Light-guide Image Processing (LIP) 3D printed snapshot spectrometer for molecular imaging
Light-guide Image Processing (LIP) 3D printed snapshot spectrometer for molecular imaging
批准号:
10613348
负责人:
TOMASZ S TKACZYK
金额:
$22.79万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2022
资助国家:
美国
项目状态:
未结题
起止时间:
2022-05-01 至 2025-02-28
关键词:
3-Dimensional3D PrintAddressAreaBiologicalBiosensorCancer DetectionCellsCollectionColorComplexConsumptionCoupledCustomCyclic AMPDataDedicationsDevelopmentDevicesEngineeringEvaluationEventFaceFiberFiber OpticsFinlandFluorescence Resonance Energy TransferGenerationsGeometryGermanyGoalsImageImaging DeviceImaging TechniquesInvestigationIslets of LangerhansJapanLeftLightLight MicroscopeLightingMapsMeasurementMethodsMicroscopeMicroscopyMorphologic artifactsNoiseOpticsOrangesOrganizational ProductivityOutputPerformancePhotobleachingPhototoxicityProcessRecording of previous eventsResearchResearch PersonnelResolutionRiceSamplingScanningSideSignal TransductionSpectrometrySpeedStructureStructure of beta Cell of isletSystemTechniquesTechnologyTestingTimeTrainingUniversitiesWashingtonWorkbasebiological systemscellular imagingdata acquisitiondesignexperimental studyfabricationfluorescence imagingfluorophoreimage guidedimage processingimaging modalityimaging systemimprovedinnovative technologiesinsightinstrumentmanufacturemanufacturing processmetermolecular imagingmultidimensional datanew technologyoptical fiberphotonicsprototypequantumreconstructionremote sensingsensorspectrographtooltwo-photon
中文摘要
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英文摘要
Light-guide Image Processing (LIP) 3D printed snapshot spectrometer for molecular imaging
The overall goal of this research is to develop a new generation of a high performance, compact,
snapshot hyperspectral imaging device that is compatible with research grade light microscopes.
To accomplish this goal we will build a Light-guide 3D printed Imaging Processing spectrometer.
The LIP Spectrometer will leverage two innovative technologies: fiber optics and 2-photon additive
manufacturing to allow effective fabrication of custom fiber bundles providing different input vs.
output organizations. These custom bundles will capture densely packed input and yield an
arbitrary output with void spaces that allow spectral information to be spread out. Thus, the LIP
device will convert an image from 2D image (input) to separated spatial-spectral information (after
dispersion) on a large format sCMOS/CCDs image sensor. The proposed approach requires no
significant computation or processing to create the (x, y, λ) data cube. Simple data re-organization
will be sufficient to create spectral cubes.
LIP spectrometer will be a widefield method acquiring full spectral information simultaneously
from every pixel and therefore it will offer significant advantages in imaging speed and signal
collection. The LIP spectrometer will allow changing spectral / spatial sampling through different
fiber bundle and disperser configurations. The project will pursue two specific aims: (1) developing
a proof-of-concept LIP spectrometer (250x250x60 over visible range 470—670nm) and (2) testing
the LIP Spectrometer the dynamic range, imaging speed and sampling over in reference to other
techniques like IMS or scanning methods. We will also perform imaging in several living cell
imaging applications. These experiments will focus on tests in dynamic biological systems,
specifically to study [ATP]/[ADP] ratio, cAMP signaling, and Ca2+ dynamics investigated in Dr.
Piston’s lab. We will also quantitatively evaluate the results from the LIP, against the Zeiss
LSM880, Optical Insights Spectral DV commercial systems and Image Mapping Spectrometry
(IMS) developed previously by project’s PI (Dr.Tkaczyk).
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
Fabrication of waveguide directional couplers using 2-photon lithography.
使用 2 光子光刻技术制造波导定向耦合器。
DOI:
10.1364/oe.495363
发表时间:
2023
期刊:
Optics express
影响因子:
3.8
作者:
[Flynn,Christopher, Cao,Haimu, Applegate,BrianE, Tkaczyk,TomaszS]
通讯作者:
Tkaczyk,TomaszS
Light-guide Image Processing (LIP) 3D printed snapshot spectrometer for molecular imaging
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海外基金