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    University of Michigan School of Public Health

    院校
    202论文总数
    3,569引用总数

    The University of Michigan School of Public Health is one of the professional graduate schools of the University of Michigan. Located in Ann Arbor, Michigan, UM SPH is one of the oldest schools of public health in the country and is also considered one of the top schools focusing on health in the United States. Founded in 1941, the School of Public Health grew out of the University of Michigan's degree programs in public health, some of which date back to the 19th century. According to the US News & World Report's report on graduate programs, the University of Michigan School of Public Health was ranked as the #4 School of Public Health in the country and also had the #1 Healthcare Management program in the country in 2011.

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    Bhramar Mukherjee
    Bhramar Mukherjee
    Department of Biostatistics, School of Public Health, Yale University;Department of Biostatistics, University of Michigan
    论文:11引用:0H-index:0
    Kelly K. Ferguson
    Kelly K. Ferguson
    Department of Environmental Health Sciences, University of Michigan School of Public Health
    论文:5引用:0H-index:0
    Alejandra Cantoral
    Alejandra Cantoral
    Universidad Iberoamericana Ciudad de Mexico
    论文:5引用:0H-index:0
    Sung Kyun Park
    Sung Kyun Park
    Department of Epidemiology, School of Public Health, University of Michigan-Ann Arbor
    论文:5引用:0H-index:0
    Jennifer Weuve
    Jennifer Weuve
    School of Public Health, Boston University
    论文:4引用:0H-index:0
    William D. Travis
    William D. Travis
    Memorial Sloan Kettering Cancer Center
    论文:4引用:0H-index:0
    Rebecca J. Schmidt
    Rebecca J. Schmidt
    William Beaumont Hospital
    论文:4引用:0H-index:0
    Kevin Flaherty
    Kevin Flaherty
    University of Missouri
    论文:4引用:0H-index:0
    Thomas V. Colby
    Thomas V. Colby
    Mayo Clinic
    论文:4引用:0H-index:0

    论文(202)

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    1Electronic Cigarettes for Smoking Cessation
    Nicola Lindson,Jonathan Livingstone-Banks,Ailsa R Butler,Hayden McRobbie,Christopher R Bullen,Peter Hajek,Angela Difeng Wu,Rachna Begh,Annika Theodoulou, Claire Ma,Caitlin Notley,Nancy A Rigotti,

    RATIONALE:Electronic cigarettes (EC) are handheld electronic vaping devices that produce an aerosol by heating a liquid. People who smoke, healthcare providers, and regulators want to know if EC can help people quit smoking, and if they are safe to use for this purpose. This update was conducted as part of a living systematic review. OBJECTIVES:To examine the safety, tolerability, and effectiveness of EC for helping people who smoke tobacco achieve long-term smoking abstinence, in comparison to non-nicotine EC, other smoking cessation treatments, and no treatment. SEARCH METHODS:We searched the Cochrane Central Register of Controlled Trials (CENTRAL), MEDLINE, Embase, and PsycINFO to 1 January 2026, reference-checked, and contacted study authors. ELIGIBILITY CRITERIA:We included randomised controlled trials (RCTs) randomising people who smoked to an EC or control condition. Studies had to measure an eligible outcome. OUTCOMES:Critical outcomes were abstinence from smoking after at least six months, adverse events (AEs), and serious adverse events (SAEs). Important outcomes were biomarkers, toxicants/carcinogens, long-term study product use and long-term patterns of EC and combustible cigarette use. RISK OF BIAS:We used the RoB 1 tool to assess risk of bias for each study and GRADE to assess evidence certainty. SYNTHESIS METHODS:We followed standard Cochrane methods for screening and data extraction. Where appropriate, we pooled data using random-effects models to calculate risk ratios (RRs) with 95% confidence intervals (CI) for dichotomous outcomes apart from SAEs. For SAEs, we calculated risk differences (RD) and 95% CI. For continuous outcomes, we calculated mean differences (MD) or standardised mean differences (SMD) with 95% CIs. INCLUDED STUDIES:We included 80 completed RCTs, representing 29,861 participants. Nine of these RCTs were new to this update. We rated 12 included studies as being at low risk of bias, 41 at high risk, and the remainder at unclear risk overall. SYNTHESIS OF RESULTS:Nicotine EC result in increased quit rates compared to nicotine replacement therapy (NRT) (high-certainty evidence) (RR 1.61, 95% CI 1.23 to 2.12; I² = 55%; 11 studies, 4114 participants). In absolute terms, this might translate to an additional four quitters per 100 (95% CI 1 to 7 more). The proportion of participants experiencing AEs may be similar between groups (low-certainty evidence, limited by imprecision and inconsistency) (RR 0.95, 95% CI 0.72 to 1.24; I² = 72%; 8 studies, 3107 participants) and the proportion of participants experiencing SAEs is probably similar between groups (moderate-certainty evidence, limited by imprecision) (RD 0.01, 95% CI -0.01 to 0.02; I² = 0%; 10 studies, 4045 participants). Nicotine EC probably result in increased quit rates compared to non-nicotine EC (moderate-certainty evidence, limited by imprecision) (RR 1.34, 95% CI 1.05 to 1.69; I² = 0%; 7 studies, 1918 participants). In absolute terms, this might lead to an additional two quitters per 100 (95% CI 0 to 4 more). There is probably little to no difference in the proportion of participants experiencing AEs between these groups (moderate-certainty evidence, limited by imprecision) (RR 1.01, 95% CI 0.95 to 1.08; I² = 0%; 6 studies, 909 participants) and there may be similar proportions of SAEs (RD 0.00, 95% CI -0.01 to 0.01; I² = 0%; 11 studies, 1786 participants; low-certainty evidence downgraded due to very serious imprecision). Compared to behavioural support only or no support, quit rates may be higher for participants randomised to nicotine EC (low-certainty evidence due to risk of bias) (RR 1.75, 95% CI 1.39 to 2.20; I² = 13%; 11 studies, 7214 participants). In absolute terms, this represents an additional two quitters per 100 (95% CI 2 to 6 more). There was some evidence that people randomised to nicotine EC may be more likely to experience (non-serious) AEs (RR 1.22, 95% CI 1.00 to 1.49; I² = 58%; 11 studies, 2801 participants; very low-certainty evidence due to imprecision and risk of bias), but the evidence is uncertain. There was insufficient evidence to determine whether rates of SAEs differed between groups (RD 0.00, 95% CI -0.00 to 0.01; I² = 0%; 18 studies, 5032 participants; very low-certainty evidence downgraded due to imprecision and risk of bias). AUTHORS' CONCLUSIONS:There is high-certainty evidence that nicotine EC increase quit rates compared to NRT, and moderate-certainty evidence that they probably increase quit rates compared to EC without nicotine. Evidence comparing nicotine EC with behavioural support or no support also suggests benefit, but is less certain due to risk of bias inherent in the study designs. Overall incidence of SAEs was low across all study arms and there is now moderate-certainty evidence that SAE rates are similar when comparing nicotine EC with NRT. There was also no evidence of a difference in AEs between nicotine and non-nicotine EC nor between nicotine EC and NRT, but low-certainty evidence for increased AEs compared with behavioural support/no support. We did not detect evidence of serious short-term harm from nicotine EC, but longer, larger trials are needed to fully evaluate safety. The included studies tested regulated nicotine-containing EC; illicit products and/or products containing other active substances (e.g. tetrahydrocannabinol (THC)) may have different harm profiles. The main limitation of the evidence base remains imprecision for some comparisons. Further RCTs are underway. To ensure the review continues to provide up-to-date information, this is a living systematic review. We run and screen searches monthly, with the review updated when relevant new evidence becomes available. Please refer to the Cochrane Database of Systematic Reviews for the most recent version of this review. FUNDING:Cancer Research UK (PICCTR-2024/100012). The addition of new outcomes relating to vaping and smoking at six months or more was supported by the National Cancer Institute of the National Institutes of Health (NIH) and FDA Center for Tobacco Products (CTP) under Award Number 2U54CA229974. The content is solely the responsibility of the authors and does not necessarily represent the official views of the NIH or the Food and Drug Administration. The funders were not involved in the decision to submit for publication. REGISTRATION:Protocol (2012) available via DOI: 10.1002/14651858.CD010216 (updates to 2012 protocol available via https://osf.io/upgjc/overview.

    2026The Cochrane database of systematic reviews(2026)引用:47
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    2SeCuRE Pilot Trial: A Community-Engaged HIV Status-Neutral Microeconomic Intervention in the United States
    Kristi Gamarel,Larissa Jennings Mayo-Wilson, Ini-Abasi Ubong, Laura Jadwin-Cakmak, Wesley Correll-King, Dior’ Monro, Harmony Harris, Jeynce Poindexter, Chanel Riser, J. Stephenson, Lilianna Reyes,Torsten B. Neilands,

    Transgender women of color in the United States experience inequities across the HIV prevention and care continua shaped by intersectional oppression and economic marginalization. We evaluated the “Strengthening Community Responses to Economic Vulnerability” (SeCuRE) intervention, an HIV status-neutral, multicomponent program comprising financial assistance, peer-facilitated group sessions focused on economic empowerment, gender affirmation, community support, individualized mentorship, and microgrants, in a two-arm pilot mixed-methods randomized waitlist-controlled trial with transgender women of color in Detroit, Michigan. The intervention included 12 peer-led group sessions adapted from a prior microenterprise program and individualized mentoring with a microgrant. Primary outcomes were feasibility, acceptability, and fidelity. Enrollment was 97.5

    2026AIDS and Behavior(2026)引用:37
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    3Change in Practice Patterns over Time for Endocrine Therapy and Radiation Therapy in Women with Breast Cancer Age 65 and Older
    Aubrey Stickland, Xueting Tao, Kelley Kidwell,N. Lynn Henry

    In 2017, the National Comprehensive Cancer Center (NCCN) recommended omitting radiation therapy (RT) for women aged 70 + with stage 1, hormone receptor-positive breast cancer after lumpectomy. However, the optimal treatment remains uncertain given challenges with delivering endocrine therapy (ET) and RT. Females with hormone receptor positive, HER2 negative, clinically node negative breast cancer aged 65 + diagnosed 2012–2021 who underwent lumpectomy with or without axillary surgery at a single institution were included. The treatment groups of ET only, RT only, both ET and RT (ET/RT), and neither ET nor RT were compared by patient age, year of diagnosis, and recurrence rates. Fisher’s Exact Test was used to compare treatment groups, and competing risk analysis was used to examine recurrence rates. Of 383 patients analyzed, 28

    2026Breast Cancer Research and Treatment(2026)引用:28
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    4Serous Ovarian Cancer Following Opportunistic Bilateral Salpingectomy.
    Ramlogan Sowamber, Alice J Mei,Paramdeep Kaur, Julianne McLeod, Emily McKay, Alex Lukey, Jamie Bakkum-Gamez,Natalia Buza,Paul A Cohen, Kyle Devins,Rhonda Farrell,Christine Garcia,

    This cohort study evaluates the reduction in risk of high-grade serous carcinoma among women undergoing opportunistic bilateral salpingectomy in Canada.

    2026JAMA network open(2026)引用:2
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    5US Trends in Long-Term Opioid Therapy.
    Thuy D Nguyen, Kao-Ping Chua, Amy Jiao, Mark C Bicket,Amy Bohnert,Pooja Lagisetty

    This study assesses national trends in the prevalence of long-term opioid therapy and the characteristics of patients using data from a longitudinal prescription database containing prescriptions from US retail pharmacies.

    2026引用:1
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    合作机构(100)

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