muscle reinnervation
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PEDIATRICS ◽  
2021 ◽  
Author(s):  
Brian Vial ◽  
Margaret Lieb ◽  
Haley Pysick ◽  
Patrick Hettinger ◽  
Lynn Rusy ◽  
...  

Targeted muscle reinnervation (TMR) is a powerful new tool in preventing and treating residual limb and phantom limb pain. In the adult population, TMR is rapidly becoming standard of care; however, there is a paucity of literature regarding indications and outcomes of TMR in the pediatric population. We present 2 cases of pediatric patients who sustained amputations and the relevant challenges associated with TMR in their cases. One is a 7-year-old patient who developed severe phantom and residual limb pain after a posttraumatic above-knee amputation. He failed pharmacologic measures and underwent TMR. He obtained complete relief of his symptoms and is continuing to do well 1.5 years postoperatively. The other is a 2-year-old boy with bilateral wrist and below-knee amputations as sequelae of sepsis. TMR was not performed because the patient never demonstrated evidence of phantom limb pain or symptomatic neuroma formation. We use these 2 cases to explore the challenges particular to pediatric patients when considering treatment with TMR, including capacity to report pain, risks of anesthesia, and cortical plasticity. These issues will be critical in determining how TMR will be applied to pediatric patients.


2021 ◽  
pp. 193864002110027
Author(s):  
Shannon I. Kuruvilla ◽  
Christine V. Schaeffer ◽  
Minton T. Cooper ◽  
Brent R. DeGeorge

Background Despite multiple surgical modalities available for the management of Morton’s neuroma, complications remain common. Targeted muscle reinnervation (TMR) has yet to be explored as an option for the prevention of recurrence of Morton’s neuroma. The purpose of the present investigation was to determine the consistency of the relevant foot neurovascular and muscle anatomy and to demonstrate the feasibility of TMR as an option for Morton’s neuroma. Methods The anatomy of 5 fresh-tissue donor cadaver feet was studied, including the course and location of the medial and lateral plantar nerves (MPNs and LPNs), motor branches to abductor hallucis (AH) and flexor digitorum brevis (FDB), as well as the course of sensory plantar digital nerves. Measurements for the locations of the muscular and sensory branches were taken relative to landmarks including the navicular tuberosity (NT), AH, FDB, and the third metatarsophalangeal joint (third MTPJ). Results The mean number of nerve branches to FDB identified was 2. These branch points occurred at an average of 8.6 cm down the MPN or LPN, 9.0 cm from the third MTPJ, 3.0 cm distal to AH distal edge, and 4.8 cm from the NT. The mean number of nerves to AH was 2.2. These branch points occurred at an average of 6.3 cm down the MPN, 11.9 cm from the third MTPJ, 0.8 cm from the AH distal edge, and 3.8 cm from the NT. Conclusions Recurrent interdigital neuroma, painful scar, and neuropathic pain are common complications of operative management for Morton’s neuroma. Targeted muscle reinnervation is a technique that has demonstrated efficacy for the prevention and treatment of neuroma, neuropathic pain, and phantom limb pain in amputees. Herein, we have described the neuromuscular anatomy for the application of TMR for the management of Morton’s neuroma. Target muscles, including the AH and FDB, have consistent innervation patterns in the foot, and consequently, TMR represents a viable option to consider for the management of recalcitrant Morton’s neuroma. Levels of Evidence: V


2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Matthew Wilcox ◽  
Liane Dos Santos Canas ◽  
Rikin Hargunani ◽  
Tom Tidswell ◽  
Hazel Brown ◽  
...  

2021 ◽  
Vol 9 (12) ◽  
pp. e3986
Author(s):  
Giovanna R. Pires ◽  
Whitney D. Moss ◽  
Laurel D. Ormiston ◽  
Christopher M. Baschuk ◽  
Shaun D. Mendenhall

2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Matthew Wilcox ◽  
Liane Dos Santos Canas ◽  
Rikin Hargunani ◽  
Tom Tidswell ◽  
Hazel Brown ◽  
...  

AbstractThe development of outcome measures that can track the recovery of reinnervated muscle would benefit the clinical investigation of new therapies which hope to enhance peripheral nerve repair. The primary objective of this study was to assess the validity of volumetric Magnetic Resonance Imaging (MRI) as an outcome measure of muscle reinnervation by testing its reproducibility, responsiveness and relationship with clinical indices of muscular function. Over a 3-year period 25 patients who underwent nerve transfer to reinnervate elbow flexor muscles were assessed using intramuscular electromyography (EMG) and MRI (median post-operative assessment time of 258 days, ranging from 86 days pre-operatively to 1698 days post- operatively). Muscle power (Medical Research Council (MRC) grade) and Stanmore Percentage of Normal Elbow Assessment (SPONEA) assessment was also recorded for all patients. Sub-analysis of peak volitional force (PVF), muscular fatigue and co-contraction was performed in those patients with MRC > 3. The responsiveness of each parameter was compared using Pearson or Spearman correlation. A Hierarchical Gaussian Process (HGP) was implemented to determine the ability of volumetric MRI measurements to predict the recovery of muscular function. Reinnervated muscle volume per unit Body Mass Index (BMI) demonstrated good responsiveness (R2 = 0.73, p < 0.001). Using the temporal and muscle volume per unit BMI data, a HGP model was able to predict MRC grade and SPONEA with a mean absolute error (MAE) of 0.73 and 1.7 respectively. Muscle volume per unit BMI demonstrated moderate to good positive correlations with patient reported impairments of reinnervated muscle; co- contraction (R2 = 0.63, p = 0.02) and muscle fatigue (R2 = 0.64, p = 0.04). In summary, volumetric MRI analysis of reinnervated muscle is highly reproducible, responsive to post-operative time and demonstrates correlation with clinical indices of muscle function. This encourages the view that volumetric MRI is a promising outcome measure for muscle reinnervation which will drive advancements in motor recovery therapy.


2021 ◽  
Vol 9 (11) ◽  
pp. e3931
Author(s):  
Nikhil Agrawal ◽  
Sigurast Olafsson ◽  
Brent B. Pickrell ◽  
Marilyn Heng ◽  
Ian L. Valerio ◽  
...  

Author(s):  
Alexandra Junn ◽  
Jacob Dinis ◽  
Alvaro Reategui ◽  
Shirley Liu ◽  
Adnan Prsic

Author(s):  
Mr Norbert Venantius Kang ◽  
Mr Alexander Woollard ◽  
Miss Dominika Antonina Michno ◽  
Mr Yazan Al-Ajam ◽  
Miss Jaclyn Tan ◽  
...  

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