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Orthopaedic Proceedings
Vol. 105-B, Issue SUPP_9 | Pages 14 - 14
17 Apr 2023
Bartolo M Newman S Dandridge O Provaggi E Accardi M Dini D Amis A
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No proven long-term joint-preserving treatment options exist for patients with irreparable meniscal damage. This study aimed to assess gait kinematics and contact pressures of novel fibre-matrix reinforced polyvinyl alcohol-polyethylene glycol (PVA-PEG) hydrogel meniscus implanted ovine stifle joints against intact stifles in a gait simulator.

The gait simulator controlled femoral flexion-extension and applied a 980N axial contact force to the distal end of the tibia, whose movement was guided by the joint natural ligaments (Bartolo; ORS 2021;p1657- LB). Five right stifle joints from sheep aged >2 years were implanted with a PVA-PEG total medial meniscus replacement, fixed to the tibia via transosseous tunnels and interference screws. Implanted stifle joint contact pressures and kinematics in the simulator were recorded and compared to the intact group. Contact pressures on the medial and lateral condyles were measured at 55° flexion using Fujifilm Prescale Low Pressure film inserted under the menisci. 3D kinematics were measured across two 30 second captures using the Optotrak Certus motion-tracking system (Northern Digital Inc.).

Medial peak pressures were not significantly different between the implanted and intact groups (p>0.4), while lateral peak pressures were significantly higher in the implanted group (p<0.01). Implanted stifle joint kinematics in the simulator did not differ significantly from the intact baseline (p>0.01), except for in distraction-compression (p<0.01).

Our findings show that the fibre-matrix reinforced PVA-PEG hydrogel meniscal replacement restored the medial peak contact pressures. Similar to published literature (Fischenich; ABE 2018;46(11):1–12), the lateral peak pressures in the implanted group were higher than the intact. Joint kinematics were similar across groups, with slightly increased internal-external rotation in the implanted group. These findings highlight the effectiveness of the proposed approach and motivate future work on the development of a total meniscal replacement.


The Bone & Joint Journal
Vol. 103-B, Issue 6 | Pages 1173 - 1173
1 Jun 2021
Alsousou J Oragui E Martin A Strickland L Newman S Kendrick B Taylor A Glyn-Jones S


The Bone & Joint Journal
Vol. 103-B, Issue 4 | Pages 644 - 649
1 Apr 2021
Alsousou J Oragu E Martin A Strickland L Newman S Kendrick B Taylor A Glyn-Jones S

Aims

The aim of this prospective cohort study was to evaluate the early migration of the TriFit cementless proximally coated tapered femoral stem using radiostereometric analysis (RSA).

Methods

A total of 21 patients (eight men and 13 women) undergoing primary total hip arthroplasty (THA) for osteoarthritis of the hip were recruited in this study and followed up for two years. Two patients were lost to follow-up. All patients received a TriFit stem and Trinity Cup with a vitamin E-infused highly cross-linked ultra-high molecular weight polyethylene liner. Radiographs for RSA were taken postoperatively and then at three, 12, and 24 months. Oxford Hip Score (OHS), EuroQol five-dimension questionnaire (EQ-5D), and adverse events were reported.


Orthopaedic Proceedings
Vol. 102-B, Issue SUPP_5 | Pages 1 - 1
1 Jul 2020
Fernquest S Palmer A Gimpel M Birchall R Broomfield J Wedatilake T Dijkstra H Lloyd T Pereira C Newman S Carr A Glyn-Jones S
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Background

Cam morphology develops during adolescence and predisposes individuals to future hip pain and osteoarthritis. An improved understanding of cam development is required to determine whether the process is modifiable.

Hypothesis/Purpose

The aim of this study was to characterise the risk factors, timing, and pathogenesis of cam formation.


Orthopaedic Proceedings
Vol. 99-B, Issue SUPP_3 | Pages 22 - 22
1 Feb 2017
Huixiang W Newman S Jones G Sugand K Cobb J Auvinet E
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Introduction

Because of the low cost and easy access, surgical video has become a popular method of acquiring surgical skills outside operating rooms without disrupting normal surgical flow. However, currently existing video systems all use a single point of view (POV). Some complex orthopedic procedures, such as joint replacement, require a level of accuracy in several dimensions. So single and fixed POV video may not be enough to provide all the necessary information for educational and training purposes. The aim of our project was to develop a novel multiple POV video system and evaluate its efficacy as an aid for learning joint replacement procedure compared with traditional method.

Materials and Methods

Based on the videos of a hip resurfacing procedure performed by an expert orthopedic surgeon captured by 8 cameras fixed all around the operating table, we developed a novel multiple POV video system which enables users to autonomously switch between optimal viewpoints (Figure 1). 30 student doctors (undergraduate years 3–5 and naive to hip resurfacing procedure) were recruited and randomly allocated to 2 groups: experiment group and control group, and were assigned to learn the procedure using multiple or single POV video systems respectively. Before learning they were first asked to complete a multiple choicetest designed using a modified Delphi technique with the advice and feedback sought from 4 experienced orthopedic surgeons to test the participants' baseline knowledge of hip resurfacing procedure. After video learning, they were asked to answer the test again to verify their gained information and comprehension of the procedure, followed by a 5-point Likert-scale questionnaire to demonstrate their self-perception of confidence and satisfaction with the learning experience. The scores in the 2 tests and in the Likert-scale questionnaire were compared between 2 groups using Independent-Samples t-test (for normally distributed data) or Mann-Whitney U test (for non-normally distributed data). Statistical significance was set as p<0.05.


Orthopaedic Proceedings
Vol. 98-B, Issue SUPP_8 | Pages 30 - 30
1 May 2016
Newman S Clarke S Harris S Cobb J
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Introduction

Patient Specific Instrumentation (PSI) has the potential to allow surgeons to perform procedures more accurately, at lower cost and faster than conventional instrumentation. However, studies using PSI have failed to convincingly demonstrate any of these benefits clinically. The influence of guide design on the accuracy of placement of PSI has received no attention within the literature.

Our experience has suggested that surgeons gain greater benefit from PSI when undertaking procedures they are less familiar with. Lateral unicompartmental knee replacement (UKR) is relatively infrequently performed and may be an example of an operation for which PSI would be of benefit. We aimed to investigate the impact on accuracy of PSI with respect to the area of contact, the nature of the contact (smooth or studded guide surfaces) and the effect of increasing the number of contact points in different planes.

Method

A standard anatomy tibial Sawbone was selected for use in the study and a computed tomography scan obtained to facilitate the production of PSI. Nylon PSI guides were printed on the basis of a lateral UKR plan devised by an orthopaedic surgeon. A control PSI guide with similar dimensions to the cutting block of the Oxford Phase 3 UKR tibial guide was produced, contoured to the anterior tibial surface with multiple studs on the tibial contact surface. Variants of this guide were designed to assess the impact of design features on accuracy. These were: a studded guide with a 40% reduction in tibial contact area, a non-studded version of the control guide, the control guide with a shim to provide articular contact, a guide with an extension to allow distal referencing at the ankle and a guide with a distal extension and an articular shim. All guides were designed with an appendage that facilitated direct attachment to a navigation machine (figure 1). 36 volunteers were asked to place each guide on the tibia with reference to a 3D model of the operative plan. The order of placement was varied using a counterbalanced latin square design to limit the impact of the learning effect. The navigation machine recorded deviations from the plan in respect of proximal-distal and medial-lateral translations as well as rotation around all three axes. Statistical analysis was performed on the compound translational and rotational errors for each guide using ANOVA with Bonferroni correction with statistical significance at p<0.05.


Orthopaedic Proceedings
Vol. 94-B, Issue SUPP_II | Pages 87 - 87
1 Feb 2012
Patel R Stygall J Harrington J Newman S Haddad F
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We aimed to measure cerebral microemboli load during total hip [THA] and knee arthroplasty (TKA) using transcranial Doppler ultrasound (TCD) and to investigate whether cerebral embolic load influences neuropsychiatric outcome. The timing of the microemboli was also related to certain surgical activities to determine if a specific relationship exists and the presence of a patent foramen ovale was investigated.

Patients undergoing primary THA and TKA underwent a battery of ten neuropsychiatric tests pre-operatively and at 6 weeks and 6 months post-operatively. Microembolic load was recorded using TCD onto VHS tape for subsequent analysis. Patent foramen ovale detection was performed using bolus intravenous injection of agitated saline followed by valsalva manoeuvre. The timing of specific surgical steps was recorded for each operation and embolic load calculated for that period. All patients were assessed for quality of life and orthopaedic outcome measures.

Results

45 THA patients and 50 TKA patients were studied. Cerebral microembolisation occurred in 35% of all patients (10 THA patients and 19 TKA patients). Mean microembolic load was 2.8 per patient for THA and 3.76 per patient for TKA patients. PFO was detected in 29 patients overall. Insertion of the femoral component and deflation of the tourniquet were associated with a larger microembolic loads. Neuropsychiatric outcome was not affected by the low embolic loads. Quality of life and Orthopaedic outcome at 6 months was good.

Conclusion

Cerebral microembolisation occurs in a significant proportion of patients during total hip and knee arthroplasty. The presence of a patent foramen ovale does not appear to influence the incidence of microembolisation or load. Specific surgical activities are associated with generating greater embolic loads and methods of avoiding these emboli such as venting the femur may minimise complications and optimise outcomes. Neuropsychiatric outcomes do not seem to be affected by microembolisation of the brain during total joint arthroplasty.


Orthopaedic Proceedings
Vol. 90-B, Issue SUPP_I | Pages 17 - 18
1 Mar 2008
Patel R Stygall J Harrington J Harrison M Newman S Haddad F
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To quantify the intraoperative cerebral microemboli load during primary total knee arthroplasty (TKA) using transcranial Doppler ultrasound and to investigate whether a patent foramen ovale influences cerebral embolic load in general.

Patients undergoing primary TKA, with no history of stroke, TIA, ongoing CNS disease or alcoholism were included. All operations were carried out under a standardised general anaesthetic and performed by two consultant orthopaedic surgeons. Microemboli l oad was recorded, using transcranial Doppler ultrasound (TCD), onto VHS tape for subsequent playback and analysis. Patent foramen ovale detection was performed using bolus intravenous injection of agitated saline followed by valsalva manoeuvre technique and TCD. Timing of specific surgical steps was recorded for each operation and emboli load calculated for that period.

Results: 50 TKA patients were studied (31 females, 19 males); 28 right and 22 left TKAs were performed. Cerebral microembolisation occurred in 19 patients (42%). Mean microembolic load was 3.56 per patient (range 0–21). PFO was detected in 9 patients (18%). Two thirds of PFO positive patients displayed cerebral microemboli. However, 36.6% (n=15) of PFO negative patients also displayed microemboli intraoperatively. Deflation of the tourniquet was followed by a larger microembolic load than the other phases of the operation.

Conclusion: Intraoperative cerebral microembolisation occurs in a significant proportion of patients during total knee arthroplasty. The presence of a patent foramen ovale does not appear to influence the incidence microemboli intraoperatively. Specific surgical activities are associated with generating greater embolic loads. These questions will be comprehensively assessed in the larger study currently underway.


Orthopaedic Proceedings
Vol. 88-B, Issue SUPP_I | Pages 106 - 107
1 Mar 2006
Patel R Stygall J Harrington J Newman S Haddad F
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Aims: To assay the intraoperative cerebral microemboli load during primary total knee arthroplasty(TKA) using transcranial Doppler ultrasound. A battery of ten neuropsychiatric tests were carried out pre and post operatively to examine the change in cognitive outcome. The relationship between emboli load and neuropsychiatric outcome was examined.

Methods: Patients undergoing primary TKA, with no history of stroke, TIA, ongoing CNS disease or alcoholism included. Pre (baseline) and post operative (6 weeks and 6 months) neuropsychiatric tests performed. Scores were recorded as “z change” scores compared with baseline. All operations were carried out under a standardised general anaesthetic and performed by two consultant orthopaedic surgeons. Microemboli load recorded, using transcranial Doppler ultrasound (TCD), onto VHS tape for subsequent playback and analysis.

Results: 50 TKA patients were studied. Cerebral microembolisation occurred in 63% of TKA patients. Mean microembolic load for TKA patients was 3.83 (range=0–57).

There was no significant change in neuropsychiatric outcome from baseline in these patients at 6 weeks or 6 months. Those patients that experienced cerebral microembolisation did not significantly differ in neuropsychiatric outcome from those that did not.

Conclusion: Intraoperative cerebral microembolisation occurs in almost half of patients during knee arthroplasty. Emboli loads are low and do not appear to cause early or late changes in neuropsychiatric outcome.


Orthopaedic Proceedings
Vol. 86-B, Issue SUPP_III | Pages 232 - 232
1 Mar 2004
Patel R Stygall J Harrington J Newman S Haddad F
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Aims: To compare the intraoperative cerebral microemboli load between primary total hip (THA) and knee arthroplsty (TKA) using transcranial Doppler ultrasound and to investigate whether a patent foramen ovale influences cerebral embolic load in general. The timing of the microemboli will be related to certain surgical activities to determine if a specific relationship exists. Methods: Patients undergoing primary TKA or THA, with no history of stroke, TIA, ongoing CNS disease or alcoholism included. All operations carried out under a standardised general anaesthetic and performed by two consultant orthopaedic surgeons. Microemboli load recorded, using transcranial Doppler ultrasound (TCD), onto VHS tape for subsequent playback and analysis. Patent foramen ovale detection performed using bolus intravenous injection of agitated saline followed by valsalva manoeuvre technique and TCD. Timing of specific surgical steps recorded for each operation and emboli load calculated for that period. Results: 20 THA and 20 TKA patients were studied. Cerebral microembolisation occurred in 50% of THA and 40% of TKA patients. Total microembolic load for THA patients was 137 (range=0–83) and 50 (range=0–21) for TKA patients. Prevalence of PFO in the THA group was 35%, and 20% in the TKA group. 57.1% of PFO positive THA patients and 75% of PFO positive TKA patients displayed microemboli. Insertion of the femoral component in THA and release of the tourniquet in TKA were associated with higher cerebral microemboli load. Conclusion: Intraoperative cerebral microembolisation occurs in almost half of patients during hip and knee arthroplasty. Patients who have a PFO appear more likely to be associated with cerebral embolisation. Specific surgical activities are associated with larger embolic loads.


Orthopaedic Proceedings
Vol. 86-B, Issue SUPP_I | Pages 78 - 78
1 Jan 2004
Patel RV Stygall J Harrington J Harrison MG Newman S Haddad FS
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Aims: To quantify the intraoperative cerebral microemboli load during primary total hip arthroplasty (THA) using transcranial Doppler ultrasound and to investigate whether a patent foramen ovale influences cerebral embolic load in general. The timing of the microemboli will be related to certain surgical activities to determine if a specific relationship exists.

Methods: Patients undergoing primary THA, with no history of stroke, TIA, ongoing CNS disease or alcoholism were included. All operations were carried out under a standardised general anaesthetic and performed by two consultant orthopaedic surgeons. Microemboli load was recorded, using transcranial Doppler ultrasound (TCD), onto VHS tape for subsequent playback and analysis. Patent foramen ovale detection was performed using bolus intravenous injection of agitated saline followed by valsalva manoeuvre technique and TCD. Timing of specific surgical steps was recorded for each operation and emboli load calculated for that period.

Results: 25 THA patients were studied (18 females, 7 males) 16 right and 9 left THA’s were performed. Cerebral microembolisation occurred in 10 patients (40%). Mean microembolic load was 5.52 per patient (range = 0–83). PFO was detected in 8 patients (32%). 37.5% of PFO positive patients displayed cerebral microemboli. However, 41.1% of PFO negative patients also displayed microemboli intraoperatively.

Insertion of the femoral component was associated with generating a larger microembolic load than the other phases of the operation.

Conclusion: Intraoperative cerebral microembolisation occurs in a significant proportion of patients during total hip arthroplasty. The presence of a patent foramen ovale does not appear to influence the incidence microemboli intraoperatively. Specific surgical activities are associated with generating greater embolic loads. These questions will be comprehensively assessed in the larger study currently underway..