Advertisement for orthosearch.org.uk
Results 1 - 5 of 5
Results per page:
Applied filters
Research

Include Proceedings
Dates
Year From

Year To
Orthopaedic Proceedings
Vol. 95-B, Issue SUPP_30 | Pages 46 - 46
1 Aug 2013
Gillespie J Gislason M Ugbolue U Hems T
Full Access

Wrist arthrodesis is a common surgical procedure that provides a high level of functional outcome and pain relief among patients.[1] Upon partial arthrodesis, the wrist experiences changes in load transmission that are influenced by the type of arthrodesis performed. Measuring the load through the wrist joint is difficult, however, combined with computational models [2], it is possible to obtain data regarding the load mechanics of the wrist joint. Although successful fusion rates among patients have been reported, it remains unclear what the biomechanical consequences are.

The aim of the study is to quantify pre and post operative load transmission through a cadaveric wrist which has undergone simulated arthrodesis of the radiolunate(RL) joint. An embalmed human wrist was dissected dorsally exposing distal radius, radiocarpal and carpometacarpal joints, and dorsal ligaments. The radioscaphoid(RS) ligament was sacrificed to accommodate insertion of a PPSEN-09375 force sensitive resistor (FSR) into the RS joint. The FSR was calibrated prior to measuring the contact force on the RS joint.

The wrist was aligned in the neutral position in cardboard piping, and secured proximally and distally with Dental Plaster (OthoBock Healthcare Plc, Surrey, UK). The midsection of piping was windowed to permit placement of the FSR in the RS joint, and fixation of the RL joint using 2 Kirschner wires. The window was completed circumferentially and the specimen was placed in the Instron where a graduated axial compression was applied at 20 N/min.

The results showed that when the radiolunate joint is fused, and a total axial load of 100N is applied, the load transmitted through the RS joint was approx 65N. i.e. 65% of the force. This is greater than the 56% measured experimentally by Blevens et al (1989) in an unfused specimen[3]. We plan to repeat our measurements and compare to an untreated cadaveric wrist.


Orthopaedic Proceedings
Vol. 95-B, Issue SUPP_31 | Pages 66 - 66
1 Aug 2013
Bell S Brown M Hems T
Full Access

Current knowledge regarding upper limb myotomes is based on historic papers. Recent advances in magnetic resonance imaging (MRI) and surgical exploration with intraoperative nerve stimulation now allow accurate identification of nerve root injuries in the brachial plexus. The aim of this study is to identify the myotome values of the upper limb associated with defined supraclvicular brachial plexus injuries.

57 patients with partial supraclavicular brachial plexus injuries were identified from the Scottish brachial plexus database. The average age was 28 years and most injuries secondary to motor cycle accidents or stabbings. The operative and MRI findings for each patient were checked to establish the root injuries and the muscle powers of the upper limb documented.

The main patterns of injuries identified involved (C5,6), (C5,6,7), (C5,6,7,8) and (C8, T1). C5, 6 injuries were associated with loss of shoulder abduction, external rotation and elbow flexion. In 30% of the 16 cases showed some biceps action from the C7 root. C5,6,7 injuries showed a similar pattern of weakness with the additional loss of flexor carpi radialis and weakness but not total paralysis of triceps in 85% of cases. C5,6,7,8 injuries were characterised by loss of pectoralis major, lattisimus dorsi, triceps, wrist extension, finger extension and as well as weakness of the ulnar intrinsic muscles. We identified weakness of the flexor digitorum profundus to the ulnar sided digits in 83% of cases. T1 has a major input to innervation of flexors of the radial digits and thumb, as well as intrinsics.

This is the largest study of myotome values in patients with surgically or radiologically confirmed injuries in the literature and presents information for general orthopaedic surgeons dealing with trauma patients for the differentiation of different patterns of brachial plexus injuries. In addition we have identified new anatomical relationships not previously described in upper limb myotomes.


Orthopaedic Proceedings
Vol. 95-B, Issue SUPP_30 | Pages 49 - 49
1 Aug 2013
Smith J Marsh A Hems T Ritchie D
Full Access

Although most peripheral nerve sheath tumours are benign, some are malignant. The management of malignant tumours usually involves wide excision and is facilitated by knowledge of the diagnosis prior to operation. Imaging modalities, including MRI, give anatomical information but do not distinguish between benign and malignant nerve tumours. We therefore introduced the use of ultrasound guided needle biopsy for suspected nerve tumours to our unit in 2004. Prior to this, excision biopsy was carried out in all cases. We aimed to review our experience with needle biopsy and determine whether it has an effective role in the management of peripheral nerve tumours.

All patients who had a needle biopsy for suspected peripheral nerve tumours from January 2004 to December 2011 were identified from our tumour database and clinical notes reviewed. In all cases, biopsy was carried out under ultrasound guidance with local anaesthesia to obtain a 1mm core of tissue.

From 25 patients reviewed, 21 (84%) had a successful biopsy. In 3 cases the biopsy was unable to be completed due to pain and in 1 patient insufficient tumour tissue was obtained. 1 patient had a temporary radial nerve palsy following needle biopsy which recovered fully.

In biopsies that were successful, 19 (90%) showed a benign peripheral nerve tumour. Following diagnosis of a benign lesion, only 2 patients required to have surgical excision of the tumour due to pain. The remainder were managed non-operatively.

In the 2 cases of malignant tumours detected by biopsy, a successful wide surgical excision was performed.

Ultrasound guided core needle biopsy appears safe and gives a tissue diagnosis in most cases of suspected peripheral nerve tumours. In malignant cases it facilitates surgical planning, while most benign tumours could be managed non-operatively, therefore avoiding potential complications of nerve surgery.


Orthopaedic Proceedings
Vol. 95-B, Issue SUPP_31 | Pages 49 - 49
1 Aug 2013
O'Flaherty E Bell S McKay D Wellington B Hart A Hems T
Full Access

To collate and present epidemiological data collected by Scottish National Brachial Injury Service over the past decade.

The Brachial Plexus Injury Service is based at the Victoria Infirmary, Glasgow and has been a designated National Service since 2004. It provides an integrated multidisciplinary service for traumatic brachial plexus injury and plexus tumours. The Service maintains an active archive recording details of all clinical referrals and procedures conducted by the Service over the past decade. The data presented here was derived from analysis of this database and information contained in the National Brachial Plexus Injury Service Annual Report 2010/11 & 2011/12.

Data shows that there has been a steady rate in the number of referrals to the Service, particularly since 2004, with an average of 50 cases referred per annum. Of these, approximately 25% required formal surgical exploration for traumatic injury and a further 10% required surgery for brachial plexus tumour removal. The vast majority of referred cases are treated non-operatively, with appropriate support from specialist physiotherapy and occupational therapy. Referrals to the Service appear well distributed from around Scotland. However, data from 2011 shows that Greater Glasgow & Clyde is the greatest individual source of referrals and subsequent hospital admissions for surgical treatment. The commonest mechanism of brachial plexus injury appears to be secondary to falls and motorcycle RTA. Using the Disabilities of the Arm, Shoulder and Hand (DASH) Score, improved functional outcomes have been demonstrated consistently in patients who have undergone surgery for brachial plexus injuries within the Service.

Over the past decade, the Brachial Plexus Injury Service has had a steady patient referral record from across the Scotland, particularly Glasgow. Data indicates that there is an on-going clinical need for provision of the service with improved outcomes and reduced functional disability in patients treated by the service. It is envisaged that data from the Service will also act as a useful planning model for the provision of UK national services in the future.


Orthopaedic Proceedings
Vol. 94-B, Issue SUPP_XXVIII | Pages 11 - 11
1 Jun 2012
Brown I Pillai A Hems T
Full Access

Our unit has pursued a policy of using donor nerves from the same limb for grafting. Nerves which have already been affected by the primary injury are selected where possible, thus avoiding any new sensory deficit.

Methods

36 of the 41 brachial plexus repairs were available for outcome data collected prospectively over 2 years. Over a nine year period, donor nerves used for the 41 brachial plexus repairs included the lateral cutaneous nerve of the forearm, superficial radial, medial cutaneous of the forearm, ulnar and sural nerves. Patients were grouped into having injured nerve grafts only (A), injured and uninjured nerve grafts (B) and uninjured nerve grafts. The repaired brachial plexus nerves were assessed by measuring the MRC grading of the power of movement of the muscle innervated by that nerve (i.e. elbow flexion for musculocutaneous nerve). These were graded as good (MRC grading 3 or better), fair (MRC grade 1 or 2), or poor (MRC 0).

Results

The greatest success for nerve grafting was elbow flexion with good results in 22 out of 27 assessments. Using Mann-Whitney test, Group A had significantly better results (p=0.025) than group C. However, ignoring the poorer results of shoulder abduction there was no significant difference between all 3 groups of patients.