The CFNG-gracilis remains our first choice for facial paralysis reconstruction which can achieve natural and spontaneous smile. XI- or V3-gracilis can be selected as a save procedure when CFNG-gracilis fails. The V3-gracilis is indicated in some specific conditions, such as bilateral Möbius syndrome, older patients (age, >70 years), or patients with malignant disease.
Summary:
The presence of online learning resources has grown tremendously in recent years. They provide powerful and yet easily accessible means of learning and sharing knowledge. Online learning resources now encompass all aspects of medicine, and microsurgery is no exception. International Microsurgery Club is a closed, invitation-only group based on the Facebook social media platform. It was initiated on May 6, 2016, with the primary objectives of providing a convenient forum for discussing challenging cases, sharing valuable resources, and providing opportunities for research collaboration. The membership of International Microsurgery Club has grown to over 8700 at 2 years’ existence, and continues to expand. International Microsurgery Club has become one of the largest online platforms for global microsurgeons. Here, the authors share their experience on how to establish a successful online platform for medical education.
Background:
Surgical strategy to treat incomplete brachial plexus injury with palsies of the shoulder and elbow by using proximal nerve graft/transfer or distal nerve transfer is still debated. The aim of this study was to compare both strategies with respect to the recovery of elbow flexion.
Methods:
One hundred forty-seven patients were enrolled: 76 patients underwent reconstruction using proximal nerve graft/transfer, and 71 patients underwent reconstruction using distal nerve transfer. All patients were evaluated preoperatively and postoperatively to assess the recovery rate and muscle strength of elbow flexion. Shoulder abduction and hand grip power were also recorded to assess any concomitant postoperative changes between the two methods.
Results:
The best recovery rate for functional elbow flexion (p = 0.006) and the fastest recovery to M3 strength (p < 0.001) were found in the double fascicular transfer group. However, recovery of shoulder abduction with proximal nerve graft/transfer was significantly better than with distal nerve transfer (80.3 percent versus 66.2 percent in shoulder abduction ≥60 degrees; and 56.6 percent versus 38.0 percent in shoulder abduction ≥90 degrees). A significant decrease in grip strength between the operative and nonoperative hands was also found in patients undergoing distal nerve transfer (p = 0.001).
Conclusions:
Proximal nerve graft/transfer offers more accurate diagnosis and proper treatment to restore shoulder and elbow function simultaneously. Distal nerve transfer can offer more efficient elbow flexion. Combined, both strategies in primary nerve reconstruction are especially recommended when there is no healthy or not enough donor nerve available.
CLINICAL QUESTION/LEVEL OF EVIDENCE:
Therapeutic, III.
Background Robotic-assisted techniques are a tremendous revolution in modern surgery, and the advantages and indications were well discussed in different specialties. However, the use of robotic technique in plastic and reconstructive surgery is still very limited, especially in the field of peripheral nerve reconstruction. This study aims to identify current clinical applications for peripheral nerve reconstruction, and to evaluate the advantages and disadvantages to establish potential uses in the future.
Methods A review was conducted in the literatures from PubMed focusing on currently published robotic peripheral nerve intervention techniques. Eligible studies included related animal model, cadaveric and human studies. Reviews on robotic microsurgical technique unrelated to peripheral nerve intervention and non-English articles were excluded. The differences of wound assessment and nerve management between robotic-assisted and conventional approach were compared.
Results Total 19 studies including preclinical experimental researches and clinical reports were listed and classified into brachial plexus reconstruction, peripheral nerve tumors management, peripheral nerve decompression or repair, peripheral nerve harvesting, and sympathetic trunk reconstruction. There were three animal studies, four cadaveric studies, eight clinical series, and four studies demonstrating clinical, animal, or cadaveric studies simultaneously. In total 53 clinical cases, only 20 (37.7%) cases were successfully approached with minimal invasive and intervened robotically; 17 (32.1%) cases underwent conventional approach and the nerves were intervened robotically; 12 (22.6%) cases converted to open approach but still intervened the nerve by robot; and 4 (7.5%) cases failed to approach robotically and converted to open surgery entirely.
Conclusion Robotic-assisted surgery is still in the early stage in peripheral nerve surgery. We believe the use of the robotic system in this field will develop to become popular in the future, especially in the fields that need cooperation with other specialties to provide the solutions for challenging circumstances.
Background: Endoscopic thoracic sympathectomy (ETS) may provide a permanent surgical cure for primary palmar hyperhidrosis. Unfortunately, some patients can experience intensive post-operative compensatory sweating (CS) that ultimately impairs quality of life. Sympathetic nerve reconstruction (SNR) may be used to counteract severe post-operative CS through the restoration of sympathetic pathways. In this case series, we describe the technical feasibility of a robot-assisted micro-peripheral nerve reconstruction method for achieving SNR in patients with post-operative CS. Methods: Between January 2017 and May 2019, seven cases with severe post-operative CS underwent robot-assisted SNR using a sural nerve graft. We report the pre-operative assessment, the surgical technique, and the clinical outcomes of the study patients.Results: The study sample consisted of five men and two women (median age: 41 years). Primary hyperhidrosis affected the face in one case and the palms in six patients. The median time between ETS and SNR was 20 years. All robotic surgery procedures were successfully accomplished, and neither conversion to open surgery nor the creation of additional ports were required. Sural nerve grafts (median length: 8 cm) were used in all cases, and the median operating time was 10.5 h. There was no operative mortality, with the median length of post-operative hospital stay being 4 days. One patient developed a post-operative pneumothorax-which was treated conservatively. Conclusions: Our case series demonstrates the safety and clinical feasibility of microsurgical robot-assisted sural nerve grafting for achieving SNR in patients with post-operative CS.
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