Background: A large number of treatments for peri-implantitis are available, but their cost-effectiveness remains uncertain. This study evaluates the cost-effectiveness of preventing and treating peri-implantitis.
Methods: A Markov model was constructed that followed each implant over 20 years. Supportive implant therapy (SIT) for managing peri-implant mucositis and preventing development of peri-implantitis was either provided or not. Risk of peri-implantitis was assumed to be affected by SIT and the patient's risk profile. If peri-implantitis occurred, 11 treatment strategies (non-surgical or surgical debridement alone or combined with adjunct therapies) were compared. Treatments and risk profiles determined disease progression. Modeling was performed based on systematically collected data. Primary outcomes were costs and proportion of lost implants, as assessed via Monte Carlo microsimulations.
Results: Not providing SIT and performing only non-surgical debridement was both least costly and least effective. The next best (more costly and effective) option was to provide SIT and perform surgical debridement (additional 0.89 euros per 1% fewer implants lost). The most effective option included bone grafts, membranes, and laser treatment (56 euros per 1%). For patients at high risk, the cost-effectiveness of SIT increased, whereas in low-risk groups, a cost-optimized strategy was cost-effective.
Conclusions: Although clinical decision-making will be guided mainly by clinical condition, cost-effectiveness analyses might add another perspective. Based on these findings, an unambiguous comparative effectiveness ranking was not established. However, cost-effectiveness was predominantly determined by provision of SIT and initial treatment costs. Transferability of these findings to other healthcare systems needs further confirmation.
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http://dx.doi.org/10.1902/jop.2015.150071 | DOI Listing |
Best Pract Res Clin Anaesthesiol
March 2024
Department of Thoracic Surgery, Barts Thorax Centre, St Bartholomew's Hospital, West Smithfield, London, EC1A 7BE, UK. Electronic address:
This review documents the importance of postoperative interventions that accelerate the functional recovery of the thoracic surgical patient. Enhanced recovery after surgery (ERAS) pathways aim to mitigate the harmful surgical stress response. Improvements to the entire patient pathway, by removing unnecessary care elements while introducing evidence-based interventions, have synergistic effects.
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March 2024
Department of Anesthesiology and Critical Care Medicine, Memorial Sloan Kettering Cancer Center, Department of Anesthesia and Critical Care Medicine, 1275 York Avenue, New York, NY, 10028, USA. Electronic address:
The objectives of this minireview are two-fold. The first is to discuss the evolution of opioid analgesia in perioperative medicine in the context of thoracic non-cardiac surgery. Current standard-of-care, aiming to optimize analgesia and limit undesirable side effects, is discussed in the context of multimodal analgesia, specifically enhanced recovery after thoracic surgery pathways.
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March 2024
Department of Anesthesiology, Columbia University, 622 W 168th St, New York, 10032, NY, United States. Electronic address:
Effective pain control is crucial in the management of thoracic surgical patients since it reduces postoperative morbidity and promotes recovery. These patients have co-existing respiratory diseases and impaired pulmonary function, which may be further impaired by surgery. With the adoption of minimally invasive surgical techniques and an emphasis on enhancing recovery after surgery, multimodal analgesia has gained popularity as a way to reduce perioperative opioid use and its associated adverse events such as respiratory depression.
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March 2024
Department of Surgery, Universitat de València, 46010 València, Spain; Ivano-Frankivsk National Medical University, 76018 Ivano-Frankivsk, Ukraine.
Health care workers are at risk of infection from aerosolization of respiratory secretions, droplet and contact spread. This has gained great importance after the COVID19 pandemic. Intra-operative aerosol-generating procedures are arguably unavoidable in the routine provision of thoracic anesthesia.
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September 2024
Joan Kirner Women's and Children's Sunshine Hospital, Western Health, St Albans, Australia. Electronic address:
Cardiovascular disease is a leading cause of morbidity and mortality for pregnant patients. A significant portion of cardiac morbidity and mortality is preventable and related to poor or delayed recognition of clinical warning signs and oversights in management. The establishment of pregnancy heart teams facilitates multidisciplinary planning to improve management of people with cardiovascular disease.
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