I-Corps: Spine Fusion Implant made from a Tough Piezoelectric Composite Biomaterial
I-Corps: Spine Fusion Implant made from a Tough Piezoelectric Composite Biomaterial
批准号:
1248377
负责人:
Elizabeth Friis
金额:
$5.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-07-01 至 2012-12-31
中文摘要
该项目将展示使用压电复合材料作为能够提供电刺激的脊柱融合植入物的技术和商业可行性。之前的研究人员曾尝试在人体中使用压电材料;然而,他们通常依赖于硬脆的陶瓷材料,这些材料不太适合人体内的环境。最初的研究也没有纳入将压电材料产生的能量转换成人体能够使用的形式所需的电子电路。此外,压电材料的厚度通常是有限的,因为需要极点的标本。这一步需要使用大的电场强度,这对于厚的样品需要非常大的电压源,使得难以产生熔化笼所需的厚度。一项由美国国家科学基金会资助的创新成果已经产生了一种能够生产适合植入的大规模压电复合材料的制造技术。这项研究将产生一种植入物,可以极大地改善患有腰痛的患者的生活。在目前由商品主导的市场中,这可能是一项真正具有颠覆性的技术,可以满足大量患者的需求。目前的辅助治疗虽有效,但成本高,副作用大。压电融合植入物的成功率应与常规植入物加辅助治疗相当,导致更少的负面副作用,并降低患者的总体医疗成本。此外,坚固的压电复合材料技术也可用于医疗保健内外的许多其他应用,并允许创建以前认为不可能的大规模,坚固的压电结构。
英文摘要
The project will demonstrate the technological and commercial feasibility of using piezoelectric composite materials as spinal fusion implants capable of providing electrical stimulation. Previous researchers have attempted to use piezoelectric materials in the body; however they have often relied on hard and brittle ceramic materials that are not well suited to the environment found inside the human body. Initial studies also did not incorporate the electronic circuitry required to convert the power generated by a piezoelectric material into a form the body is capable of using. Furthermore, the thickness of piezoelectric materials is typically limited due to the need to pole the specimens. This step requires the use of large electric field strengths, which for thick specimens require prohibitively large voltage sources, making it difficult to produce the thicknesses required for a fusion cage. An innovation developed as a result of previous NSF funding has resulted in a manufacturing technique capable of producing large scale piezoelectric composites that are suitable for implantation.This research will result in the creation of an implant that could drastically improve the lives of patients suffering from low back pain. In a market that is currently dominated by commodity products, this could be a truly disruptive technology that fulfills a large patient need. Current adjunct therapies are effective but add tremendous cost and have substantial negative side effects. The piezoelectric fusion implant should be yield success rates comparable to a regular implant plus adjunct therapy, result in fewer negative side effects, and reduce overall patient healthcare costs. Furthermore, the tough piezoelectric composite technology can also be used for many other applications both in and outside of healthcare, and allows the creation of large scale, tough piezoelectric structures previously not considered possible.
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RET Site: Bioengineering Toolkits for 4th Grade Teachers (BET 4Teachers)
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批准号:0808749
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项目类别:Continuing Grant
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资助金额:$50.0万
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财政年份:2008
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负责人:Elizabeth Friis
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依托单位:
Collaborative Research: Design, Assembly, and Characterization of Metal-Ceramic Composite Reentrant Structures
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批准号:0600555
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项目类别:Standard Grant
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资助金额:$16.23万
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财政年份:2006
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负责人:Elizabeth Friis
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依托单位:
Mechanical Evaluation of a Metallic Reentrant Structure
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批准号:9510512
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项目类别:Standard Grant
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资助金额:$1.79万
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财政年份:1996
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负责人:Elizabeth Friis
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依托单位:
海外基金