture location, dorsal inter-calated segment instability (DISI), severity and distribution of wrist arthritis. Patient Evaluation Measure (PEM) and Quality of Life assessed impact on patients. Regression models investigated prediction of os-teoarthritis by different variables. Time-to-event analysis investigated osteoarthritis evolution. Missing (MAR) data for the PEM and QoL was imputed and analysed.Results: 278 patients, 246 males, aged 27.9 years (range 11 to 78 years), with a scaphoid fracture non-union confirmed on computed tomography (CT) scans (243) and plain radiographs (35) were reviewed. The interval between injury and imaging was 3.3 years (SD 5.9 years; range 0.1-45). The fracture was proximal to the ridge in 162, distal to the ridge in 83 and in the proximal 20% in 33. DISI (RLA >= 10 degrees) occurred in 93.5% (260/278). Osteoarthritis was identified in 62.2% (173/278), and we classified a SNAC pattern in 93.6% (162/173). Of these, 100 (61.7%) had SNAC 1, 22 (13.6%) SNAC 2, 17 (10.5%) SNAC 3, and 23 (14.2%) SNAC 4. The mean duration in years for SNAC 1, 2, 3 and 4 were 2.5, 6.0, 8.2, and 11.3 years respectively. In fractures proximal to the ridge, 50% had arthritis in 2.2 years. Whereas in proximal pole, and distal to the ridge, 50% developed in 3.8 and 6.6 years, respectively. The PEM score was 42.8% (SD 18.9%) in those without arthritis and 48.8% (SD 21.5%) in those with arthritis. The mean QoL was 0.838 in patients without SNAC and 0.792 with SNAC.Conclusion: Scaphoid fracture non-union caused early carpal collapse, majority had osteoarthritis usually observed within a year following injury and occurred earliest in proximal waist fractures. Distribution of osteoarthritis (SNAC stage) may not always follow a distinctive pattern, as previously described.(c) 2022 Elsevier Ltd. All rights reserved.
BACKGROUND:Unlike articular shear fractures of the distal radius, radiocarpal fracture-dislocations defined as complete dislocation of the lunate from its articular facet of the radius are relatively uncommon. The management principles of these fractures have not been defined and there is no consensus on approach to management of these injuries. The aim of this study is to review our series of radiocarpal fracture-dislocations and propose a radiographic classification to guide surgical management.METHODS:This study is reported based on STROBE guidelines. A total of 12 patients underwent open reduction and internal fixation. All the fracture-dislocations were dorsal and satisfactory objective outcomes achieved were comparable to literature. Injury morphology-specific management approach was used based on the size of dorsal lip fragment and the volar teardrop fragment attached to the short radiolunate ligament assessed by preoperative CT scans.RESULTS:All patients with known outcome (n = 10) went on to resume their prior occupation and hobbies that included high-demand activities and manual labour at mean follow-up of 27 weeks. Average wrist flexion was 43° and wrist extension was 41° while radial and ulnar deviation were 14° and 18° respectively. Average forearm pronation was 76° and supination was 64° at final follow-up.CONCLUSION:We describe four injury patterns of radiocarpal fracture-dislocations based on preoperative CT scans that guide fixation. We believe that early recognition of radiocarpal fracture-dislocations and appropriate management can yield satisfactory outcomes.
Axons respond well to mechanical stimuli and can be stretched mechanically to increase their growth rate. Although stretch growth of axons and their transient lengthening ex-vivo has been discussed in literature extensively, however, real applications of this phenomenon are scarcely found. This work presents a technique to translate ex-vivo axonal stretch growth to in-vivo nerve stretch growth. By establishing a rat model of completely transected sciatic nerve injury, the regrowth rate of the proximal nerve stump was examined under the effect of a stretching force developed by negative pressure. In this manuscript, results have been presented based on quantitative and qualitative analysis of the stained nerve tissues. Gross observations have explicitly confirmed that the proximal stump of a whole sectioned sciatic nerve of a Wistar rat stretched in a T-shaped nerve prosthesis using a controlled amount of negative pressure displayed a better outcome in terms of an increase in the total length of proximal nerve stump post-treatment and a higher number of blood vessels with respect to control. The histological and morphometric analyses confirmed that negative pressure-assisted nerve growth provides an alluring control over nerve's regrowth rate. Immunohistochemical staining also supported the existence of a positive correlation between nerve growth and in-vivo application of axial stress on it. This work presents the first holistic evidence on growing nerves in the continuum of in-vivo nerve stretch growth using negative pressure and concludes that systematic and controlled negative pressure applied directly to the resected ends of a sciatic nerve resulted in the enhanced growth rate of regenerating nerve fibres.
BACKGROUND:Fractures of the distal radius are common. Closed reduction and moulded casting is often the first line treatment. Malunion after casting is not uncommon and can lead to discussion on acute surgical fixation versus delayed corrective osteotomy if symptomatic. However, it is unclear if late surgery will provide similar outcomes as early intervention.METHODS:We performed a single centre, age matched, case series comparison study, comparing outcomes of patients who had undergone early fixation (ORIF) versus those who had undergone late corrective osteotomy (CO) following distal radius fracture.RESULTS:Twenty-six patients were available for review, 13 in each group. Fracture patterns were similar. Reviewing CO versus ORIF; patients achieved a mean DASH; 22 versus 18 (P = 0.355), PRWE; 35 versus 26 (P = 0.237), and VAS 2 versus 2 (P = 0.490). Grip strength was significantly better in those who had undergone ORIF; 2% versus -22% (P ≤ 0.001). Range of motion was generally better with primary fixation but of doubtful clinical importance, reviewing CO versus ORIF; Flexion 46° versus 60° (P = 0.045), extension 55° versus 64° (P = 0.137), pronation 73° versus 85° (P = 0.078), supination 84° versus 84° (P = 0.747), flexion/extension arc 101 versus 124 (P = 0.017), ulnar/radial deviation arc 42° versus 59° (P = 0.01), pronation/supination arc 157° versus 168° (P = 0.118). Ulnar variance was significantly improved in the ORIF group; +0.5 mm versus +2 mm in the CO group (P = 0.023). Radial inclination, radial height and volar tilt were not significantly different between either group.CONCLUSION:Our findings suggest that patient measured outcome of corrective osteotomy is not inferior to early internal fixation.LEVEL OF EVIDENCE:III (Case Series Comparison).