Background
The Next Accreditation System (NAS) increases the focus on educational outcomes and meaningful evaluation of learners. This requires that key clinical faculty develop new assessment formats such as entrustable professional activities (EPAs).
Objectives
To build and develop milestone-based assessment tools supporting 5 EPAs for a hematology/oncology fellow continuity clinic, and to educate key clinical faculty regarding the Clinical Competency Committee (CCC) and the NAS.
Methods
Program directors from 2 hematology/oncology fellowship programs developed 5 EPAs for continuity clinic evaluation supported by milestone-based assessment. The program directors met to create a unified CCC charter. Key clinical faculty helped to develop a milestone-based evaluation of fellow continuity clinic through creation of 5 hematology/oncology-specific EPAs. Formal entrustment regarding EPAs was deliberated by the CCC.
Results
A total of 18 fellows were evaluated. Clinical Competency Committee deliberation at each institution took approximately 10 minutes per fellow for discussion and decision regarding entrustment for all 5 EPAs supporting continuity clinic. One-third of postgraduate year (PGY)–4s, 50% of PGY-5s, and 100% of PGY-6s were deemed competent in all 5 EPAs by the CCC.
Conclusions
All hematology/oncology trainees in San Antonio were evaluated using milestone-based assessment for continuity clinic, and entrustment decisions regarding 5 EPAs were made by the CCC. This project may provide other programs with a sound basis for adoption and further development of the next generation of evaluation tools at their institutions. Entrustable professional activities that are rotation specific should be used as a starting point for linking to the competencies, subcompetencies, and the reporting milestones.
Some people remain healthier throughout life than others but the underlying reasons are poorly understood. Here we hypothesize this advantage is attributable in part to optimal immune resilience (IR), defined as the capacity to preserve and/or rapidly restore immune functions that promote disease resistance (immunocompetence) and control inflammation in infectious diseases as well as other causes of inflammatory stress. We gauge IR levels with two distinct peripheral blood metrics that quantify the balance between (i) CD8+ and CD4+ T-cell levels and (ii) gene expression signatures tracking longevity-associated immunocompetence and mortality-associated inflammation. Profiles of IR metrics in ~48,500 individuals collectively indicate that some persons resist degradation of IR both during aging and when challenged with varied inflammatory stressors. With this resistance, preservation of optimal IR tracked (i) a lower risk of HIV acquisition, AIDS development, symptomatic influenza infection, and recurrent skin cancer; (ii) survival during COVID-19 and sepsis; and (iii) longevity. IR degradation is potentially reversible by decreasing inflammatory stress. Overall, we show that optimal IR is a trait observed across the age spectrum, more common in females, and aligned with a specific immunocompetence-inflammation balance linked to favorable immunity-dependent health outcomes. IR metrics and mechanisms have utility both as biomarkers for measuring immune health and for improving health outcomes.
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