亚洲知识产权资讯网为知识产权业界提供一个一站式网上交易平台,协助业界发掘知识产权贸易商机,并与环球知识产权业界建立联系。无论你是知识产权拥有者正在出售您的知识产权,或是制造商需要购买技术以提高操作效能,又或是知识产权配套服务供应商,你将会从本网站发掘到有用的知识产权贸易资讯。

A Method for Obtaining Depth of Interaction in Pixelated Scintillator Detectors

技术优势
Increased spatial resolution and sensitivityModification of existing scintillation detectors and no new material requiredReduced size of detectors, and thus low overall cost
技术应用
Pre-clinical and clinical PET imaging CT camerasOther scintillator based devices such as gamma cameras, gamma ray detectors, radioactive detectors for industrial purposes etc.
详细技术说明
UCLA researchers have developed a method to gain DOI information using currently available scintillator detectors made of bismuth germanate (BGO). Their method allows for continuous DOI information, and the design can distinguish between different scattered events in the detector. Their rational design and geometry also increases the spatial resolution by optimizing the light output from the scintillator. Test runs in the lab show their designed scintillator can efficiently distinguish between 3 DOI bins.
*Abstract
UCLA researchers in the Department of Molecular and Medical Pharmacology have developed a method to increase the spatial resolution for PET-based imaging.
*Principal Investigation

Name: Arion Xenofon Hadjioannou

Department:


Name: David Prout

Department:


Name: Yanisley Valenciaga

Department:

其他

Background

A scintillator detector uses the energy of gamma rays to generate photons, which can then be detected and read as an electric signal. Scintillator detectors have huge applications in medical imaging devices such as positron emission tomography (PET). However, current designs of the scintillation detectors reduce the light output and introduce ‘parallalax error’, a discrepancy in the position of interaction. Parallalax error is particularly challenging for circular detectors and a method that can measure the exact depth of interaction (DOI) will be useful for pre-clinical PET imaging. Several methods have been proposed to gain DOI information but these provide limited spatial information and often result in low signal to noise.


Additional Technologies by these Inventors


Tech ID/UC Case

29042/2016-99B-0


Related Cases

2016-99B-0

国家/地区
美国

欲了解更多信息,请点击 这里
移动设备