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产学研合作:加速创新的一种途径。

Industry-academic partnerships: an approach to accelerate innovation.

作者信息

Chen Jennwood, Pickett Timothy, Langell Ashley, Trane Ashley, Charlesworth Brian, Loken Kris, Lombardo Sarah, Langell John T

机构信息

Department of Surgery, University of Utah, Salt Lake City, Utah.

Center for Medical Innovation, University of Utah, Salt Lake City, Utah.

出版信息

J Surg Res. 2016 Sep;205(1):228-33. doi: 10.1016/j.jss.2016.06.029. Epub 2016 Jun 16.

Abstract

BACKGROUND

Biotechnology companies are process-driven organizations and often struggle with their ability to innovate. Universities, on the other hand, thrive on discovery and variation as a source of innovation. As such, properly structured academic-industry partnerships in medical technology development may enhance and accelerate innovation. Through joint industry-academic efforts, our objective was to develop a technology aimed at global cervical cancer prevention.

METHODS

Our Center for Medical Innovation assembled a multidisciplinary team of students, surgical residents, and clinical faculty to enter in the University of Utah's annual Bench-to-Bedside competition. Bench-to-Bedside is a university program centered on medical innovation. Teams are given access to university resources and are provided $500.00 for prototype development. Participation by team members are on a volunteer basis. Our industry partner presented the validated need and business mentorship. The team studied the therapeutic landscape, environmental constraints, and used simulation to understand human factors design and usage requirements. A physical device was manufactured by first creating a digital image (SOLIDWORKS 3D CAD). Then, using a 3-dimensional printer (Stratasys Objet30 Prime 3D printer), the image was translated into a physical object. Tissue burn depth analysis was performed on raw chicken breasts warmed to room temperature. Varying combinations of time and temperature were tested, and burn depth and diameter were measured 30 min after each trial. An arithmetic mean was calculated for each corresponding time and temperature combination. User comprehension of operation and sterilization was tested via a participant validation study. Clinical obstetricians and gynecologists were given explicit instructions on usage details and then asked to operate the device. Participant behaviors and questions were recorded.

RESULTS

Our efforts resulted in a functional battery-powered hand-held thermocoagulation prototype in just 72 d. Total cost of development was <$500. Proof of concept trials at 100°C demonstrated an average ablated depth and diameter of 4.7 mm and 23.3 mm, respectively, corresponding to treatment efficacy of all grades of precancerous cervical lesions. User comprehension studies showed variable understanding with respect to operation and sterilization instructions.

CONCLUSIONS

Our experience with using industry-academic partnerships as a means to create medical technologies resulted in the rapid production of a low-cost device that could potentially serve as an integral piece of the "screen-and-treat" approach to premalignant cervical lesions as outlined by World Health Organization. This case study highlights the impact of accelerating medical advances through industry-academic partnership that leverages their combined resources.

摘要

背景

生物技术公司是流程驱动型组织,在创新能力方面常常面临困难。另一方面,大学则依靠发现和多样性作为创新源泉而蓬勃发展。因此,在医学技术开发中构建合理的产学研合作关系可能会增强并加速创新。通过产学研联合努力,我们的目标是开发一项旨在全球预防宫颈癌的技术。

方法

我们的医学创新中心组建了一支由学生、外科住院医师和临床教员组成的多学科团队,参加犹他大学的年度从实验台到病床边竞赛。从实验台到病床边竞赛是一个以医学创新为核心的大学项目。各团队可使用大学资源,并获得500美元用于原型开发。团队成员以志愿者身份参与。我们的行业合作伙伴提出了经过验证的需求并提供商业指导。该团队研究了治疗前景、环境限制因素,并通过模拟来了解人为因素设计和使用要求。首先创建数字图像(SOLIDWORKS 3D CAD),然后使用三维打印机(Stratasys Objet30 Prime 3D打印机)将图像转化为实物,制造出一个物理设备。对加热至室温的生鸡胸肉进行组织烧伤深度分析。测试了时间和温度的不同组合,并在每次试验后30分钟测量烧伤深度和直径。计算每个相应时间和温度组合的算术平均值。通过参与者验证研究测试用户对操作和消毒的理解。向临床妇产科医生详细说明使用细节,然后让他们操作该设备。记录参与者的行为和问题。

结果

我们的努力在短短72天内就产生了一个功能齐全的电池供电手持热凝原型。开发总成本不到500美元。在100°C下进行的概念验证试验表明,平均消融深度和直径分别为4.7毫米和23.3毫米,这与所有等级的宫颈癌前病变的治疗效果相对应。用户理解研究表明,用户对操作和消毒说明的理解存在差异。

结论

我们利用产学研合作关系来创造医疗技术的经验,迅速生产出一种低成本设备,该设备有可能成为世界卫生组织概述的宫颈癌前病变“筛查与治疗”方法的一个重要组成部分。本案例研究突出了通过利用产学研合作关系的综合资源来加速医学进步的影响。

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