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1.
Port J Card Thorac Vasc Surg ; 31(1): 53-55, 2024 May 13.
Article in English | MEDLINE | ID: mdl-38743519

ABSTRACT

INTRODUCTION: Minimally invasive repair of pectus carinatum (MIRPC) has been performed using the Abramson technique in which the bar that compresses the sternum is fixed with steel wires on the ribs. A 14-year-old patient underwent to a MIRPC using a sandwich technique in which two metallic bars fixed with bridges were implanted below the sternum under thoracoscopic vision, and another bar in a subcutaneous tunnel was implanted above. This technique has the potential to avoid specific problems related to the original technique like loosening of support for correction (broken wire), avoidance of induction of pectus excavatum or subcutaneous tissue adhesion.


Subject(s)
Pectus Carinatum , Humans , Pectus Carinatum/surgery , Adolescent , Male , Minimally Invasive Surgical Procedures/methods , Minimally Invasive Surgical Procedures/instrumentation , Thoracoscopy/methods , Thoracoscopy/instrumentation , Sternum/surgery , Sternum/abnormalities , Bone Wires , Treatment Outcome
2.
Ann Card Anaesth ; 27(1): 1-2, 2024 Jan 01.
Article in English | MEDLINE | ID: mdl-38722113
3.
J Cardiothorac Surg ; 19(1): 289, 2024 May 14.
Article in English | MEDLINE | ID: mdl-38745239

ABSTRACT

INTRODUCTION: Deep sternal wound infection (DSWI) after midline sternotomy of cardiac surgery is a challenging complication that affects the outcome of surgery. This study aims to assess the clinical effectiveness of the antibiotic-loaded bone cement fixation technique combined with bilateral pectoralis major muscle flaps tension-free management in the treatment of DSWI. METHODS: We retrospectively analyzed 5 patients with DSWI who underwent antibiotic-loaded bone cement combined with bilateral pectoralis major muscle flaps for chest wall reconstruction after sternotomy for cardiac surgery in a tertiary hospital in China from January 2020 to December 2021. The clinical and follow-up data were retrospectively analyzed. RESULTS: All patients had no perioperative mortalities, no postoperative complications, 100% wound healing, and an average hospital stay length of 24 days. The follow-up periods were from 6 to 35 months (mean 19.6 months). None of the cases showed wound problems after initial reconstruction using antibiotic-loaded bone cement combined with bilateral pectoralis major muscle flaps. CONCLUSIONS: We report our successful treatment of DSWI, using antibiotic-loaded bone cement fixation technique combined with bilateral pectoralis major muscle flaps tension-free management. The clinical and follow-up results are favorable.


Subject(s)
Anti-Bacterial Agents , Bone Cements , Pectoralis Muscles , Sternotomy , Surgical Flaps , Surgical Wound Infection , Humans , Male , Sternotomy/adverse effects , Anti-Bacterial Agents/therapeutic use , Anti-Bacterial Agents/administration & dosage , Retrospective Studies , Bone Cements/therapeutic use , Pectoralis Muscles/surgery , Middle Aged , Surgical Wound Infection/surgery , Surgical Wound Infection/drug therapy , Female , Aged , Cardiac Surgical Procedures/methods , Sternum/surgery , Plastic Surgery Procedures/methods
4.
Kyobu Geka ; 77(4): 288-293, 2024 Apr.
Article in Japanese | MEDLINE | ID: mdl-38644177

ABSTRACT

The treatment of traumatic rib fractures and sternal fractures have focused on pain and respiratory management, and conservative treatment has been recommended. Recently, however, a number of case series from abroad have been reported and demonstrated the usefulness of surgical stabilization of rib fractures (SSRF) and sternal fractures (SSSF). We have experienced seven cases of SSRF and two cases of SSSF at International University Health and Welfare Narita Hospital and Atami Hospital. Based on our experienced cases, we have outlined the preoperative evaluation, indication for surgery, timing of surgery, surgical techniques, and postoperative course. Of these nine cases, the clinical course of two cases of SSRF and one case of SSSF were detailly presented. The surgical indications and techniques for traumatic rib fractures and sternal fractures vary from institution to institution, and there is no single optimal treatment. We hope that the accumulation of cases, and discussions will help to build a higher quality evidence for surgical treatment of thoracic trauma in Japan.


Subject(s)
Rib Fractures , Sternum , Humans , Rib Fractures/surgery , Sternum/surgery , Sternum/injuries , Male , Middle Aged , Female , Adult , Aged , Fractures, Bone/surgery
5.
Ann Card Anaesth ; 27(2): 169-174, 2024 Apr 01.
Article in English | MEDLINE | ID: mdl-38607883

ABSTRACT

ABSTRACT: Sternal wound complications following sternotomy need a multidisciplinary approach in high-risk postoperative cardiac surgical patients. Poorly controlled pain during surgical management of such wounds increases cardiovascular stress and respiratory complications. Multimodal analgesia including intravenous opioids, non-opioid analgesics, and regional anesthesia techniques, like central neuraxial blocks and fascial plane blocks, have been described. Pecto-intercostal fascial plane block (PIFB), a novel technique, has been effectively used in patients undergoing cardiac surgery. Under ultrasound (US) guidance PIFB is performed with the aim of depositing local anesthetic between two superficial muscles, namely the pectoralis major muscle and the external intercostal muscle. The authors report a series of five cases where US-guided bilateral PIFB was used in patients undergoing sternal wound debridement. Patients had excellent analgesia intraoperatively as well as postoperatively for 24 hours with minimal requirement of supplemental analgesia. None of the patients experienced complications due to PIFB administration. The authors concluded that bilateral PIFB can be effectively used as an adjunct to multimodal analgesia with general anesthesia and as a sole anesthesia technique in selected cases of sternal wound debridement.


Subject(s)
Analgesia , Anesthesia, Conduction , Humans , Pain Management , Sternum/surgery , Pain
7.
J Cardiothorac Surg ; 19(1): 269, 2024 Apr 30.
Article in English | MEDLINE | ID: mdl-38689350

ABSTRACT

BACKGROUND: There are various reconstructive methods after total sternectomy. Reproducibility is scarce due to overall small patient numbers. Therefore we present a standardized, interdisciplinary approach for thoracic and plastic surgery. METHODS: Four patients underwent interdisciplinary chest wall reconstruction with STRATOS® titanium bars and myocutaneous vastus lateralis muscle free flap in our center. RESULTS: All patients reported chest wall stability after reconstruction. They reported good quality of life, no dyspnea, prolonged pain or impairment in lung function from rigid reconstruction. FEV1/FVC was overall better after surgery. Secondary wound healing was not impaired and there was no implant defect in follow up. CONCLUSIONS: We recommend an interdisciplinary surgical approach in chest wall reconstruction after total sternectomy. The combination of rigid reconstruction with titanium bars and a myocutaneous vastus lateralis muscle free flap renders excellent results in patient satisfaction and is objectifiable via spirometry.


Subject(s)
Plastic Surgery Procedures , Sternum , Thoracic Wall , Humans , Thoracic Wall/surgery , Plastic Surgery Procedures/methods , Male , Sternum/surgery , Middle Aged , Aged , Female , Quality of Life , Myocutaneous Flap/transplantation
8.
Article in Chinese | MEDLINE | ID: mdl-38664030

ABSTRACT

Objective: To investigate the application effects of armor chest straps in patients with sternal dehiscence after repair surgery. Methods: This study was a retrospective cohort study. The 11 patients who were admitted to the First Affiliated Hospital of Air Force Medical University (hereinafter referred to as the hospital) from March 2020 to March 2021 and used conventional chest straps after sternal dehiscence repair surgery were included in conventional chest strap group. The 12 patients who were admitted to the hospital from April 2021 to March 2022 and used armor chest straps after sternal dehiscence repair surgery were included in armor chest strap group. A special team for sternal dehiscence repair was set up, and the nurses in charge in the team instructed the patients in 2 groups on the correct abdominal breathing method, and the members of the surgical team performed the personalized surgery and wore the corresponding chest straps for the patients in 2 groups. The abdominal breathing frequency and chest breathing frequency on the first day after surgery were recorded. The pain intensity at 6, 24, 48, and 72 h after surgery was self-rated by the patients using numerical rating scale. The time of the first active cough and the time of wound healing after surgery were recorded. At postoperative suture removal, the cutting length of sutures induced by respiratory exercise was recorded. Whether there were complications such as redness, swelling, and exudation in flaps within 2 weeks after surgery were recorded, whether there were complications such as wound dehiscence or infection during follow-up of 3-12 months were recorded, and the incidence proportion of postoperative complications was calculated. At 6 months after surgery, the patients' scar status was evaluated by the Vancouver scar scale. Results: The abdominal breathing frequency of patients in armor chest strap group was (16.3±1.2) times/min on the first day after surgery, which was significantly higher than (5.3±1.4) times/min in conventional chest strap group (t=20.00, P<0.05), and the chest breath-ing frequency was (1.2±0.8) times/min, which was significantly lower than (12.4±1.5) times/min in conventional chest strap group (t=22.36, P<0.05). The pain intensity scores of patients in armor chest strap group at 6, 24, 48, and 72 h after surgery were significantly lower than those in conventional chest strap group (with t values of 15.07, 14.70, 13.66, and 11.03, respectively, P<0.05). The time of the first active cough and the time of wound healing after surgery of patients in armor chest strap group were significantly sooner than those in conventional chest strap group (with t values of 5.51 and 8.90, respectively, P<0.05). At postoperative suture removal, the cutting length of sutures induced by respiratory exercise of patients in conventional chest strap group was 2.0 (0, 5.0) mm, which was significantly longer than 2.0 (1.0, 2.0) mm in armor chest strap group (Z=4.10, P<0.05). There was no statistically significant difference in the incidence proportion of postoperative complications of patients between the 2 groups (P>0.05). At 6 months after surgery, the scar score of patients in armor chest strap group was 4.1±1.4, which was significantly lower than 5.6±1.4 in conventional chest strap group (t=2.71, P<0.05). Conclusions: The application of armor chest strap in patients with sternal dehiscence after repair surgery can increase the abdominal breathing frequency, reduce the wound cutting force, effectively relieve postoperative pain, increase the first active cough and wound healing speed, and alleviate postoperative scar proliferation, achieving good application effect.


Subject(s)
Surgical Wound Dehiscence , Humans , Retrospective Studies , Surgical Wound Dehiscence/epidemiology , Surgical Wound Dehiscence/etiology , Sternum/surgery , Female , Male , Postoperative Complications/epidemiology , Postoperative Complications/etiology , Adult
9.
Sci Rep ; 14(1): 9690, 2024 04 27.
Article in English | MEDLINE | ID: mdl-38678140

ABSTRACT

Despite evidence suggesting the benefit of prophylactic regional antibiotic delivery (RAD) to sternal edges during cardiac surgery, it is seldom performed in clinical practice. The value of topical vancomycin and gentamicin for sternal wound infections (SWI) prophylaxis was further questioned by recent studies including randomized controlled trials (RCTs). The aim of this systematic review and meta-analysis was to comprehensively assess the safety and effectiveness of RAD to reduce the risk of SWI.We screened multiple databases for RCTs assessing the effectiveness of RAD (vancomycin, gentamicin) in SWI prophylaxis. Random effects meta-analysis was performed. The primary endpoint was any SWI; other wound complications were also analysed. Odds Ratios served as the primary statistical analyses. Trial sequential analysis (TSA) was performed.Thirteen RCTs (N = 7,719 patients) were included. The odds of any SWI were significantly reduced by over 50% with any RAD: OR (95%CIs): 0.49 (0.35-0.68); p < 0.001 and consistently reduced in vancomycin (0.34 [0.18-0.64]; p < 0.001) and gentamicin (0.58 [0.39-0.86]; p = 0.007) groups (psubgroup = 0.15). Similarly, RAD reduced the odds of SWI in diabetic and non-diabetic patients (0.46 [0.32-0.65]; p < 0.001 and 0.60 [0.44-0.83]; p = 0.002 respectively). Cumulative Z-curve passed the TSA-adjusted boundary for SWIs suggesting adequate power has been met and no further trials are needed. RAD significantly reduced deep (0.60 [0.43-0.83]; p = 0.003) and superficial SWIs (0.54 [0.32-0.91]; p = 0.02). No differences were seen in mediastinitis and mortality, however, limited number of studies assessed these endpoints. There was no evidence of systemic toxicity, sternal dehiscence and resistant strains emergence. Both vancomycin and gentamicin reduced the odds of cultures outside their respective serum concentrations' activity: vancomycin against gram-negative strains: 0.20 (0.01-4.18) and gentamicin against gram-positive strains: 0.42 (0.28-0.62); P < 0.001. Regional antibiotic delivery is safe and effectively reduces the risk of SWI in cardiac surgery patients.


Subject(s)
Anti-Bacterial Agents , Antibiotic Prophylaxis , Gentamicins , Randomized Controlled Trials as Topic , Surgical Wound Infection , Vancomycin , Humans , Surgical Wound Infection/prevention & control , Anti-Bacterial Agents/administration & dosage , Anti-Bacterial Agents/therapeutic use , Antibiotic Prophylaxis/methods , Vancomycin/administration & dosage , Gentamicins/administration & dosage , Gentamicins/therapeutic use , Sternum/surgery , Sternum/microbiology , Cardiac Surgical Procedures/adverse effects
10.
Iran J Med Sci ; 49(4): 268-271, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38680226

ABSTRACT

Extensive chest wall defects occur in 28% of all sternal resection cases and are a major challenge in thoracic surgery. These cases are generally considered "critical defects" requiring primary or secondary reconstruction using various types of flaps, mesh repairs, bone autografts, or endoprosthesis. The past decade witnessed rapid advances in the application of personalized endoprostheses in thoracic surgery. Surgeons began to use carbon or titanium grafts for personalized sternum replacement. The main advantages of these implants are superior cosmetic effect, biocompatibility, and low risk of infection. Herein, we present a case of a 55-year-old patient with an indication for extended sternum resection due to metastatic thyroid cancer. The patient underwent extended sternum resection, followed by the implantation of a personalized microporous titanium sternum equipped with graspers for atraumatic rib fixation.


Subject(s)
Sternum , Titanium , Humans , Middle Aged , Titanium/therapeutic use , Sternum/surgery , Prostheses and Implants/standards , Male , Plastic Surgery Procedures/methods , Plastic Surgery Procedures/instrumentation , Thyroid Neoplasms/surgery
11.
J Wound Care ; 33(Sup4): S22-S24, 2024 Apr 01.
Article in English | MEDLINE | ID: mdl-38573948

ABSTRACT

Radical sternectomy with sternal reconstruction using synthetic mesh or titanium plates has been described before with excellent results. However, radical removal of the sternum without reconstruction is a rare surgical treatment for complicated deep sternal wound infections (DSWI). The long-term outcome following this radical operation is not well-known due to the limited number of cases in the literature. We report on a patient 10 years after a radical sternectomy for DSWI who presented with shortness of breath. We highlight some of the anatomical and physiological changes the chest cavity may undergo and the fact that this patient had a near normal quality of life in the 10 years following the sternectomy.


Subject(s)
Cardiac Surgical Procedures , Osteomyelitis , Humans , Cardiac Surgical Procedures/adverse effects , Quality of Life , Surgical Wound Infection/etiology , Retrospective Studies , Coronary Artery Bypass/adverse effects , Sternum/surgery , Osteomyelitis/surgery , Osteomyelitis/complications
12.
Am J Nurs ; 124(4): 48-54, 2024 Apr 01.
Article in English | MEDLINE | ID: mdl-38511712

ABSTRACT

LOCAL PROBLEM: Sternal wound infections (SWIs), whether superficial or deep, are associated with increased morbidity, mortality, and costs. From 2016 to 2017, our facility saw a 50% decrease in SWIs among patients undergoing cardiothoracic surgery with sternotomy. From 2017 to 2018, however, we identified a 33% increase in SWIs, prompting us to address our cardiac nurses' sternal wound care education and practice. PURPOSE: The purpose of our quality improvement (QI) project was to identify opportunities for improvement in postoperative sternal incision care and to implement evidence-based processes to reduce the incidence of SWIs among cardiothoracic surgery patients. METHODS: A literature review was performed to identify interventions focused on evidence-based SWI reduction. During the first quarter of 2019, our postoperative incision care guidelines were revised and released to staff, a new surgical wound cleansing product was supplied, and RN education was provided. Cardiac nurses were surveyed in April 2019 to identify any remaining knowledge and practice deficits and to assess their adherence to the new guidelines. The survey responses helped us to further improve our nurse education. We also provided periodic nurse reeducation and enhanced patient and family education. All such interventions were implemented by the end of June 2019. RESULTS: Between January and June 2019, we had one SWI. From July 2019 through December 2020, an 18-month period, we experienced zero SWIs. Although beginning in 2021, we saw an increase in SWIs-four in 2021 and five in 2022-our incidence rates remain below 0.5% and we continue to work toward an SWI goal of zero. CONCLUSION: This QI project identified opportunities for improvement, implemented evidence-based strategies for wound care and education, and successfully achieved a zero SWI rate for a period of 18 months.


Subject(s)
Cardiac Surgical Procedures , Sternotomy , Humans , Sternotomy/adverse effects , Cardiac Surgical Procedures/adverse effects , Sternum/surgery , Surgical Wound Infection/epidemiology , Surgical Wound Infection/prevention & control , Incidence , Retrospective Studies , Treatment Outcome
13.
J Plast Reconstr Aesthet Surg ; 91: 302-311, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38442510

ABSTRACT

BACKGROUND: Many options are available for reconstruction after deep sternal wound infections. However, these options have not been critically appraised. The aim of this systematic review and meta-analysis was to assess the existing evidence on sternal rewiring versus flap reconstruction and pectoralis major muscle flaps (PMFs) versus greater omental flaps (GOFs). METHODS: A systematic review and meta-analysis was performed. CENTRAL, MEDLINE and EMBASE were searched. Outcomes of interest included mortality, treatment failure and length of hospital stay (LOS). RESULTS: Fourteen studies were included. Nine studies compared flaps to rewiring, reporting on 618 patients. Patients treated with flaps had significantly lower mortality compared with patient treated with rewiring (Risk ratio [RR] 0.42, 95% confidence interval [CI]: 0.23-0.77, P < 0.01). Flap patients had significantly lower treatment failure compared with those who were treated with rewiring (RR 0.22, 95% CI: 0.14-0.37, P < 0.01). No statistically significant differences were observed in LOS between patients treated with flaps compared those treated with rewiring (standard mean difference -0.84, 95% CI: -1.91 to 0.24, P = 0.13). Five studies compared PMF with GOF, reporting on 599 patients. No statistically significant differences were found in mortality (RR 0.63, 95% CI: 0.24-1.68, P = 0.36), LOS (standard mean difference -14.52, 95% CI: -42.00 to 12.96, P = 0.30) or treatment failure (RR 1.37, 95% CI: 0.31-6.07, P = 0.68) in patients treated with PMF compared with patients treated with GOF. CONCLUSIONS: Flap-based reconstruction demonstrated improved mortality and treatment outcomes compared to sternal rewiring. However, no significant differences were observed in outcomes between the PMF- and GOF-based reconstructions.


Subject(s)
Pectoralis Muscles , Surgical Wound Infection , Humans , Surgical Wound Infection/surgery , Pectoralis Muscles/transplantation , Surgical Flaps , Sternum/surgery , Treatment Outcome , Retrospective Studies
14.
Indian J Med Microbiol ; 48: 100562, 2024.
Article in English | MEDLINE | ID: mdl-38508492

ABSTRACT

Gordonia bronchialis is an aerobic gram-positive bacilli and also weakly acid fast. It requires a long incubation time and extensive biochemical reactions for identification. Therefore, use of broad-range polymerase chain reaction (PCR) for amplification of genes such as 16S rRNA or hsp65 followed by sequencing or advanced techniques like MALDI-TOF MS is needed for identification. Here, we present a case of persistent sternal wound infection following open heart surgery, caused by G. bronchialis in a 58 years old male, identified using MALDI-TOF MS-based system. The patient improved with oral Cefpodoxime 200 mg BD for four weeks.


Subject(s)
Actinomycetales Infections , Sternum , Surgical Wound Infection , Humans , Male , Middle Aged , Surgical Wound Infection/microbiology , Surgical Wound Infection/drug therapy , Surgical Wound Infection/diagnosis , Sternum/microbiology , Sternum/surgery , Actinomycetales Infections/microbiology , Gordonia Bacterium/genetics , Gordonia Bacterium/isolation & purification , Anti-Bacterial Agents/therapeutic use , Cardiac Surgical Procedures/adverse effects , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization , Recurrence , RNA, Ribosomal, 16S/genetics
15.
Scand Cardiovasc J ; 58(1): 2330349, 2024 Dec.
Article in English | MEDLINE | ID: mdl-38500294

ABSTRACT

Objectives: Analyses of incidence and time required to heal sternal wound infections after heart surgery performed via a median sternotomy between 2020 and 2022. Results: Superficial wound infections (SWI) were five times more common (2.7%) than mediastinitis (0.5%) among 2693 patients. The median time between the operation and diagnosis of SWI was 26 (interquartile range [IQR] 15-33) days vs. 16 (IQR 9-25) days for mediastinitis (p = .12). Gram-negative bacteria caused 44% of the 85 infections. Sternal wound infection correlated to higher body mass index, female sex, smoking, diabetes mellitus, previous myocardial infarction, coronary artery bypass grafting, use of internal mammary graft, and re-entry for postoperative bleeding. Eight of 59 patients (13.6%) with sternal wound infections had bilateral mammary grafts, compared to 102 of 1191 patients (8.6%) without wound infections (p = .28). Negative pressure wound therapy was always used to treat mediastinitis and applied in 63% of patients with SWI. Two of 13 patients with mediastinitis (15%) and none of 72 patients with SWI died within 90 days after the operation. The median time until the wound healed was 1.9 (IQR 1.3-3.7) months after SWI vs. 1.7 (IQR 1.3-5.3) months after mediastinitis (p = .63). Six patients (7%) required longer than one year to treat the infection. Conclusions: Postoperative sternal wound infections usually appeared several weeks after surgery and were associated with factors as high body mass index, diabetes mellitus and coronary artery bypass. SWI were more common than mediastinitis and often required negative pressure wound therapy and similar treatment time as mediastinitis.


Subject(s)
Diabetes Mellitus , Mediastinitis , Female , Humans , Incidence , Mediastinitis/diagnosis , Mediastinitis/epidemiology , Retrospective Studies , Risk Factors , Sternum/surgery , Surgical Wound Infection/diagnosis , Surgical Wound Infection/epidemiology , Surgical Wound Infection/therapy , Male
16.
J Surg Oncol ; 129(6): 1063-1072, 2024 May.
Article in English | MEDLINE | ID: mdl-38311813

ABSTRACT

BACKGROUND AND OBJECTIVES: As one of the cutting-edge advances in the field of reconstruction, three-dimensional (3D) printing technology has been constantly being attempted to assist in the reconstruction of complicated large chest wall defects. However, there is little literature assessing the treatment outcomes of 3D printed prostheses for chest wall reconstruction. This study aimed to analyze the surgical outcomes of 3D custom-made prostheses for the reconstruction of oncologic sternal defects and to share our experience in the surgical management of these rare and complex cases. METHODS: We summarized the clinical features of the sternal tumor in our center, described the surgical techniques of the application of 3D customized prosthesis for chest wall reconstruction, and analyzed the perioperative characteristics, complications, overall survival (OS), and recurrence-free survival of patients. RESULTS: Thirty-two patients with the sternal tumor who underwent chest wall resection were identified, among which 13 patients used 3D custom-made titanium implants and 13 patients used titanium mesh for sternal reconstruction. 22 cases were malignant, and chondrosarcoma is the most common type. The mean age was 46.9 years, and 53% (17/32) of the patients were male. The average size of tumor was 6.4 cm, and the mean defect area was 76.4 cm2. 97% (31/32) patients received R0 resection. Complications were observed in 29% (9/32) of patients, of which wound infection (22%, 7/32) was the most common. The OS of the patients was 72% at 5 years. CONCLUSION: We demonstrated that with careful preoperative assessment, 3D customized prostheses could be a viable alternative for complex sternal reconstruction.


Subject(s)
Bone Neoplasms , Plastic Surgery Procedures , Printing, Three-Dimensional , Sternum , Thoracic Wall , Humans , Male , Middle Aged , Plastic Surgery Procedures/methods , Plastic Surgery Procedures/instrumentation , Sternum/surgery , Female , Thoracic Wall/surgery , Thoracic Wall/pathology , Bone Neoplasms/surgery , Bone Neoplasms/pathology , Adult , Aged , Prostheses and Implants , Prosthesis Design , Follow-Up Studies , Retrospective Studies , Chondrosarcoma/surgery , Chondrosarcoma/pathology , Surgical Mesh , Thoracic Neoplasms/surgery , Thoracic Neoplasms/pathology
17.
J Cardiothorac Surg ; 19(1): 93, 2024 Feb 14.
Article in English | MEDLINE | ID: mdl-38355514

ABSTRACT

BACKGROUND: Deep sternal wound infection (DSWI) following open heart surgery is associated with excessive morbidity and mortality. Contemporary DSWI risk prediction models aim at identifying high-risk patients with varying complexity and performance characteristics. We aimed to optimize the DSWI risk factor set and to identify additional risk factors for early postoperative detection of patients prone to DSWI. METHODS: Single-centre retrospective analysis of patients with isolated multivessel coronary artery disease undergoing myocardial revascularization at Paracelsus Medical University Nuremberg between 2007 and 2022 was performed to identify risk factors for DSWI. Three data sets were created to examine preoperative, intraoperative, and early postoperative parameters, constituting the "Baseline", the "Improved Baseline" and the "Extended" models. The "Extended" data set included risk factors that had not been analysed before. Univariable and stepwise forward multiple logistic regression analyses were performed for each respective set of variables. RESULTS: From 5221 patients, 179 (3.4%) developed DSWI. The "Extended" model performed best, with the area under the curve (AUC) of 0.80, 95%-CI: [0.76, 0.83]. Pleural effusion requiring intervention, postoperative delirium, preoperative hospital stay > 24 h, and the use of fibrin sealant were new independent predictors of DSWI in addition to age, Diabetes Mellitus on insulin, Body Mass Index, peripheral artery disease, mediastinal re-exploration, bilateral internal mammary harvesting, acute kidney injury and blood transfusions. CONCLUSIONS: The "Extended" regression model with the short-term postoperative complications significantly improved DSWI risk discrimination after surgical revascularization. Short preoperative stay, prevention of postoperative delirium, protocols reducing the need for evacuation of effusion and restrictive use of fibrin sealant for sternal closure facilitate DSWI reduction. TRIAL REGISTRATION: The registered retrospective study was registered at the study centre and approved by the Institutional Review Board of Paracelsus Medical University Nuremberg (IRB-2019-005).


Subject(s)
Emergence Delirium , Surgical Wound Infection , Humans , Retrospective Studies , Surgical Wound Infection/etiology , Emergence Delirium/complications , Fibrin Tissue Adhesive , Coronary Artery Bypass/methods , Risk Factors , Sternum/surgery , Risk Assessment
18.
J Cardiothorac Surg ; 19(1): 51, 2024 Feb 04.
Article in English | MEDLINE | ID: mdl-38311780

ABSTRACT

BACKGROUND: Deep sternal wound infection (DSWI) constitutes a serious complication after coronary artery bypass grafting (CABG) surgery. The aim of this study is to evaluate the dose-response relationship between glycated hemoglobin (HbA1c) level and the risk of DSWI after CABG. METHODS: PubMed, Scopus, and Cochrane Library databases were searched to identify potentially relevant articles. According to rigorous inclusion and exclusion criteria, fourteen studies including 15,570 patients were enrolled in our meta-analysis. Odds ratio (OR) with 95% confidence intervals (CIs) was used as the summary statistic. The robust-error meta-regression model was used to synthesize the dose-response relationship. RESULTS: Our meta-analysis shows that among patients undergoing CABG, preoperative elevated HbA1c was associated with the risk of developing DSWI (OR = 2.67, 95% CI 2.00-3.58) but with low prognostic accuracy (diagnostic OR = 2.70, 95% CI 1.96-3.73; area under the curve = 0.66, 95% CI 0.62-0.70) for predicting postoperative DSWI. Subgroup analyses showed the relationship became nonsignificant in patients without diabetes and studies adopting lower HbA1c thresholds. Dose-response analysis showed a significant nonlinear (p = 0.03) relationship between HbA1c and DSWI, with a significantly increased risk of DSWI when HbA1c was > 5.7%. CONCLUSIONS: An elevated HbA1c level of > 5.7% was related to a higher risk of developing DSWI after CABG, and the risk increased as the HbA1c level grew. The association between HbA1c and DSWI was nonsignificant among nondiabetic patients while significant among diabetic patients.


Subject(s)
Coronary Artery Bypass , Diabetes Mellitus , Humans , Glycated Hemoglobin , Risk Factors , Coronary Artery Bypass/adverse effects , Surgical Wound Infection/etiology , Sternum/surgery , Retrospective Studies
19.
Article in Chinese | MEDLINE | ID: mdl-38418173

ABSTRACT

Deep sternal wound infection (DSWI) is one of the potential and catastrophic complications after cardiac surgery. Despite the use of smaller incisions, routine application of prophylactic antibiotic and optimized blood glucose management, the incidence rate of DSWI still fluctuates between 1% and 5%. The early symptoms and signs of DSWI are not often obvious, making it too late for the clinicians to intervene in the process. Once left untreated, DSWI carries a very high mortality rate. Therefore, early prevention, diagnosis, and appropriate management of DSWI are crucial in preventing its progression to life-threatening outcomes. Considering the clinical severity and treatment complexity of DSWI, this article focuses on preventive experiences in each stage of DSWI, and reconstructive strategies after DSWI happens, raising attention among the medical community regarding DSWI.


Subject(s)
Cardiac Surgical Procedures , Plastic Surgery Procedures , Humans , Sternotomy/adverse effects , Surgical Wound Infection/diagnosis , Sternum/surgery , Cardiac Surgical Procedures/adverse effects
20.
Article in Chinese | MEDLINE | ID: mdl-38418176

ABSTRACT

Objective: To investigate the perioperative management of wounds associated with secondary sternal osteomyelitis and/or mediastinitis after sternotomy, and to evaluate its clinical effects. Methods: This study was a retrospective observational study. From January 2017 to December 2022, 36 patients with wounds associated with secondary sternal osteomyelitis and/or mediastinitis after sternotomy who were conformed to the inclusion criteria were admitted to the Burn Center of PLA of the First Affiliated Hospital of Air Force Medical University, including 23 males and 13 females, aged 25 to 81 years. Preparation for surgery was made. For patients with suspected retrosternal mediastinal abscess cavity, all cancellous bone of the unhealed sternum was bitten off to fully expose the retrosternal mediastinum, remove the source of infection and granulation tissue, and to fill the sternum defect with flipped unilateral pectoralis major muscle. For patients who had no retrosternal mediastinal infection but had fresh granulation tissue in unhealed sternal wounds, the necrotic tissue and a small amount of necrotic sternum were palliatively removed, and bilateral pectoralis major muscles were advanced and abutted to cover the sternal defect. After the skin in the donor area was closed by tension-relieving suture, continuous vacuum sealing drainage was performed, and continuous even infusion and lavage were added 24 hours later. The thorax was fixed with an armor-like chest strap, the patients were guided to breathe abdominally, with both upper limbs fixed to the lateral chest wall using a surgical restraint strap. The bacterial culture results of wound exudation specimens on admission were recorded. The wound condition observed during operation, debridement method, muscle flap covering method, intraoperative bleeding volume, days of postoperative infusion and lavage, lavage solution volume and changes on each day, and postoperative complications and wound healing time were recorded. After discharge, the wound healing quality, thorax shape, and mobility functions of thorax and both upper limbs were evaluated during follow-up. The stability and closure of sternum were observed by computed tomography (CT) reexamination. Results: On admission, among 36 patients, 33 cases were positive and 3 cases were negative in bacterial culture results of wound exudation specimens. Intraoperative observation showed that 26 patients had no retrosternal mediastinal infection but had fresh granulation tissue in unhealed sternal wounds, palliative debridement was performed and bilateral pectoralis major muscles were advanced and abutted to cover the defect. In 10 patients with suspected retrosternal mediastinal abscess cavity, the local sternum was completely removed by bite and the defect was covered using flipped unilateral pectoralis major muscle. During the operation, one patient experienced an innominate vein rupture and bleeding of approximately 3 000 mL during mediastinal exploration, and the remaining patients experienced bleeding of 100-1 000 mL. Postoperative infusion and lavage were performed for 4-7 days, with a lavage solution volume of 3 500-4 500 mL/d. The lavage solution gradually changed from dark red to light red and finally clear. Except for 1 patient who had suture rupture caused by lifting the patient under the armpit during nursing on the 3rd day after surgery, the wounds of the other patients healed smoothly after surgery, and the wound healing time of all patients was 7-21 days. Follow-up for 3 to 9 months after discharge showed that the patient who had suture rupture caused by armpit lifting died due to multiple organ failure. In 1 patient, the armor-like chest strap was removed 2 weeks after surgery, and the shoulder joint movement was not restricted, resulting in local rupture of the suture, which healed after dressing change. The wounds of the remaining patients healed well, and they resumed their daily life. The local skin of patient's pectoralis major muscle defect was slightly sunken and lower than that of the contralateral thorax in the patients undergoing treatment of pectoralis major muscle inversion, while no obvious thoracic deformity was observed in patients undergoing treatment with pectoralis major muscle propulsion and abutment. The chest and upper limb movement in all patients were slightly limited or normal. CT reexamination results of 10 patients showed that the sternum was stable, the local sternum was closed or covered completely with no lacuna or defects. Conclusions: Once the wound associated with secondary sternal osteomyelitis and/or mediastinitis after sternotomy is formed, individualized and precise debridement should be performed as soon as possible, different transfer ways of pectoralis major muscle flap should be chosen to cover the defect, and postoperative continuous infusion and lavage together with strict thorax and shoulder joint restraint and immobilization should be performed. This treatment strategy can ensure good wound healing without affecting the shape and function of the donor area.


Subject(s)
Mediastinitis , Osteomyelitis , Male , Female , Humans , Sternotomy/adverse effects , Mediastinitis/etiology , Abscess/complications , Sternum/surgery , Osteomyelitis/etiology
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