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A Child's Body-Powered Prehensor with Adaptive Grasp

A Child's Body-Powered Prehensor with Adaptive Grasp
具有自适应抓握能力的儿童身体驱动 Prehensor
批准号:
7385156
负责人:
BRADLEY D VEATCH
金额:
$29.81万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-09-30 至 2009-03-31

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中文摘要
翻译
描述(申请人提供):传统的身体动力辅助器具,旨在帮助有上肢缺陷的儿童,已被证明不适合一些活动,最明显的是游戏。在这些系统中,提供抓取功能的关键组件,称为感知器或终端设备,必须在儿童希望完成的活动的功能和希望孩子有正常外表的父母的美容之间取得平衡。父母通常会选择更多旨在模仿解剖手的美容设备,而研究表明,孩子们更喜欢功能更强的设备。那些确实选择了更多功能设备的人经常发现现有设备对游戏活动的性能令人失望或不足,因为它们需要太多的电缆偏移或操作效率低下,需要太多的电缆张力来实现抓取。这些问题让许多儿童在他们应该学习终身假肢使用技能的时候没有一个可以接受的设备。在第一阶段,反兴奋剂机构展示了专门为儿童日常活动设计的读取器的技术可行性。设计了一种自适应手指,提供儿童主要使用的封闭抓取,而不是成人常见的高强度捏合抓取。还包括一个可变机械优势(VMA)抓取引擎,它可以有效地将电缆的漂移和张力转换为高质量、稳定的抓取。该引擎显著提高了实现的抓地力与输入缆索张力的比率(称为前向力比率,FFR)。Ada的原型实现了最大FFR为0.78,而目前的设备平均FFR为0.2。最终的结果是,孩子们可以用更少的体力获得更高水平的抓取力,让他们自由地做他们最想做的事情--游戏。这一第二阶段的工作将集中于完善第一阶段已证实的原型设计,以1)将其商业制造成本降至最低,以使经济能力有限的家庭受益,2)验证其在儿童用户实际服务中的表现。为了获得商业认可,将加入其他功能,如被动持有能力和改进的美容。Ada将与Shriners医院网络中的执业假肢医生合作,完成设计阶段并进行临床评估。通过与Shriners的合作,ADA将与全国领先的儿童假肢护理和设备供应商建立早期的工作关系。在整个过程中,ADA将通过不断与外部合作伙伴合作,确保满足儿童抓取需求仍然是努力的核心和明确的重点,从而保持对商业可行性的关注。如果成功,第二阶段的努力将产生一个在功能上优于目前所有可用的传统感知器的儿童感知器。为了确保父母和孩子的成功,ADA将包括市场驱动的美容功能,以及自适应抓取、VMA和被动握持能力。第二阶段的工作将利用这项技术创建一个对第三阶段投资者具有吸引力的实体。由于市场规模较小,患有上肢缺陷的儿童只能靠不适合他们特殊需求的假肢勉强度日。这项研究旨在开发一种功能感知器,专门设计成在日常使用和美容接受方面都优于现有的设备。
英文摘要
DESCRIPTION (provided by applicant): Conventional body-powered assistive appliances intended to help children having upper limb deficiencies have proven inadequate for some activities, most notably play. The critical component in these systems that contributes grasp functionality, called a prehensor or terminal device, must strike a balance between functionality for activities children wish to accomplish and cosmesis for parents who desire their child have a normal appearance. Parents most often select more cosmetic devices designed to mimic the anatomical hand, while studies have shown children prefer devices that are more functional. Those who do select more functional devices often find existing units offer disappointing or inadequate performance for play activities as they require too much cable excursion or operate inefficiently and demand too much cable tension to effect grasp. These problems leave many children without an acceptable device at precisely the time they should be learning lifelong prosthetics usage skills. In Phase I, ADA demonstrated the technical feasibility of a prehensor designed specifically for children's daily activities. An adaptive digit was designed that provides the enclosing grasp children primarily use as opposed to high-force pinching grasp common for adults. Also included was a Variable Mechanical Advantage (VMA) grasping engine that efficiently transforms cable excursion and tension into quality, stable grasp. This engine significantly improves the ratio of grip force achieved to the input cable tension (called the forward force ratio, FFR). ADA's prototype achieved a maximum FFR of 0.78, as compared to current devices which average an FFR of 0.2. The end result is that children can achieve higher levels of gripping force with less physical exertion, freeing them to do what they desire most-play. This Phase II effort will focus on refining the proven Phase I prototype design to 1) minimize its commercial manufacturing cost to benefit families of limited means and 2) validate its performance in actual service with children users. To gain commercial acceptance, additional features such as passive holding capacity and improved cosmesis will be incorporated. ADA will work with practicing prosthetists in the Shriners Hospital network through the design phase and into clinical evaluations. By partnering with Shriners, ADA will establish an early, working relationship with the nation's leading provider of child's prosthetic care and equipment. Throughout, ADA will maintain focus on commercial viability by constantly working with outside partners to ensure satisfying children's grasping needs remain central to the effort and in crisp focus. If successful, the Phase II effort will produce a child's prehensor that is functionally superior to all currently available conventional prehensors. To ensure success with parents as well as children, ADA will include market-driven cosmetic features in addition to adaptive grasp, VMA, and passive holding capability. The Phase II effort will leverage this technology to create an entity that will be attractive to Phase III investors. Due to the small market size, children with upper limb deficiencies are made to get by with prosthetics not suited to their special needs. This research seeks to develop a functional prehensor designed specifically to outperform available devices in both daily use and cosmetic acceptance.
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A Biomimetic Prehensile Digit for Upper-Limb Prostheses
  • 批准号:
    8196356
  • 项目类别:
  • 资助金额:
    $16.42万
  • 财政年份:
    2011
  • 负责人:
    BRADLEY D VEATCH
  • 依托单位:
A Biomimetic Prehensile Digit for Upper-Limb Amputees
  • 批准号:
    8894541
  • 项目类别:
  • 资助金额:
    $46.25万
  • 财政年份:
    2011
  • 负责人:
    BRADLEY D VEATCH
  • 依托单位:
A Biomimetic Prehensile Digit for Upper-Limb Amputees
  • 批准号:
    8774861
  • 项目类别:
  • 资助金额:
    $47.42万
  • 财政年份:
    2011
  • 负责人:
    BRADLEY D VEATCH
  • 依托单位:
A Next-Generation Split Hook Prehensor with Enhanced Grasp Functionality
  • 批准号:
    7480161
  • 项目类别:
  • 资助金额:
    $19.65万
  • 财政年份:
    2008
  • 负责人:
    BRADLEY D VEATCH
  • 依托单位:
海外基金