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首页> 外文期刊>Advances in health sciences education: theory and practice >Simulation using novel equipment designed to explain spirometric abnormalities in respiratory disease enhances learning in higher cognitive domains
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Simulation using novel equipment designed to explain spirometric abnormalities in respiratory disease enhances learning in higher cognitive domains

机译:使用旨在解释呼吸系统疾病的肺功能异常的新型设备进行的模拟可增强认知领域的学习能力

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Simulation of disorders of respiratory mechanics shown by spirometry provides insight into the pathophysiology of disease but some clinically important disorders have not been simulated and none have been formally evaluated for education. We have designed simple mechanical devices which, along with existing simulators, enable all the main dysfunctions which have diagnostic value in spirometry to be simulated and clearly explained with visual and haptic feedback. We modelled the airways as Starling resistors by a clearly visible mechanical action to simulate intra- and extra-thoracic obstruction. A narrow tube was used to simulate fixed large airway obstruction and inelastic bands to simulate restriction. We hypothesized that using simulators whose action explains disease promotes learning especially in higher domain educational objectives. The main features of obstruction and restriction were correctly simulated. Simulation of variable extra-thoracic obstruction caused blunting and plateauing of inspiratory flow, and simulation of intra-thoracic obstruction caused limitation of expiratory flow with marked dynamic compression. Multiple choice tests were created with questions allocated to lower (remember and understand) or higher cognitive domains (apply, analyse and evaluate). In a cross-over design, overall mean scores increased after 1A1/2A h simulation spirometry (43-68 %, effect size 1.06, P < 0.0001). In higher cognitive domains the mean score was lower before and increased further than lower domains (Delta 30 vs 20 %, higher vs lower effect size 0.22, P < 0.05). In conclusion, the devices successfully simulate various patterns of obstruction and restriction. Using these devices medical students achieved marked enhancement of learning especially in higher cognitive domains.
机译:肺活量测定法显示的呼吸力学疾病的模拟提供了对疾病病理生理学的洞察力,但尚未对一些临床上重要的疾病进行模拟,也没有对它们进行正式的教育评估。我们设计了简单的机械设备,并​​与现有的模拟器一起使用,可以模拟所有具有肺活量诊断价值的主要功能障碍,并通过视觉和触觉反馈进行清晰说明。我们通过清晰可见的机械作用将气道建模为Starling电阻器,以模拟胸腔内和胸外阻塞。狭窄的管子用来模拟固定的大气道阻塞,无弹性的带子用来模拟约束。我们假设使用行为解释疾病的模拟器会促进学习,尤其是在更高领域的教育目标中。阻塞和限制的主要特征已正确模拟。可变胸腔外阻塞的模拟导致吸气流量的钝化和平稳,而胸腔内阻塞的模拟导致呼气流量受到明显动态压缩的限制。创建的多项选择测验的问题分配给较低(记住和理解)或较高认知领域(应用,分析和评估)。在交叉设计中,在1A1 / 2A h模拟肺量测定法后,总体平均得分有所提高(43-68%,效应大小1.06,P <0.0001)。在较高的认知领域中,平均得分在较低的领域之前较低,并且比较低的领域进一步增加(Delta 30 vs 20%,较高与较低影响量0.22,P <0.05)。总之,这些设备成功地模拟了各种阻塞和限制模式。使用这些设备,医学生尤其在更高的认知领域中获得了明显的学习提高。

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