scholarly journals Supporting medical innovation and entrepreneurship through curriculum-integrated information literacy instruction

2018 ◽  
Author(s):  
Alexander James Carroll ◽  
Shelby Hallman

This presentation will share the results of a longitudinal cohort study of undergraduate students matriculating through the UNC & NC State Joint Department of Biomedical Engineering. Over the last few years, students in this program have participated in an experimental, specialized information literacy training program aimed at preparing them to navigate the labyrinth of business hurdles associated with medical innovation and entrepreneurship. This longitudinal study, led by two librarians, sought to determine whether an intensive, specialized information literacy training program could introduce undergraduate biomedical engineering students to the complex environment surrounding innovative design in healthcare and medical entrepreneurship in order to improve their design projects. In addition to discussing our study’s results, we will share our lessons learned from conducting this study and some possible implications for professional practice. We will close with a discussion of the challenges involved in partnering with an academic department to conduct formal assessments of student learning, and by sharing practical strategies that other librarians can use to identify opportunities to build similar partnerships at their local institutions.Originally presented at the Triangle Research Libraries Network (TRLN) Annual Meeting 2018 in Durham, NC on August 20, 2018.

BMC Nursing ◽  
2021 ◽  
Vol 20 (1) ◽  
Author(s):  
Jamileh Farokhzadian ◽  
Somayeh Jouparinejad ◽  
Farhad Fatehi ◽  
Fatemeh Falahati-Marvast

Abstract Background One of the most important prerequisites for nurses’ readiness to implement Evidence-Based Practice (EBP) is to improve their information literacy skills. This study aimed to evaluate the impact of a training program on nurses’ information literacy skills for EBP in critical care units. Methods In this interventional study, 60 nurses working in critical care units of hospitals affiliated to Kerman University of Medical Sciences were randomly assigned into the intervention or control groups. The intervention group was provided with information literacy training in three eight-hour sessions over 3 weeks. Data were collected using demographic and information literacy skills for EBP questionnaires before and 1 month after the intervention. Results At baseline, the intervention and control groups were similar in terms of demographic characteristics and information literacy skills for EBP. The training program significantly improved all dimensions of information literacy skills of the nurses in the intervention group, including the use of different information resources (3.43 ± 0.48, p < 0.001), information searching skills and the use of different search features (3.85 ± 0.67, p < 0.001), knowledge about search operators (3.74 ± 0.14, p < 0.001), and selection of more appropriate search statement (x2 = 50.63, p = 0.001) compared with the control group. Conclusions Nurses can learn EBP skills and apply research findings in their nursing practice in order to provide high-quality, safe nursing care in clinical settings. Practical workshops and regular training courses are effective interventional strategies to equip nurses with information literacy skills so that they can apply these skills to their future nursing practice.


2017 ◽  
Author(s):  
Adam Beauchamp ◽  
Christine Murray

In Databrarianship: The Academic Data Librarian in Theory and Practice, edited by Linda Kellam and Kristi Thompson. Chicago: Association of College and Research Libraries, 2015.Undergraduate students often struggle when asked to locate, evaluate, and use data in their research, and librarians have an opportunity to support them as they learn data literacy skills. Much of the literature on data librarianship in this area focuses on data reference services, but there is a lack of scholarship and guidance on how to translate data reference expertise into effective teaching strategies. In this chapter, the authors will bridge that gap between data reference and information literacy instruction.


2020 ◽  
Author(s):  
Justin Schell ◽  
Meghan Sitar

Information literacy at the graduate level can happen at the intersection of research method education and mentorship into a disciplinary community of practice with its own traditions of inquiry, communication, and knowledge creation. Funded by the Institute for Museum and Library Services, the Library as Research Lab Project at the University of Michigan enables graduate students, academic librarians, and information science faculty to engage in a series of research activities together, illuminating tacit knowledge in information studies and librarianship, both as a discipline and as a profession. In the project, three interconnected labs pursue authentic research questions emerging from challenges faced by the Library while providing School of Information students with mentorship, new skills, and a fellowship stipend. A common curriculum across the labs includes research ethics, publishing, project management, and current issues in higher education research. Engaging with the frames of “Research as Inquiry” and “Scholarship as Conversation” from the Association of College and Research Libraries Framework for Information Literacy in Higher Education​, students also learn how to effectively discuss, iterate upon, and present their research activities to different audiences. At the end of the fellowship, students enter the profession with an understanding of complex challenges facing libraries and with new strategies for responding to ambiguity and pursuing new solutions through research. As we complete the final year of the grant, the librarians from the Design Thinking for Library Services Lab will reflect on lessons learned and share student perspectives as a way of discussing how similar initiatives might facilitate positive and critically engaged research projects at other institutions. Attendees will be able to describe strategies for developing similar environments in support of authentic research experiences and will be able to apply strategies documented in a mentoring handbook from the project in their own work.


2020 ◽  
Vol 15 (1) ◽  
pp. 238-241
Author(s):  
Kimberly MacKenzie

A Review of: Phillips, M., Fosmire, M., Turner, L., Petersheim, K., & Lu, J. (2019). Comparing the information needs and experiences of undergraduate students and practicing engineers. The Journal of Academic Librarianship, 45(1), 39-49. https://doi.org/10.1016/j.acalib.2018.12.004 Abstract Objective – To compare the levels of information literacy, needs, and challenges of undergraduate engineering students with those of practising engineers. Design – Electronic survey. Setting – Large land grant university in the Midwestern United States and multiple locations of a global construction machinery manufacturing company (locations in Asia Pacific, Europe, North America). Subjects – Engineering undergraduates and full-time engineers. Methods – Two voluntary online surveys distributed to (a) students in two undergraduate engineering technology classes and one mechanical engineering class; and (b) to engineers in an online newsletter. None of the questions on the survey were mandatory. Because the call for practising engineers generated a low response rate, direct invitations were sent in batches of 100 to randomly selected engineers from a list provided by the human resources department of the company participating in the study. The surveys were similar but not identical and included multiple choice, Likert scale, and short answer questions. Data analysis included two-sided unpaired sample t-tests (quantitative data) and deductive and inductive content analysis (qualitative data). Main Results – There were 63 students and 134 professional engineers among the respondents. Survey response rates were relatively low (24.3% for students; approximately 4.5% for employees). Students rated themselves higher overall and significantly higher than did engineers on the questions “know where to look for information” (students M = 5.3; engineers M = 4.2) and “identifying the most needed information” (students M = 5.5; engineers M = 4.8) (mean values reported on a 7-point scale). Neither group rated themselves highly on “reflecting on how to improve their performance next time” or “having a highly effective structure for organizing information,” though engineers in North America rated themselves significantly higher than those in Asia Pacific on organizing information, knowing where to look for information, and using information to make decisions. Both students and engineers reported often using Google to find information. The library was mentioned by one-half of engineers and one-third of students. Engineers reported consulting with peers for information and making more use of propriety information from within their companies, while students reported using YouTube videos and online forums, as well as news and social media. More than half of students (57%) reported having enough access to information resources, while 67% of engineers felt that they lacked sufficient access. The most common frustration for both groups was locating the information (45% of student responses; 71% of engineer responses). Students reported more frustration with evaluating information (17%) compared to engineers (9%). Conclusion – Engineering students and professional engineers report differences in their levels of confidence in finding information and differences in the complexity of the information landscape. Engineering librarians at the university level can incorporate this knowledge into information literacy courses to help prepare undergraduates for industry. Corporate librarians can use this information to improve methods to support the needs of engineers at all levels of employment.


2020 ◽  
Vol 22 (4) ◽  
pp. 263-280
Author(s):  
Cheyvuth Seng ◽  
May Kristine Jonson Jonson Carlon ◽  
Jeffrey Scott Cross

PurposeThis study is aimed at determining the effect of a short-term information literacy training activity on the self-efficacy of undergraduate students at province-based universities in Cambodia.Design/methodology/approachA three-week training intervention was administered to 461 undergraduate students at three province-based public universities in Cambodia. The participants answered an information literacy self-efficacy questionnaire before and after the intervention.FindingsThe students' level of information literacy self-efficacy has a low mean score of 2.23 on a five-point scale before the training. After the training, the score dramatically increased to 3.64 and was statistically significant (p-value < 0.001). This indicates that short-term information literacy self-efficacy training is an effective means to promote information literacy among students.Research limitations/implicationsThis research scope was limited to examine the effect of a short-term intervention on a particular population. Further improvements include analyzing the training effects over the long term, soliciting qualitative feedback from respondents, and gathering previous relevant training data.Practical implicationsThere is a need for a carefully designed curriculum to be implemented that focuses on introducing information and communication technology (ICT) while considering its potential application to research activity. To be able to make meaningful curriculum changes, there must be a systematic way of identifying the ICT needs that are most urgent among undergraduate students in province-based Cambodian universities.Originality/valueThis research focuses on implementing ICT training and measuring its effectiveness on Cambodian undergraduate students in province-based universities, a growing population that has immense potential in influencing the country's growth but whose information literacy self-efficacy remains largely understudied until now.


2016 ◽  
Vol 40 (3) ◽  
pp. 402-409 ◽  
Author(s):  
Ana L. Albarracín ◽  
Fernando D. Farfán ◽  
Marcos A. Coletti ◽  
Pablo Y. Teruya ◽  
Carmelo J. Felice

The major challenge in laboratory teaching is the application of abstract concepts in simple and direct practical lessons. However, students rarely have the opportunity to participate in a laboratory that combines practical learning with a realistic research experience. In the Biomedical Engineering career, we offer short and optional courses to complement studies for students as they initiate their Graduation Project. The objective of these theoretical and practical courses is to introduce students to the topics of their projects. The present work describes an experience in electrophysiology to teach undergraduate students how to extract cortical information using electrocorticographic techniques. Students actively participate in some parts of the experience and then process and analyze the data obtained with different signal processing tools. In postlaboratory evaluations, students described the course as an exceptional opportunity for students interested in following a postgraduate science program and fully appreciated their contents.


2013 ◽  
Vol 37 (2) ◽  
pp. 176-183 ◽  
Author(s):  
Regina K. Nelson ◽  
Naomi C. Chesler ◽  
Kevin T. Strang

Physiology is a core requirement in the undergraduate biomedical engineering curriculum. In one or two introductory physiology courses, engineering students must learn physiology sufficiently to support learning in their subsequent engineering courses and careers. As preparation for future learning, physiology instruction centered on concepts may help engineering students to further develop their physiology and biomedical engineering knowledge. Following the Backward Design instructional model, a series of seven concept-based lessons was developed for undergraduate engineering students. These online lessons were created as prerequisite physiology training to prepare students to engage in a collaborative engineering challenge activity. This work is presented as an example of how to convert standard, organ system-based physiology content into concept-based content lessons.


2006 ◽  
Vol 931 ◽  
Author(s):  
John A. Jaszczak ◽  
Bruce E. Seely

ABSTRACTAs part of a Nanotechnology Undergraduate Education program funded by NSF, a team of faculty at Michigan Technological University has developed a suite of educational and research experiences intended to introduce undergraduate students to the exciting prospects and challenges of nanoscale science and engineering. Although open to all students, the program was designed in particular for engineering students whose curricula have relatively little flexibility. Engineering students at Michigan Tech follow a common first-year curriculum, and as is true at most engineering colleges, their courses of study are highly structured. In order to bring introductory nanotechnology content to both engineering and non-engineering majors, activities were developed to fit into or to modestly supplement existing curricular frameworks. The program seeks to introduce students to three foundational aspects of work at the nanoscale: the underlying scientific principles, possible scientific and engineering applications, and the societal implications of implementation of nanotechnology. A web site (http://nano.mtu.edu/) was developed as a central focal point for nano-related research activities at Michigan Tech. This paper presents additional background and discusses the challenges related to the project, a brief overview of the educational activities, a more in-depth description of those activities deemed to be the most successful, and a description of some lessons learned.


2014 ◽  
Vol 9 (3) ◽  
pp. 104 ◽  
Author(s):  
Robin Elizabeth Miller

A Review of: Conway, Kate. (2011). How prepared are students for postgraduate study? A comparison of the information literacy skills of commencing undergraduate and postgraduate studies students at Curtin University. Australian Academic & Research Libraries, 42(2), 121-135. Abstract Objective – To determine whether there is a difference in the information literacy skills of postgraduate and undergraduate students beginning an information studies program, and to examine the influence of demographic characteristics on information literacy skills. Design – Online, multiple choice questionnaire to test basic information literacy skills. Setting – Information studies program at a large university in Western Australia. Subjects – 64 information studies students who responded to an email invitation to participate in an online questionnaire, a 44% response rate. Of those responding, 23 were undergraduates and 41 were postgraduates. Methods – Over the course of two semesters, an online survey was administered. In order to measure student performance against established standards, 25 test questions were aligned with the Australian and New Zealand Information Literacy Framework (ANZIIL) (Bundy, 2004), an adapted version of the ACRL Information Literacy Standards for Higher Education (Association of College & Research Libraries, 2000). In the first semester that the survey was administered, 9 demographic questions were asked and 11 in the second semester. Participants were invited to respond voluntarily to the questionnaire via email. Results were presented as descriptive statistics, comparing undergraduate and postgraduate student performance. The results were not tested for statistical significance and the author did not control for confounding variables. Main Results – Postgraduate respondents scored an average of 77% on the test questionnaire, while undergraduates scored an average of 69%. The 25% of respondents who had previous work experience in a library achieved average scores of 79%, in contrast to 69% among those who had not worked in a library. Average scores for undergraduates in the 20-30 age group were 81%, while those in the 30-40 age group averaged 65%. Among both undergraduate and postgraduate students, scores may indicate deficiencies in information literacy skills in several areas, including parsing citations, strategies for locating specific content, and defining an information need. Conclusion – The study concludes that postgraduate students’ information literacy skills may be marginally better than the skills of undergraduates. Age was found to be associated with higher performance among undergraduate students, and a variety of “basic” information literacy skills may elude many respondents. These findings might prompt librarians and instructors to look closely at gaps in information literacy knowledge among students at both the undergraduate and postgraduate level.


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