Molecular Photoacoustic Imaging for the Detection of Sentinel Lymph Node Metastas
用于检测前哨淋巴结转移的分子光声成像
基本信息
- 批准号:8317207
- 负责人:
- 金额:$ 3.85万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2012
- 资助国家:美国
- 起止时间:2012-05-01 至 2015-04-30
- 项目状态:已结题
- 来源:
- 关键词:AcademiaAlgorithmsCaliberCancer BiologyCancer ModelCancer PatientCancerousCellsClinicalCoupledCouplingDetectionDiagnosisEndocytosisEndosomesEnrollmentEpidermal Growth Factor ReceptorEpithelialEpithelial NeoplasmsEthicsExhibitsFrequenciesGoalsGoldHistologyImageImaging TechniquesImaging technologyIn VitroIncubatedInjection of therapeutic agentKnowledgeLasersLymphaticLymphatic SystemMalignant NeoplasmsMeasuresMediatingMedicalMentorsMethodsMicrometastasisModelingMolecularMusNanosphereNeoplasm MetastasisPatientsPhysiologic pulseProtocols documentationPublic HealthResearchResearch PersonnelResectedResolutionSamplingSentinelSentinel Lymph NodeSquamous cell carcinomaSystemTechnical ExpertiseTechnologyTestingTherapeuticTimeTrainingUltrasonographyWritingabsorptionbioimagingcancer cellcancer imagingcareercostdesignexperienceimage processingimprovedin vivolymph nodesmouse modelnanobiotechnologynanosecondnanosensorsoutcome forecastoverexpressionplasmonicspre-clinicalprogramsreceptorreceptor mediated endocytosisresearch clinical testingskillsspectroscopic imaging
项目摘要
DESCRIPTION (provided by applicant): In cancer patients, determination of whether a malignancy has spread is the single most important factor used to develop a therapeutic plan and to predict prognosis. In most cases, cancer cells initially spread through regional lymph nodes. Therefore, clinical evaluation for the presence of regional lymph node metastases is of paramount importance. Unfortunately, there are no real-time, non-invasive clinical methods that can reliably detect and diagnose micrometastases in lymph nodes. Thus, there is an urgent clinical need for an imaging technique that is widely available, is non-invasive and simple to perform, is safe, and can reliably detect and adequately diagnose lymph node micrometastases in real time. The overall goal of our research program is to develop an advanced, in vivo, noninvasive, molecular specific imaging technology, i.e., integrated ultrasound and photoacoustic imaging combined with targeted plasmonic nanosensors, capable of immediate and accurate assessment of sentinel lymph node micrometastases in real time. The first aim of the project is to develop a combined photoacoustic and ultrasound imaging system and protocol. The system will consist of a high frequency ultrasound machine coupled with a pulsed nanosecond tunable laser. The second aim is to develop spectroscopic image processing algorithms to detect sentinel lymph node metastasis after the injection of plasmonic nanosensors. The imaging system and algorithms will be tested on in vitro cell samples of nanosensors incubated with normal and cancerous cells. The final aim is to use the imaging system and spectroscopic algorithms to detect lymph node micrometastases in a murine cancer model in vivo. The imaging results will be correlated with histology of the resected lymph nodes. The training plan proposed to accomplish these goals has been designed to establish trainee mentors with specific technical expertise. The selected mentors are experts in ultrasound and photoacoustic imaging and image processing. The PI will enroll in formal training in the ethical conduct of research and in training specific to his research field, to prepare him for independent research.
PUBLIC HEALTH RELEVANCE: In cancer patients, the determination of the spread of malignancy is the single most important factor to develop a therapeutic plan and predict prognosis. In most cases, cancer cells initially spread through regional lymph nodes. Thus, a technology such as molecular specific ultrasound and photoacoustic lymphatic imaging, capable of in-vivo, noninvasive and accurate assessment of regional metastases in real time, can simplify and improve management of patients with epithelial malignancies, significantly improve public health, and reduce medical costs.
描述(由申请人提供):在癌症患者中,确定恶性肿瘤是否扩散是用于制定治疗计划和预测预后的最重要因素。在大多数情况下,癌细胞最初通过区域淋巴结扩展。因此,对区域淋巴结转移的存在的临床评估至关重要。不幸的是,没有实时的非侵入性临床方法可以可靠地检测和诊断淋巴结中的微转移。因此,紧急的临床需求需要广泛可用的成像技术,无创和易于执行,安全,并且可以可靠地检测并充分诊断为实时诊断淋巴结微发生。我们的研究计划的总体目标是开发一种先进的体内,无创,分子特异性成像技术,即集成超声和光声成像,结合有针对性的等离激元纳米传感器,能够立即和准确地评估哨兵淋巴结微米酶,以实时评估。该项目的第一个目的是开发合并的光声和超声成像系统和协议。该系统将由高频超声电机和脉冲纳米秒可调激光组成。第二个目的是开发光谱图像加工算法,以检测血浆纳米传感器注射后的前哨淋巴结转移。成像系统和算法将在与正常和癌细胞孵育的纳米传感器的体外细胞样品上进行测试。最终目的是使用成像系统和光谱算法在体内检测淋巴结微型转移酶。成像结果将与切除的淋巴结的组织学相关。旨在实现这些目标的培训计划旨在建立具有特定技术专业知识的学员导师。选定的导师是超声和光声成像和图像处理的专家。 PI将参加研究和特定研究领域的培训的正式培训,以便他为独立研究做好准备。
公共卫生相关性:在癌症患者中,确定恶性肿瘤是制定治疗计划并预测预后的最重要因素。在大多数情况下,癌细胞最初通过区域淋巴结扩展。因此,诸如分子特异性超声和光声淋巴成像之类的技术,能够实时进行体内,无创和准确评估区域转移,可以简化和改善上皮恶性肿瘤患者的管理,并显着改善公共健康状况,并减少医疗健康费用。
项目成果
期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
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Geoffrey P. Luke其他文献
Spectroscopic Photoacoustic Imaging for the Detection of Lymph Node Metastases
用于检测淋巴结转移的光谱光声成像
- DOI:
- 发表时间:
2015 - 期刊:
- 影响因子:0
- 作者:
Geoffrey P. Luke;K. Sokolov;S. Emelianov - 通讯作者:
S. Emelianov
Three-Dimensional Image Reconstruction Using Compressed Interferometric Detection of Photoacoustic Waves
使用光声波压缩干涉检测重建三维图像
- DOI:
- 发表时间:
2023 - 期刊:
- 影响因子:0
- 作者:
John E. Heggland;Geoffrey P. Luke - 通讯作者:
Geoffrey P. Luke
Spectroscopic Photoacoustic Imaging of Gold Nanorods.
金纳米棒的光谱光声成像。
- DOI:
- 发表时间:
2017 - 期刊:
- 影响因子:0
- 作者:
A. V. Namen;Geoffrey P. Luke - 通讯作者:
Geoffrey P. Luke
Snap-valve cerebral shunt design for intracranial pressure operation and ultrasound visualization.
用于颅内压操作和超声可视化的卡压阀脑分流器设计。
- DOI:
- 发表时间:
2019 - 期刊:
- 影响因子:2.2
- 作者:
S. Mitchell;G. Grangard;W. Kahouli;C. Dalldorf;A. Crain;Eldred Lee;A. Hamlin;L. Feeney;H. Johnstone;Geoffrey P. Luke;S. G. Diamond;David F. Bauer - 通讯作者:
David F. Bauer
Geoffrey P. Luke的其他文献
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{{ truncateString('Geoffrey P. Luke', 18)}}的其他基金
Multiplex Ultrasound Imaging for the Detection of Head and Neck Lymph Node Micrometastases
用于检测头颈部淋巴结微转移的多重超声成像
- 批准号:
10870266 - 财政年份:2023
- 资助金额:
$ 3.85万 - 项目类别:
Ultrasound neurostimulation with piezoelectric nanoparticles
压电纳米粒子超声神经刺激
- 批准号:
10312713 - 财政年份:2020
- 资助金额:
$ 3.85万 - 项目类别:
Remote Neurostimulation with Ultrasound-activated Piezoelectric Nanoparticles
使用超声波激活压电纳米粒子进行远程神经刺激
- 批准号:
9766304 - 财政年份:2018
- 资助金额:
$ 3.85万 - 项目类别:
Super-Localization Ultrasound Imaging with Targeted Laser-activated Nanodetectors
使用靶向激光激活纳米探测器进行超定位超声成像
- 批准号:
9267468 - 财政年份:2016
- 资助金额:
$ 3.85万 - 项目类别:
Molecular Photoacoustic Imaging for the Detection of Sentinel Lymph Node Metastas
用于检测前哨淋巴结转移的分子光声成像
- 批准号:
8473052 - 财政年份:2012
- 资助金额:
$ 3.85万 - 项目类别:
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