Listening to the Micro-World
Listening to the Micro-World
批准号:
EP/F040857/1
负责人:
Jonathan Cooper
金额:
$159.47万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2008
资助国家:
英国
项目状态:
已结题
起止时间:
2008 至 --
中文摘要
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英文摘要
Technologies associated with looking at the microworld are extremely mature, and include a wide variety of microscopies. By contrast little work has been done to extend our sense of hearing into the micro-world. The purpose of this grant is to develop a basic technology for listening to the micro world, in as sense a micro ear.Just like our own ears, most sound detectors respond to changes in pressure, creating small acoustic forces and corresponding displacement of a sensor. One extremely sensitive way of measuring force is to compare it against the momentum of a light beam. Tightly focused laser beams are now routinely used to form optical tweezers, which can trap micron-sized beads, overcoming both the thermal and gravitation forces. These tweezers systems are typically built around a microscope and manipulate samples suspended in a fluid medium / such that the technology is highly compatible with biological systems. Using a microscope to observe the bead position allows the measurement of piconewton forces and the corresponding displacement of a few nanometres. The subtle movements of these optically trapped beads will form the basis of our micro-ear. We plan to develop, demonstrate and test a number of different micro-ear approaches. All imaging systems based upon focusing are restricted to scales of a wavelength or so. Even in water, acoustic wavelengths are 100s mm, making the concept of focussing irrelevant to microscopic systems. However, as evident by most wind instruments or antique hearing aids, sub wavelength horns still work. In this proposal we plan to use microfabrication techniques to produce structures that channel the fluid flow from the emitting object to the sensor bead, providing a method of guiding the pressure wave, and if necessary amplifying it (e.g. in a flared channel). We will use the optically trapped beads as sensors to measure these forces (as described above). However, it is important to consider that, at the microscale, the movements of the beads due to an acoustic response may be masked by Brownian motion / and hence distinguishing the real signal from this thermal background will be a major challenge challenge.The key to overcoming the Brownian background will be the use of high-speed cameras to measure the position of many beads simultaneously. Rather than the signal being derived from one bead, it is the correlated motion of the beads that distinguishes the sensor response from the uncorrelated background. We envisage two basic configurations. In the first, simplest case, the beads will be positioned at the ends of defined flared microfluidic structures to measure molecular interactions resulting from mechanical biological systems (molecular motors). Alternatively, we will create a circular array around the test object and measure the radial breathing of the ring. In this latter configuration there is the possibility of being able to make new and exciting biological measurements in a non-contact mode, where we will determine both short and long range interactions between cells and surfaces.
期刊论文(10)
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DOI:
10.1371/journal.pone.0042686
发表时间:
2013
期刊:
PloS one
影响因子:
3.7
作者:
[Bourquin Y, Cooper JM]
通讯作者:
Cooper JM
Rare-cell enrichment by a rapid, label-free, ultrasonic isopycnic technique for medical diagnostics.
通过快速,无标签的超声等异形技术用于医学诊断的稀有细胞富集。
DOI:
10.1002/anie.201310401
发表时间:
2014-05-26
期刊:
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
影响因子:
16.6
作者:
[Bourquin, Yannyk, Syed, Abeer, Reboud, Julien, Ranford-Cartwright, Lisa C., Barrett, Michael P., Cooper, Jonathan M.]
通讯作者:
Cooper, Jonathan M.
Rare-Cell Enrichment by a Rapid, Label-Free, Ultrasonic Isopycnic Technique for Medical Diagnostics
通过快速、无标记、超声波等密度技术进行医学诊断的稀有细胞富集
DOI:
10.1002/ange.201310401
发表时间:
2014
期刊:
Angewandte Chemie
影响因子:
--
作者:
[Bourquin Y]
通讯作者:
Bourquin Y
Real time characterization of hydrodynamics in optically trapped networks of micro-particles.
光学捕获微粒网络中流体动力学的实时表征。
DOI:
10.1002/jbio.201000003
发表时间:
2010
期刊:
Journal of biophotonics
影响因子:
2.8
作者:
[Curran A]
通讯作者:
Curran A
DOI:
10.1117/12.879148
发表时间:
2011
期刊:
影响因子:
--
作者:
[Reboud J]
通讯作者:
Reboud J
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13TSB_ENDANI_MilkED: Development of a point of need diagnostic test for infectious disease in milk
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Droplet-based microfluidics for single cell-omics
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LSI Doctoral Training Centres - Doctoral Training Centre in Cell & Proteomic Technologies
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LSI Doctoral Training Centres: University of Glasgow
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Lab-on-a-Pill: wireless microfluidics for in vivo immunodiagnostics
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资助金额:$90.32万
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-
依托单位:
Doctoral Training Centre : University of Glasgow
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-
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Sources of Diversity in Axon Patterning: Roles of the Many Isoforms of the Transcription Factor, Lola
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The Genetic Specification of Neuron-Target Interactions: The Role of LOLA
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The Genetic Specification of Neuron-target Interactions: The Role of LOLA
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国内基金
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