课题基金 / 基金详情

Signal Processing And Instrumentation Section

Signal Processing And Instrumentation Section
信号处理和仪器部分
批准号:
8565484
负责人:
THOMAS J POHIDA
金额:
$107.42万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
关键词:
AblationAdvanced Technology CenterAffectAlgorithmsAnimalsAntineoplastic AgentsAtomic Force MicroscopyAuditoryAutomationBacteriorhodopsinsBehaviorBehavioralBiologicalBiological AssayBiological PreservationBiological ProcessBiologyBiomedical ResearchBiotechnologyBlood VolumeBronchial TreeCardiomyopathiesCellsCellular MembraneCervix DiseasesChemistryChildChromatin FiberClassificationClinicalClinical ResearchCollaborationsCollectionColor VisionsCommunicationCommunication impairmentComputer softwareCustomDNAData AnalysesDelawareDepartment of EnergyDetectionDevelopmentDevicesDiagnosisDigital Signal ProcessingDisciplineDiseaseDissectionDocumentationDrosophila genusElectron Spin Resonance SpectroscopyElectronicsEndoscopesEngineeringEnvironmentEvaluationFetal MonitoringFluorescenceFluorescence MicroscopyFosteringFrequenciesFunctional Magnetic Resonance ImagingGeneticHealthHematomaHistopathologyHospitalsHousingHuman PapillomavirusHydrogelsImageImaging technologyInstitutesIntramural Research ProgramKnowledgeLaboratoriesLaboratory ResearchLasersLifeLightingLogicMagnetic Resonance ElastographyMagnetic Resonance ImagingMalignant NeoplasmsMathematicsMechanicsMedical centerMethodologyMethodsMicroarray AnalysisMicrodissectionMicrofabricationMicrofluidicsMicroscopyMoldsMolecular AnalysisMonitorMonkeysMorphologic artifactsMotionMusMuscle TensionMutationNational Heart, Lung, and Blood InstituteNational Human Genome Research InstituteNational Institute of Allergy and Infectious DiseaseNational Institute of Arthritis and Musculoskeletal and Skin DiseasesNational Institute of Biomedical Imaging and BioengineeringNational Institute of Child Health and Human DevelopmentNational Institute of Dental and Craniofacial ResearchNational Institute of Diabetes and Digestive and Kidney DiseasesNational Institute of Environmental Health SciencesNational Institute of Mental HealthNational Institute of Neurological Disorders and StrokeNational Institute on Deafness and Other Communication DisordersNear-Infrared SpectroscopyOptical Coherence TomographyOpticsOxygenPainPathologyPharmacodynamicsPhasePhenotypePhysicsPositioning AttributePositronPrintingProcessProductionProgram Research Project GrantsProstateProstatectomyProtein MicrochipsPsychological StressRadioRadioisotopesResearchResearch InfrastructureResearch PersonnelResolutionResourcesRoboticsSalivaScanningScienceScientistSignal TransductionSkinSoftware EngineeringSolutionsSpecimenSpectrometrySpinalStimulusSubcellular structureSyndromeSystemSystems AnalysisSystems BiologyTechniquesTechnologyTestingTimeTissue FixationTissue MicroarrayTissuesTrainingTraumatic Brain InjuryUltrasonographyUnited States National Institutes of HealthUniversitiesVisualWashingtonanalogarmbasebehavior measurementbrain tissuecDNA Arrayscancer imagingcancer surgerycancer therapychromosome microdissectioncomputer programcomputer sciencecomputerized data processingdata acquisitiondesigndetectordigitaldrug efficacyexperienceflygait examinationgenetic analysishigh rewardhigh riskimage processingimaging probeimprovedin vivoin vivo Modelinstrumentinstrumentationmicromanipulatormouse modelneoplastic cellneurophysiologynonhuman primatenovelovarian neoplasmpractical applicationprenatalprototyperelating to nervous systemresearch and developmentresearch studysimulationsingle moleculespectroscopic imagingsuburbsystems researchtechnology developmenttheoriesthree-dimensional modelingtransmission processtwo-photonvocalization

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中文摘要
翻译
信号处理和仪器科(SPIS)的研究和开发活动是与美国国立卫生研究院科学家的合作努力,并经常导致独特的,专门的生物医学仪器的开发。其他项目涉及系统仿真和数据分析所需的信号和视频处理算法开发。内部能力和成就已经使SPIS成为一个工程焦点,通过实验、理论开发和设计的连续迭代,加强IRP交互环境,促进科学发展。在25个活跃项目中,SPIS与18个NIH研究所和中心在技术和方法开发项目上进行了合作。过去和目前的合作项目,以及相关的研究包括:
英文摘要
The research and development activities of the Signal Processing and Instrumentation Section (SPIS) are collaborative efforts with NIH Institute scientists, and often result in the development of unique, specialized biomedical instruments. Other projects involve signal and video processing algorithm development required for system simulation and data analysis. In-house capabilities and accomplishments have established SPIS as an engineering focal point that strengthens the IRP interactive environment facilitating science through successive iterations of experiment, theory development, and design. With 25+ active projects, SPIS has collaborated with 18 NIH Institutes and Centers on technology and methodology development projects. Example past and current collaborative projects, as well as associated research studies include: 1. Laser Capture Tissue Microdissection (LCM) for Molecular Analysis of Disease States and Normal Development - Expression Microdissection (xMD) (NCI, NICHD, NIMH, NIBIB, and CIT). 2. Electron Paramagnetic Resonance (EPR) Imaging of In Vivo Oxygen Status Associated with Cancer Treatment Studies (NCI, NINDS, and CIT). 3. Two-Photon Excitation Fluorescence Microscopy (TPEFM) Motion Tracking to Study In-vivo Subcellular Structures (NHLBI). 4. Technologies for Fly Optomotor Behavioral Analysis and Genetic Dissection of Color-vision Circuit Studies (NICHD). 5. Systems Enabling Study of Integration of Chromatic Information in the Higher Visual Center of Drosophila (NICHD). 6. Advanced Methods of Whole Mount Sectioning of Prostatectomy Specimens for Imaging, Diagnosis, and Pathology Studies - Correlating In Vivo Prostate MRI and Histopathology using Individualized MR-Based Molds (NCI and CIT). 7. Mouse Activity Monitoring System (MAMS) for Phenotyping and Cancer Treatment Evaluation (NCI and NICHD). 8. Quantitative Fluorescence Lifetime Imaging for Disease Detection and Monitoring (NICHD, NCI, NIBIB, and Washington University). 9. Tumor Cell Monitoring Strategies to Study the Effects of Microenvironment on Anti-cancer Drug Efficacy In Culture Monitoring and Control Technologies for Modeling In Vivo Conditions (NCI). 10. Quantitative Characterization of Normal and Disease Cervix Tissue (NICHD and NHLBI). 11. High-resolution Gamma Imager and Positron Position Imager for Small Animal Imaging of Radioisotopes for Cancer Treatment (NCI, CC, and Thomas Jefferson National Accelerator Facility). 12. Signal Processing of Autonomic Measures for Behavioral Neurophysiology (NIMH). 13. Spectral Domain Optical Coherence Tomography (OCT) for Tissue Motion Tracking and Skin Blood Volume Imaging (NHLBI and NICHD). 14. Photo Dynamic Therapy (PDT) Technologies Integrated with Cancer Imaging Probes (NCI and NIBIB). 15. A Handheld Field Deployable Hematoma Detector: A Practical Application of Motion as Signal in Near Infra-red Imaging (NICHD) 16. Portable Fluorescence Camera System for Offsite Ovarian Tumor Imaging (NCI, NIBIB, and INOVA Fairfax Hospital). 17. Image-Based Robotic Targeting System to Control Micromanipulators for Living Biological Tissues (Brain/Spinal) Studies (NINDS and Columbia University). 18. Functional Near Infrared Spectroscopy Imaging Technologies for the Study of Traumatic Brain Injury (NINDS and NICHD). 19. Fluorescence Photo Activation Localization 2D/3D Microscopy and Analysis System to Study Biological Processes (NCI, NIAID, NICHD, NIBIB, and CIT). 20. Tissue Microarray (TMA) Technologies for Cancer Studies (NCI, Childrens National Medical Center, and Suburban Hospital Pathology). 21. Temporal-spectral Programmable Lighting for Health and Rhythm Entrainment (NICHD, OD, NINR, Lawrence Berkeley National Laboratory, and Department of Energy). 22. Nonhuman Primate Maternal-fetal Monitoring System for Investigating the Affects of Prenatal Psychological Stress (NICHD). 23. Bronchial Tree 3D Models to Enable Development of Radio-frequency and Laser Ablation Methodologies (CC, NCI). 24. Visible and IR Optical Scanning Spectrometry to Study Energy Transduction by Bacteriorhodopsin (NHLBI, NIBIB, National Institute of Standards and Technology (NIST), Center for Advanced Research in Biotechnology (CARB) Institute, and Syracuse University). 25. Muscle Tension Transients Collection and Analysis Technologies to Study Cardiomyopathy Mutations (NHLBI). 26. Real-time Fluorescence-Enhanced Imaging as an Aid to Cancer Surgery (NCI and NIBIB). 27. Methods to Indentify Neural Substrates of Behavior in Flies - Flight Initiation Detection System (NIMH). 28. Technologies to Assess Saliva Production in Association with Sjgren Syndrome Studies (NIDCR). 29. High-Throughput Ultrasound-accelerated Tissue Fixation Technologies to Improve Biomolecule Preservation (NCI and Armed Forces Institute of Pathology (AFIP)). 30. MRI Motion Artifacts Technologies to Generate Phantom Motion for the Study of Correction Strategies (NICHD and CIT). 31. Technologies for low-field MRI (NICHD). 32. Automated Fabrication Technologies for Hydrogels with Gradient of Compliance: Application to Cell Mechanotaxis and Durotaxis (NICHD). 33. High Resolution Vibrational Spectroscopic Imaging to Study Cellular Membranes (NIDDK). 34. Microfluidics, Microfabrication, and Microanalysis Technologies for Molecular Analysis and Biomedical Research (NIBIB and National Institute of Standards and Technology (NIST)). 35. Functional MRI (fMRI) Methodologies and Devices to Study Communication Disorders and Treatments (NIDCD). 36. Classification of Monkey Vocalizations for Neurophysiological Studies involving Auditory Processing (NIMH). 37. Genetics and Mechanisms of Pain - Developing a Mouse Model - A Non-injurious Assay to Study Mechanisms of Pharmacodynamics and Transmission of Noxious Stimulus (CC and Children's National Medical Center). 38. Functional MRI to Study Neural Processes Underlying Self-agency (NINDS and University of Miami). 39. Real-time Multispectral Endoscope Imaging as an Aid to Cancer Surgery and HPV Studies (NCI and NIBIB). 40. Gait Analysis Technologies (CC, NICHD, and University of Delaware). 41. cDNA and Protein Microarray Technologies (NCI, NHGRI, NIEHS). 42. Chromosome Microdissection Technologies (NICHD, NHGRI). 43. Single Molecule, DNA, and Chromatin Fiber Mechanics and Manipulation Technologies (NCI, NICHD). 44. Atomic Force Microscopy (AFM) Imaging (NIAMS). 45. Magnetic Resonance Elastography (MRE) Imaging (NINDS). 46. Ultrasound Imaging (NHLBI).
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Signal Processing And Instrumentation Section
Signal Processing And Instrumentation Section
Signal Processing And Instrumentation Section
Signal Processing And Instrumentation Section