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      Procedural skills practice and training needs of doctors, nurses, midwives and paramedics in rural Victoria

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          Abstract

          Introduction

          Procedural skills are a significant component of clinical practice. Doctors, nurses, midwives and paramedics are trained to use a variety of procedural skills. Rural clinicians in particular are often required to maintain competence in some procedural skills that are used infrequently, and which may require regular and repeated rehearsal. This paper reports on a research project conducted in Gippsland, Victoria, to ascertain the frequency of use, and relevance to clinical practice, of a range of skills in the fields of medicine, nursing, midwifery, and paramedic practice. The project also gathered data on the attitudes of clinicians regarding how frequently and by what means they thought they needed to practice these skills with a particular focus on the use of simulation as an educational method.

          Methods

          The research was conducted following identification of a specific set of procedural skills for each professional group. Skills were identified by an expert steering committee. We developed online questionnaires that consisted of two parts: 1) demographic and professional characteristics, and 2) experience of procedural skills and perceived training needs. We sought to invite all practicing clinicians (doctors, nurses, midwives, paramedics) working in Gippsland. Online surveys were distributed between November 2011 and April 2012 with three follow-up attempts. The Monash University Human Research Ethics Committee approved the study.

          Results

          Valid responses were received from 58 doctors, 94 nurses, 46 midwives, and 30 paramedics, whom we estimate to represent not more than 20% of current clinicians within these professions. This response rate reflected some of the difficulties experienced in the conduct of the research. Results were tabulated for each professional group across the range of skills. There was significant correlation between the frequency of certain skills and confidence with maintenance of these skills. This did not necessarily correlate with perceptions of respondents as to how often they need to practice each skill to maintain mastery. The more complex the skill, the more likely the respondents were to report a need for frequent rehearsal of the skill. There was variation between the professional groups as to how to retain mastery; for some skills, professional groups reported skill maintenance through clinical observation and clinical practice; for other skills, simulation was seen to be more appropriate.

          Conclusion

          This project provided insight into the clinical application of procedural skills for clinicians comprising a relatively large professional population within a defined geographical region in rural Victoria, as well as attitudes to skills maintenance and competency. Although not the focus of the study, an unexpected outcome was the design of questionnaires on procedural skills. We believe that the questionnaires may have value in other rural settings. We acknowledge the limitations of the study in the text. The project provides some information on which to base planning for procedural skills education, including simulation-based training, and directions for further research.

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          Most cited references32

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          To Err Is Human : Building a Safer Health System

          (2000)
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            A systematic review of retention of adult advanced life support knowledge and skills in healthcare providers.

            Advanced life support (ALS) guidelines are widely adopted for healthcare provider training with recommendations for retraining every two years or longer. This systematic review studies the retention of adult ALS knowledge and skills following completion of an ALS course in healthcare providers. We retrieved original articles using Medline, CINAHL, Cochrane Library, and PubMed, and reviewed reference citations to identify additional studies. We extracted data from included articles using a structured approach and organized outcomes by evaluation method, and knowledge and skills retention. Among 336 articles retrieved, 11 papers were included. Most studies used multiple-choice questionnaires to evaluate knowledge retention and cardiac arrest simulation or other skills tests to evaluate skills retention. All studies reported variable rates of knowledge or skills deterioration over time, from 6 weeks to 2 years after training. Two studies noted retention of knowledge at 18 months and up to 2 years, and one reported skills retention at 3 months. Clinical experience, either prior to or after the courses, has a positive impact on retention of knowledge and skills. There is a lack of large well-designed studies examining the retention of adult ALS knowledge and skills in healthcare providers. The available evidence suggests that ALS knowledge and skills decay by 6 months to 1 year after training and that skills decay faster than knowledge. Additional studies are needed to help provide evidence-based recommendations for assessment of current knowledge and skills and need for refresher training to maximize maintenance of ALS competency. Copyright © 2012 Elsevier Ireland Ltd. All rights reserved.
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              Lessons for continuing medical education from simulation research in undergraduate and graduate medical education: effectiveness of continuing medical education: American College of Chest Physicians Evidence-Based Educational Guidelines.

              Simulation technology is widely used in undergraduate and graduate medical education as well as for personnel training and evaluation in other healthcare professions. Simulation provides safe and effective opportunities for learners at all levels to practice and acquire clinical skills needed for patient care. A growing body of research evidence documents the utility of simulation technology for educating healthcare professionals. However, simulation has not been widely endorsed or used for continuing medical education (CME). This article reviews and evaluates evidence from studies on simulation technology in undergraduate and graduate medical education and addresses its implications for CME. The Agency for Healthcare Research and Quality Evidence Report suggests that simulation training is effective, especially for psychomotor and communication skills, but that the strength of the evidence is low. In another review, the Best Evidence Medical Education collaboration supported the use of simulation technology, focusing on high-fidelity medical simulations under specific conditions. Other studies enumerate best practices that include mastery learning, deliberate practice, and recognition and attention to cultural barriers within the medical profession that present obstacles to wider use of this technology. Simulation technology is a powerful tool for the education of physicians and other healthcare professionals at all levels. Its educational effectiveness depends on informed use for trainees, including providing feedback, engaging learners in deliberate practice, integrating simulation into an overall curriculum, as well as on the instruction and competence of faculty in its use. Medical simulation complements, but does not replace, educational activities based on real patient-care experiences.

                Author and article information

                Journal
                Adv Med Educ Pract
                Adv Med Educ Pract
                Advances in Medical Education and Practice
                Advances in Medical Education and Practice
                Dove Medical Press
                1179-7258
                2015
                19 March 2015
                : 6
                : 183-194
                Affiliations
                [1 ]East Gippsland Regional Clinical School, School of Rural Health, Monash University, Melbourne, VIC, Australia
                [2 ]Simconhealth Healthcare Simulation Consultancy Group, Linsfield, NSW, Australia
                [3 ]School of Rural Health, Faculty of Medicine, Nursing and Health Sciences, Monash University, Melbourne, VIC, Australia
                [4 ]Southern General Practice Training, Churchill, VIC, Australia
                [5 ]Central Gippsland Health Service, Sale, VIC, Australia
                [6 ]Department of Community Emergency Health and Paramedic Practice, Faculty of Medicine, Nursing and Health Sciences, Monash University, Melbourne, VIC, Australia
                [7 ]School of Rural Health and HealthPEER, Monash University, Melbourne, VIC, Australia
                Author notes
                Correspondence: David Campbell, School of Rural Health, Monash University. PO Box 1497, Bairnsdale 2875, Victoria, Australia, Email david.campbell@ 123456monash.edu
                Article
                amep-6-183
                10.2147/AMEP.S77779
                4372009
                25834473
                a64418ac-a6ef-4f27-b97e-508aaf5054e9
                © 2015 Campbell et al. This work is published by Dove Medical Press Limited, and licensed under Creative Commons Attribution – Non Commercial (unported, v3.0) License

                The full terms of the License are available at http://creativecommons.org/licenses/by-nc/3.0/. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.

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                Original Research

                procedural skills,simulation,rural health education,skills maintenance

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