56 research outputs found

    Improving Healthy Living Youth Development Program Outreach in Extension: Lessons Learned from the 4-H Health Rocks! Program

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    This article discusses a qualitative evaluation of the Florida 4-H Health Rocks! program aimed at youth alcohol, tobacco, and other drug use prevention. A questionnaire was distributed to Extension professionals across Florida to gain insight into the strengths and barriers they faced with programming. Programmatic strengths included targeting a significant issue, using experiential activities, building life skills, and emphasizing youth-adult partnerships. Major programmatic barriers included time constraints, unsuccessful recruitment of volunteers, and an inability to fulfill implementation requirements. Specific recommendations are proposed to Extension professionals in order to improve overall Extension programming

    The 4-H Health Rocks! Program in Florida: Outcomes on Youth Tobacco, Alcohol, and Other Substance Abuse Prevention

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    Youth tobacco, alcohol, and other substance abuse is a serious concern in the State of Florida, as well as across the nation. 4-H Health Rocks! is a positive youth development prevention program that utilizes experiential learning methods and youth-adult partnerships. The program and supporting curriculum were designed to foster personal and social skills to better equip adolescents to overcome pressures to participate in substance use. The purpose of this article is to describe the implementation of Health Rocks! in Florida and program evaluation including its impact on participants’ drug knowledge, drug beliefs and attitudes, and drug resistance skills. Program evaluation indicates that 4-H Health Rocks! resulted in statistically significant improvement in each of these categories for hundreds of youth reached in 2009-2012. The importance of program components in preventing and influencing adolescent substance abuse are discussed

    Data on the histological and immune cell response in the popliteal lymph node in mice following exposure to metal particles and ions

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    AbstractHip implants containing cobalt–chromium (CoCr) have been used for over 80 years. In patients with metal-on-metal (MoM) hip implants, it has been suggested that wear debris particles may contribute to metal sensitization in some individuals, leading to adverse reactions. This article presents data from a study in which the popliteal lymph node assay (PLNA) was used to assess immune responses in mice treated with chromium-oxide (Cr2O3) particles, metal salts (CoCl2, CrCl3, and NiCl2) or Cr2O3 particles with metal salts (“A preliminary evaluation of immune stimulation following exposure to metal particles and ions using the mouse popliteal lymph node assay” (B.E. Tvermoes, K.M. Unice, B. Winans, M. Kovochich, E.S. Fung, W.V. Christian, E. Donovan, B.L. Finley, B.L. Kimber, I. Kimber, D.J. Paustenbach, 2016) [1]). Data are presented on (1) the chemical characterization of TiO2 particles (used as a particle control), (2) clinical observations in mice treated with Cr2O3 particles, metal salts or Cr2O3 particles with metal salts, (3) PLN weight and weight index (WI) in mice treated with Cr2O3 particles, metal salts or Cr2O3 particles with metal salts, (4) histological changes in PLNs of mice treated with Cr2O3 particles, metal salts or Cr2O3 particles with metal salts, (5) percentages of immune cells in the PLNs of mice treated with Cr2O3 particles, metal salts or Cr2O3 particles with metal salts, and (6) percentages of proliferating cells in the PLNs of mice treated with Cr2O3 particles, metal salts or Cr2O3 particles with metal salts

    Characterizing Dynamic Changes in the Human Blood Transcriptional Network

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    Gene expression data generated systematically in a given system over multiple time points provides a source of perturbation that can be leveraged to infer causal relationships among genes explaining network changes. Previously, we showed that food intake has a large impact on blood gene expression patterns and that these responses, either in terms of gene expression level or gene-gene connectivity, are strongly associated with metabolic diseases. In this study, we explored which genes drive the changes of gene expression patterns in response to time and food intake. We applied the Granger causality test and the dynamic Bayesian network to gene expression data generated from blood samples collected at multiple time points during the course of a day. The simulation result shows that combining many short time series together is as powerful to infer Granger causality as using a single long time series. Using the Granger causality test, we identified genes that were supported as the most likely causal candidates for the coordinated temporal changes in the network. These results show that PER1 is a key regulator of the blood transcriptional network, in which multiple biological processes are under circadian rhythm regulation. The fasted and fed dynamic Bayesian networks showed that over 72% of dynamic connections are self links. Finally, we show that different processes such as inflammation and lipid metabolism, which are disconnected in the static network, become dynamically linked in response to food intake, which would suggest that increasing nutritional load leads to coordinate regulation of these biological processes. In conclusion, our results suggest that food intake has a profound impact on the dynamic co-regulation of multiple biological processes, such as metabolism, immune response, apoptosis and circadian rhythm. The results could have broader implications for the design of studies of disease association and drug response in clinical trials

    Application of a Health Literacy Framework to Explore Patients’ Knowledge of the Link between HPV and Cancer

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    The human papillomavirus (HPV) is a sexually transmitted infection and causes most oropharyngeal (e.g., throat) and anogenital (e.g., anal, cervical) cancers. Research indicates low knowledge about the link between HPV and cancer among the general population, and similar low knowledge of HPV among individuals diagnosed with HPV-associated cancers. This is important because HPV status can have implications for treatment, prognosis, and future sexual decisions. Using a health literacy framework, this study explored how patients diagnosed with HPV-associated cancers accessed, understood, appraised, and applied HPV information. We conducted 27 in-depth interviews with patients seeking care at a comprehensive cancer center; and data were analyzed using applied thematic analysis. Findings revealed that patients’ primary source of HPV information was medical providers (access); and many patients exhibited limited understanding of HPV and its role in their cancer diagnosis (understand). Most patients (17 of 27) did not mention HPV as the cause of their cancer. Many patients displayed difficulty connecting HPV with their lifestyles (appraise); and few discussed plans to engage in HPV prevention practices going forward (apply). Future research should focus on strategies to improve understanding of HPV which could increase vaccine uptake, reduce stigma, and enhance informed decision-making among HPV-associated cancer patients
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