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院前卒中诊断、虚拟混合现实、个性化3D打印,上榜十大医疗创新!

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发表于 2020-10-14 14:50:56 | 显示全部楼层 |阅读模式

                    

                    

                    
                    
                    <section><section powered-by="gulangu"><section><section><section data-role="paragraph" data-color="rgb(182, 228, 253)" data-custom="rgb(182, 228, 253)"><section><section><section><section powered-by="gulangu"><section><section><section><section powered-by="gulangu"><section><section><section><section powered-by="gulangu"><section><section><section><section powered-by="gulangu"><section><section><section><section><p><p><img src="image/20201014/86b79d371e9862b01189f0252a03b2cd_1.png" /></p></p></section><section><section><span><strong></strong></span></section><p><span>医疗器械媒体报道先锋</span></p><p><span>分享专业医疗器械知识</span></p></section><section><section><section>关注</section></section></section></section></section></section></section></section></section></section></section></section></section></section></section></section></section></section></section></section></section></section></section><p><strong><span>来源:</span></strong></p><p><strong><span><br  /></span></strong></p><p>美国克利夫兰诊所是一家非盈利性多专科学术医疗中心。近十几年来,每年都会举行医疗峰会来评选即将发生的,最具有影响力的,革新性的医疗科技。文中视频来源网络,出于科普目的,翻译整理。<br  /></p><p><br  /></p></section></section></section><section powered-by="gulangu"><section><section><section powered-by="gulangu"><section><section><section powered-by="gulangu"><section><section><section powered-by="gulangu"><section><section><svg xmlns="http://www.w3.org/2000/svg" x="0px" y="0px" viewbox="0 0 64.7 40.8" width="100%"><g><path d="M36.2,27c0,0.2,0,0.4,0,0.6l0,0c0.5,7.4,6.7,13.3,14.2,13.3c7.9,0,14.3-6.4,14.3-14.3c0-7.2-5.3-13.1-12.2-14.1   C53,8.9,54.2,4,57,0c0,0-19,3-20.7,24.7c-0.1,0.6-0.1,1.2-0.1,1.8C36.2,26.7,36.2,26.9,36.2,27z" fill="rgb(144,201,224)"></path><path d="M0,27c0,0.2,0,0.4,0,0.6l0,0C0.6,35,6.7,40.8,14.3,40.8c7.9,0,14.3-6.4,14.3-14.3c0-7.2-5.3-13.1-12.2-14.1   C16.8,8.9,18,4,20.8,0c0,0-19,3-20.7,24.7C0,25.3,0,26,0,26.6C0,26.7,0,26.9,0,27z" fill="rgb(144,201,224)"></path></g></svg></section></section></section></section></section></section><section powered-by="gulangu"><section><section><p><strong>第7名:院前卒中诊断帽</strong></p></section></section></section><section powered-by="gulangu"><section><section><section powered-by="gulangu"><section><section><svg xmlns="http://www.w3.org/2000/svg" x="0px" y="0px" viewbox="0 0 64.7 40.8" width="100%"><g><path d="M28.5,13.8c0-0.2,0-0.4,0-0.6l0,0C28,5.8,21.8,0,14.3,0C6.4,0,0,6.4,0,14.3c0,7.2,5.3,13.1,12.2,14.1   c-0.5,3.5-1.7,8.4-4.5,12.5c0,0,19-3,20.7-24.7c0.1-0.6,0.1-1.2,0.1-1.8C28.5,14.1,28.5,14,28.5,13.8z" fill="rgb(144,201,224)"></path><path d="M64.7,13.8c0-0.2,0-0.4,0-0.6l0,0C64.2,5.8,58,0,50.5,0c-7.9,0-14.3,6.4-14.3,14.3c0,7.2,5.3,13.1,12.2,14.1   c-0.5,3.5-1.7,8.4-4.5,12.5c0,0,19-3,20.7-24.7c0.1-0.6,0.1-1.2,0.1-1.8C64.7,14.1,64.7,14,64.7,13.8z" fill="rgb(144,201,224)"></path></g></svg></section></section></section></section></section></section></section></section></section></section></section></section><section powered-by="gulangu"><section><section><p><iframe src="https://v.qq.com/iframe/player.html?width=500&height=375&auto=0&vid=i0829hjuapd&auto=0" width="100%" height="580" frameborder="0"></iframe></p><p><br  /></p></section></section></section><section powered-by="gulangu"><section><section><p><span>卒中干预的时机至关重要,</span><span>时间对于快速诊断来说很重要。</span><span>为了利用救护车驾驶时间,</span><span>工程师设计了一个</span><span>用于院前卒中诊断的帽子。</span><span>这是一个能检测脑液分布变化的,</span><span>非侵入性生物阻抗光谱装置。</span><span>这个帽子能够在评估神经系统时,</span><span>揭示大脑中的病理情况。</span><span>这个帽子能吸收大脑两半球发出的低频波,</span><span>并检测到两者之间频率的差别。</span><span>如果频率不同,</span><span>则表明发生了中风。</span><span>差异越大,中风严重程度越大。</span><span>研究显示这个帽子的准确率为92%。</span><span>该设备在1月份获得FDA 510k认证。</span><span>预计将于明年投入商用。</span><span>对于中风的人来说,</span><span>时间就是生命。</span><span>这个帽子能有效地节省时间,挽救生命。</span></p></section></section></section><section powered-by="gulangu"><section><section><p><br  /></p></section></section></section><section powered-by="gulangu"><section><section><section powered-by="gulangu"><section><section><section powered-by="gulangu"><section><section><section powered-by="gulangu"><section><section><svg xmlns="http://www.w3.org/2000/svg" x="0px" y="0px" viewbox="0 0 64.7 40.8" width="100%"><g><path d="M36.2,27c0,0.2,0,0.4,0,0.6l0,0c0.5,7.4,6.7,13.3,14.2,13.3c7.9,0,14.3-6.4,14.3-14.3c0-7.2-5.3-13.1-12.2-14.1   C53,8.9,54.2,4,57,0c0,0-19,3-20.7,24.7c-0.1,0.6-0.1,1.2-0.1,1.8C36.2,26.7,36.2,26.9,36.2,27z" fill="rgb(144,201,224)"></path><path d="M0,27c0,0.2,0,0.4,0,0.6l0,0C0.6,35,6.7,40.8,14.3,40.8c7.9,0,14.3-6.4,14.3-14.3c0-7.2-5.3-13.1-12.2-14.1   C16.8,8.9,18,4,20.8,0c0,0-19,3-20.7,24.7C0,25.3,0,26,0,26.6C0,26.7,0,26.9,0,27z" fill="rgb(144,201,224)"></path></g></svg></section></section></section></section></section></section><section powered-by="gulangu"><section><section><p><strong>第6名:虚拟混合现实用于医学教育</strong><br  /></p></section></section></section><section powered-by="gulangu"><section><section><section powered-by="gulangu"><section><section><svg xmlns="http://www.w3.org/2000/svg" x="0px" y="0px" viewbox="0 0 64.7 40.8" width="100%"><g><path d="M28.5,13.8c0-0.2,0-0.4,0-0.6l0,0C28,5.8,21.8,0,14.3,0C6.4,0,0,6.4,0,14.3c0,7.2,5.3,13.1,12.2,14.1   c-0.5,3.5-1.7,8.4-4.5,12.5c0,0,19-3,20.7-24.7c0.1-0.6,0.1-1.2,0.1-1.8C28.5,14.1,28.5,14,28.5,13.8z" fill="rgb(144,201,224)"></path><path d="M64.7,13.8c0-0.2,0-0.4,0-0.6l0,0C64.2,5.8,58,0,50.5,0c-7.9,0-14.3,6.4-14.3,14.3c0,7.2,5.3,13.1,12.2,14.1   c-0.5,3.5-1.7,8.4-4.5,12.5c0,0,19-3,20.7-24.7c0.1-0.6,0.1-1.2,0.1-1.8C64.7,14.1,64.7,14,64.7,13.8z" fill="rgb(144,201,224)"></path></g></svg></section></section></section></section></section></section></section></section></section></section></section></section><section powered-by="gulangu"><section><section><p><iframe src="https://v.qq.com/iframe/player.html?width=500&height=375&auto=0&vid=y0829xgoypf&auto=0" width="100%" height="580" frameborder="0"></iframe></p><p><br  /></p></section></section></section><section powered-by="gulangu"><section><section><p>想象一下,<span>在没有切口的情况下窥视人体。</span><span>在不直接接触心脏的情况下,</span><span>使用一项创新技术,</span><span>如头戴式耳机控制器,</span><span>让心脏转动。</span><span>虚拟混合现实在,</span><span>人体解剖学中的应用,</span><span>使上述成为可能。</span><span>虚拟现实可以提供程序技术和</span><span>设备使用方面的医学培训,</span><span>并以更加身临其境的方式</span><span>模拟患者互动。</span><span>随着虚拟混合现实技术的发展,运用</span><span>这项技术代替医学教育,</span><span>如人体解剖实验,</span><span>正在全世界范围内推广。</span><span>虚拟混合现实能增加情境体验,</span><span>让学生有机会进行计算机模拟练习,</span><span>这是一种可以防止患者受伤的</span><span>、低风险的,替代传统解剖学教育的方案。</span></p><p><br  /></p></section></section></section><section powered-by="gulangu"><section><section><section powered-by="gulangu"><section><section><section powered-by="gulangu"><section><section><section powered-by="gulangu"><section><section><svg xmlns="http://www.w3.org/2000/svg" x="0px" y="0px" viewbox="0 0 64.7 40.8" width="100%"><g><path d="M36.2,27c0,0.2,0,0.4,0,0.6l0,0c0.5,7.4,6.7,13.3,14.2,13.3c7.9,0,14.3-6.4,14.3-14.3c0-7.2-5.3-13.1-12.2-14.1   C53,8.9,54.2,4,57,0c0,0-19,3-20.7,24.7c-0.1,0.6-0.1,1.2-0.1,1.8C36.2,26.7,36.2,26.9,36.2,27z" fill="rgb(144,201,224)"></path><path d="M0,27c0,0.2,0,0.4,0,0.6l0,0C0.6,35,6.7,40.8,14.3,40.8c7.9,0,14.3-6.4,14.3-14.3c0-7.2-5.3-13.1-12.2-14.1   C16.8,8.9,18,4,20.8,0c0,0-19,3-20.7,24.7C0,25.3,0,26,0,26.6C0,26.7,0,26.9,0,27z" fill="rgb(144,201,224)"></path></g></svg></section></section></section></section></section></section><section powered-by="gulangu"><section><section><p><strong>第5名:患者个性化3D打印产品</strong></p></section></section></section><section powered-by="gulangu"><section><section><section powered-by="gulangu"><section><section><svg xmlns="http://www.w3.org/2000/svg" x="0px" y="0px" viewbox="0 0 64.7 40.8" width="100%"><g><path d="M28.5,13.8c0-0.2,0-0.4,0-0.6l0,0C28,5.8,21.8,0,14.3,0C6.4,0,0,6.4,0,14.3c0,7.2,5.3,13.1,12.2,14.1   c-0.5,3.5-1.7,8.4-4.5,12.5c0,0,19-3,20.7-24.7c0.1-0.6,0.1-1.2,0.1-1.8C28.5,14.1,28.5,14,28.5,13.8z" fill="rgb(144,201,224)"></path><path d="M64.7,13.8c0-0.2,0-0.4,0-0.6l0,0C64.2,5.8,58,0,50.5,0c-7.9,0-14.3,6.4-14.3,14.3c0,7.2,5.3,13.1,12.2,14.1   c-0.5,3.5-1.7,8.4-4.5,12.5c0,0,19-3,20.7-24.7c0.1-0.6,0.1-1.2,0.1-1.8C64.7,14.1,64.7,14,64.7,13.8z" fill="rgb(144,201,224)"></path></g></svg></section></section></section></section></section></section></section></section></section></section></section></section><section powered-by="gulangu"><section><section><p><iframe src="https://v.qq.com/iframe/player.html?width=500&height=375&auto=0&vid=r08291o7kll&auto=0" width="100%" height="580" frameborder="0"></iframe></p><p><br  /></p></section></section></section><section powered-by="gulangu"><section><section><p><span>医疗保健公司正在投资三维/3D打印。</span><span>使用这项技术</span><span>能制定准确相匹配的,</span><span>患者个性化医疗器械,</span><span>能提高患者接受度,</span><span>能增加患者舒适度,</span><span>能改善患者性能度,</span><span>并能满足某些临床要求。</span><span>值得一提的是,</span><span>包括定制的气管支架、外部假肢、</span><span>颅骨、整形外科植入物。</span><span>在医疗保健中,</span><span>应用3D打印是将患者的解剖结构,</span><span>打印为物理模型,</span><span>作为手术之前的视觉辅助,</span><span>使外科医生能够概念化理想的效果。</span><span>在进行外科手术之前,</span><span>定制个性化3D打印,</span><span>已成为一种潮流。</span></p><p><br  /></p></section></section></section></section><p><strong><span>本文视频来源外网,出于科普目的翻译整理字幕,转载请注明出处。</span></strong></p><p>&nbsp;</p><section data-id="1658"><section><section><section data-id="1658"><section><section><section data-id="1658"><section><section><section data-id="1658"><section><section><p><span><strong>相关阅读</strong></span></p></section><p><p><img src="image/20201014/ec237188ae1e9c03eb4d9814f31b18ab_2.gif" /></p></p><p><br  /></p><p><span>克利夫兰诊所发布2019十大医疗创新(NO.9)</span><br  /></p><p><br  /></p><p><span>克利夫兰诊所发布2019十大医疗创新(NO.10)</span><br  /></p><p><br  /></p><p><span>【权威解读】企业如何编写及申报创新医疗器械?</span><br  /></p><p><br  /></p><p><span>图解政策:创新医疗器械特别审查程序之一</span><br  /></p></section></section></section></section></section></section></section></section></section></section></section><p><br  /></p><p><span><strong><span><p><img src="image/20201014/225eae26a91575de7508aebe3e999278_3.jpg" /></p></span></strong></span></p>
               
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