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Findings indicate the implementation was successful (P less then .05).BACKGROUND Increasing in popularity, social media provides powerful marketing and networking tools for private practice plastic surgeons. The authors sought to examine social media utilization by academic plastic surgery training programs. METHODS Facebook, Instagram, and Twitter were queried for plastic surgery training program, program director, and chief/chair accounts. Training program posts were categorized as educational, operative, social, informational, self-promotional, visiting lecturer, research-related, and other. Factors influencing total number of followers were analyzed including number of accounts followed, frequency, total number, and types of posts as well as duration of account. Other variables included geographic location, 2018 to 2019 Doximity residency ranking, and US News and World Report rankings of affiliated hospital systems and medical schools. Social media accounts were analyzed using Kruskal-Wallis, Wilcoxon rank sum, and regression analysis. RESULTS Facebook is the most popular s = 0.02). CONCLUSIONS Similar to its adoption by private practice plastic surgery, social media use in academic plastic surgery is growing exponentially. Now, over half of residency programs have Instagram accounts. Program leaders are using Facebook and Instagram primarily for personal use and Twitter for professional use. Programs affiliated with a top-ranked hospital or ranked highly by Doximity have more followers on social media.INTRODUCTION Periprosthetic joint infection (PJI) is a severe complication after a total knee replacement that is primarily associated with soft tissue defects. Finding an appropriate therapy for PJI is a major challenge because of the lack of guidelines and research comparing treatment options. METHODS In this study, we retrospectively compared 78 patients who had a knee prosthetic infection within a mean follow-up period of 24 months. Group A received a soft tissue coverage in addition to orthopedic surgical therapy with or without a component replacement (CR) of the prosthesis. Group B received the same orthopedic treatment without plastic surgery for soft tissue coverage. RESULTS Only 21% of the patients in group A received a CR compared with 70% in group B (P = 0.0001). In group A, 83% did not have a recurrent infection, and in group B, 57% of the patients had no further infection and regained joint function (P = 0.0376). In group A, only 15% of the patients who received a CR had a significant complication within the follow-up period of 2 years, whereas in group B, 75% of patients exhibiting a major complication (P = 0.0048*). CONCLUSIONS Soft tissue coverage improves the outcome after PJI of the knee with soft tissue defects. Patients who simultaneously needed plastic surgery for defect coverage and orthopedic surgery for CR had the lowest number of complications overall. Based on the results of this study, a therapy algorithm could be identified considering the soft tissue defect grade leading to the lowest major complication rates and maximizing the outcome of knee prosthesis infection therapies.Individuals with gender dysphoria often seek medical interventions, such as hormone treatment and surgery, to live as their identified gender. Cross-sex hormone therapy typically consists of various estrogen formulations which confer varying risks of venous thromboembolism (VTE). Currently, there is no standard practice by surgeons regarding the preoperative gender-affirming surgery (GAS) hormone regimen of male-to-female (MTF) patients to minimize thromboembolic postoperative complications. The aim of this review is to examine the current literature on VTE occurring in MTF transgender patients on cross-sex hormone therapy (CSHT) when undergoing various gender-affirming surgeries-facial feminization surgery (FFS), top surgery (TS), and bottom surgery (BS)-to understand how evidence-based recommendations regarding perioperative hormone regimens can be established to improve clinical outcomes. Within the past 25 years, 7 published studies have examined the incidence of VTE in MTF patients undergoing GAS proceduthe most optimal perioperative CSHT management plan on a case-by-case basis. Future studies are warranted to evaluate VTE risk based on patient age, type of surgery, operating time, prophylactic measures, follow-up time, and CSHT perioperative regimens.INTRODUCTION The reconstruction of defects in thoracic wall remains a challenge for plastic surgeons. Advances in surgical treatment of illnesses of thoracic wall have been fostering the treatment of lesions within more advanced levels. Consequently, larger and more complex defects are generated, demanding soft tissue covering and framework repair. OBJECTIVE The aim of this study was to report the experience in chest wall reconstruction and demographics of a tertiary cancer center. METHODS All patients submitted to thoracic wall reconstruction by the plastic surgery department from January 2012 to May 2018 in a tertiary cancer center were evaluated. RESULTS Thirty-two patients have undergone thoracic wall reconstruction. The majority of patients in our series were submitted to surgical treatment of locally advanced breast cancer (84.3%). The most common defect location was the right anterolateral region (65.6%). Selleckchem AZD-9574 The latissimus dorsi musculocutaneous flap was the most used in thoracic wall reconstructions. Three cases of thoracectomy with rib resection were reconstructed with methylmethacrylate and polypropylene surgical mesh associated with musculocutaneous flap. Four patients presented major complications, and 12 patients (37.5%) presented minor complications. There were no deaths related to procedures or instability of thoracic wall. Twenty-two patients presented progression of the disease, and 16 died due to the primary pathology. CONCLUSIONS Extended resection of the chest wall is associated in most cases with advanced disease, especially advanced breast cancer. Despite poor prognosis associated to locally advanced disease, it is imperative to perform chest wall reconstruction and allow the patient to continue adjuvant therapy (radiotherapy or chemotherapy) and improve quality of life.
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