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1.
J Vasc Surg ; 2024 May 08.
Artículo en Inglés | MEDLINE | ID: mdl-38723911

RESUMEN

BACKGROUND: Polyvascular disease is strongly associated with increased risk of cardiovascular morbidity and mortality. However, its prevalence in patients undergoing carotid and lower extremity surgical revascularization and its impact on outcomes are unknown. METHODS: The Vascular Quality Initiative was queried for carotid endarterectomy (CEA) or infrainguinal lower extremity bypass (LEB), 2013-2019. Polyvascular disease was defined as presence of atherosclerotic occlusive disease in more than one arterial bed: carotid, coronary, and infrainguinal. Primary outcomes were (1) composite perioperative myocardial infarction (MI) or death and (2) 5-year survival. Patient characteristics and perioperative outcomes were evaluated using the χ2 test and multivariable logistic regression. Survival was analyzed using Kaplan-Meier method and Cox proportional hazards multivariable models. RESULTS: Polyvascular disease was identified in 47% of CEA (39.0% in 2 arterial beds, 7.6% in 3 arterial beds; n = 93,736) and 47% of LEB (41.0% in 2 arterial beds, 5.7% in 3 arterial beds; n = 25,223). For both CEA and LEB, patients with polyvascular disease had more comorbidities including hypertension, congestive heart disease, chronic obstructive pulmonary disease, smoking, diabetes mellitus, and end-stage renal disease (P < .0001). Perioperative MI/death rates increased with increasing number of vascular beds affected following CEA (0.9% in 1 bed vs 1.5% in 2 beds vs 2.7% in 3 beds; P < .001) and LEB (2.2% in 1 bed vs 5.3% in 2 beds vs 6.6% in 3 beds; P < .001). Polyvascular disease was associated independently with perioperative MI/death after CEA (odds ratio, 1.59; 95% confidence interval [CI], 1.40-1.81;P < .0001) and LEB (odds ratio, 1.78; 95% CI, 1.52-2.08; P < .0001). Five-year survival was decreased in patients with polyvascular disease after CEA (82% in 3 beds vs 88% in 2 beds vs 92% in 1 bed; P < .01) and LEB (72% in 3 beds vs 75% in 2 beds vs 84% in 1 bed; P < .01) in a dose-dependent manner, with the lowest 5-year survival observed in those with three arterial beds involved. Polyvascular disease was independently associated with 5-year mortality after CEA (hazard ratio, 1.33; 95% CI, 1.24-1.40; P = .0001) and LEB (hazard ratio, 1.30; 95% CI, 1.20-1.41; P = .0001). CONCLUSIONS: Polyvascular disease is common in patients undergoing CEA and LEB and is associated with a higher risk of perioperative MI/death and decreased long-term survival. After revascularization, patients with polyvascular disease should be considered for more aggressive cardioprotective medications and closer follow-up.

2.
J Vasc Surg ; 73(2): 675-681, 2021 02.
Artículo en Inglés | MEDLINE | ID: mdl-32535153

RESUMEN

OBJECTIVE: Financial relationships between vascular surgeons and industry are essential to the development and adoption of innovative technology. However, these relationships may establish competing interests. Our objective was to describe publicly available financial transactions between industry and academic vascular surgeons. METHODS: Academic vascular surgeons were identified and characterized on the basis of publicly available data correlated with Accreditation Council for Graduate Medical Education and Association of American Medical Colleges data to identify academic practice settings. Vascular surgeons were linked to Open Payments data for 2017 as reported by the Centers for Medicare & Medicaid Services. Univariate and nonparametric tests were used for analysis. RESULTS: Of 1158 academic vascular surgeons identified, 997 (86%) received industry payments totaling $8,548,034. Overall, the median of total payments received was $814 (interquartile range [IQR], $124-$2863). The top paid decile of vascular surgeons received $29,645 (IQR, $16,128-$61,701). Payments to the top decile accounted for 81% of all payments. Payments did not vary by academic rank but did vary by sex, with male vascular surgeons (n = 954) receiving $889 (IQR, $146-$3217) vs female vascular surgeons (n = 204) receiving $467 (IQR, $87-$1533; P = .002). By leadership role, division chiefs received the highest median payment amount ($1571; IQR, $368-$11,281) compared with department chairs ($424; IQR, $56-$2698) and vascular surgeons without leadership role ($769; IQR, $117-$2592; P = .002). Differences in payments were also seen on the basis of U.S. census region: Northeast, $571 (IQR, $90-2462); Midwest, $590 (IQR, $75-$2364); South, $1085 (IQR, $241-$3405); and West, $1044 (IQR, $161-$4887; P = .001). The most common categories of payments were food and beverage (paid to 85% of all vascular surgeons), travel and lodging (35%), and consulting fees (13%). Among the top decile of vascular surgeons, median payments exceeded $10,000 for three categories: consulting fees, compensation, and honoraria. Payments were made by 178 distinct entities with median total payments of $286 (IQR, $70-$6285). The three top entities paid a total of $5,004,061, which accounted for 59% of all payments. Payments from at least one of the top three entities reached 76% of vascular surgeons. CONCLUSIONS: Most academic vascular surgeons receive publicly reported industry payments that are paid by a limited number of entities, typically for food and beverage or travel and lodging. The top 10% of vascular surgeons received higher median payment amounts, totaling 81% of all industry payments. Vascular surgeons should be aware of publicly reported payment information and the potential for conflicts of interest.


Asunto(s)
Apoyo Financiero , Donaciones , Sector de Atención de Salud/tendencias , Cirujanos/tendencias , Procedimientos Quirúrgicos Vasculares/tendencias , Centers for Medicare and Medicaid Services, U.S. , Conflicto de Intereses/economía , Revelación , Femenino , Sector de Atención de Salud/economía , Humanos , Masculino , Estudios Retrospectivos , Cirujanos/economía , Estados Unidos , Procedimientos Quirúrgicos Vasculares/economía
3.
Ann Vasc Surg ; 74: 63-72, 2021 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-33508459

RESUMEN

BACKGROUND: It is recommended that patients with ≥50% carotid artery stenosis undergo surveillance imaging and atherosclerotic risk reduction medical therapies, regardless of whether revascularization is performed. The objective of this study was to determine rates of adherence to these recommended measures and to identify risk factors for nonadherence. METHODS: A retrospective analysis was performed of all carotid duplex ultrasound (DUS) from 2016 to 2017 at a single institution. Patients with unilateral or bilateral ≥50% carotid stenosis were included. Primary outcomes were rates and timing of surveillance imaging and medication regimen. Patient and study characteristics were compared using univariate and multivariable analyses. A subgroup analysis of patients with a new finding of carotid stenosis was also performed. RESULTS: Carotid stenosis >50% was detected in 340 patients. Overall, 182 patients (54%) had follow-up imaging (median 261 days [IQR 166-366]) and 158 patients (46%) had no imaging follow-up (NIFU). NIFU patients had similar rates of aspirin use (86% vs. 88%, P = 0.6) and tobacco cessation counseling (71% vs. 71%, P = 0.8) but had less statin use (85% vs. 94%, P = 0.01) compared to those with imaging follow-up. Subsequent carotid revascularization was more common in patients with imaging follow-up (18% vs. 3%, P < 0.001). NIFU patients were less likely to have Medicare or commercial insurance (54% vs. 75%, P < 0.001). The indication for DUS in NIFU patients, compared to those in follow up, was less commonly neurologic symptoms (11% vs. 14%), more commonly other clinical findings (35% vs. 16%), and more commonly as work up before nonvascular surgery (25% vs. 4%, P < 0.001), respectively. NIFU rates decreased with increasing degree of carotid stenosis. Prior carotid intervention, prior DUS, or DUS ordered by a vascular surgeon were characteristics associated with imaging follow-up (P < 0.05 for all). In a subgroup of 160 patients with new carotid stenosis, a majority (64%) had NIFU and statin use was lower in these patients (82% vs. 96%, P = 0.007). On multivariable analysis, preop indication was predictive of NIFU (odds ratio [OR] 8.1 [95% confidence interval, CI 2.5-26.4], P < 0.001) whereas protective factors included: 70-80% stenosis (OR 0.33 [95% CI 0.14-0.76], P = 0.01), study ordered by vascular surgeon (OR 0.40 [95% CI 0.19-0.83], P = 0.01), and Medicare/commercial insurance (OR 0.36 [95% CI 0.2-0.66], P = 0.001). CONCLUSIONS: Nearly half of patients found to have ≥50% carotid stenosis on DUS had no imaging follow-up; these patients were less likely to be on recommended statin therapy. The benefits of nonrevascularization-based treatments for carotid disease require adherence to therapy. Forgoing surveillance imaging in patients with hemodynamically significant carotid stenosis should be a shared decision between provider and patient and does not obviate the need for medical therapies.


Asunto(s)
Estenosis Carotídea/diagnóstico por imagen , Cooperación del Paciente/estadística & datos numéricos , Anciano , Estenosis Carotídea/tratamiento farmacológico , Femenino , Humanos , Inhibidores de Hidroximetilglutaril-CoA Reductasas/uso terapéutico , Masculino , Análisis Multivariante , Gravedad del Paciente , Estudios Retrospectivos , Ultrasonografía Doppler Dúplex , Espera Vigilante
4.
J Palliat Med ; 27(1): 39-46, 2024 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-37976143

RESUMEN

Background: Practicing physicians require serious illness communication (SIC) skills to ensure high-quality, humanistic care for patients and families as they face life-changing medical decisions. However, a majority of U.S. medical schools do not require formal training in SIC and fail to provide students deliberate practice before graduation. The Massachusetts Medical Schools' Collaborative was created to ensure that students receive foundational SIC training in undergraduate medical education. This Collaborative developed a curriculum-mapping tool to assess SIC at four medical schools. Objective: We aimed to understand existing educational activities across four medical schools and identify opportunities to build longitudinal, developmentally based curricular threads in SIC. Design: From July 2019 to April 2021, faculty, staff, and medical students assessed current educational activities related to five core competencies in SIC, adapted for students from national competencies for palliative medicine fellows, using a curriculum mapping tool. Measurements: The group selected 23 keywords and collected metrics to describe the timing, instruction and assessment for each school's educational activities. Results: On average, there were only 40 hours of required curricula in SIC over four years. Over 80% of relevant SIC hours occurred as elective experiences, mostly during the postclerkship phase, with limited capacity in these elective experiences. Only one school had SIC educational activities during the clerkship phase when students are developing clinical competencies. Assessment methods focused on student participation, and no school-assessed clinical performance in the clerkship or postclerkship phase. Conclusions: Medical schools are failing to consistently train and ensure basic competency in effective, compassionate SIC. Curriculum mapping allows schools to evaluate their current state on a particular topic such as SIC, ensure proper assessment, and evaluate curricular changes over time. Through the deliberate inclusion of SIC competencies in longitudinal curriculum design, we can fill this training gap and create best practices in undergraduate medical education.


Asunto(s)
Educación de Pregrado en Medicina , Humanos , Educación de Pregrado en Medicina/métodos , Facultades de Medicina , Curriculum , Massachusetts , Comunicación
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