NOVEL PHOTOSENSOR FOR SCINTILLATION CAMERAS
NOVEL PHOTOSENSOR FOR SCINTILLATION CAMERAS
批准号:
6549371
负责人:
BRADLEY E PATT
金额:
$10.0万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-07-01 至 2003-06-30
中文摘要
描述(由申请人提供):自20世纪50年代以来,在核医学伽马照相机的建造中使用光电倍增管(pmt)的情况基本没有改变。最近,包括我们在内的几个团队都在努力开发各种类型的固态伽马相机,因为它们在性能、尺寸、重量和成本方面都有很大的改进。迄今为止,基于固态探测器的伽马相机还没有达到所有这些目标,因为迄今为止所探索的固态探测器技术的基本限制。固态光电探测器的性能受其电容和漏电流的影响而受到噪声的限制。我们在硅漂移光电探测器(sdp)的开发方面取得了重大进展,该探测器可直接替代Anger相机中的PMT。这些新型探测器的主要优点是其极小的电容(与探测器尺寸无关)和低噪声。然而,到目前为止,这些设备需要大量的冷却(δ a =50摄氏度)。
英文摘要
DESCRIPTION (provided by applicant):The use of Photomultiplier Tubes (PMTs) in the construction of gamma cameras for nuclear medicine has been largely unchanged since the 1950's. Recently there has been an intensive effort by several groups including ourselves to develop various types of solid state gamma cameras because they offer vast improvements in performance, size and weight, and cost. To date gamma cameras based on solid state detectors have not achieved all of these goals because of basic limitations of the solid-state detector technologies explored so far. The performance of solid-state photodetectors is limited by noise due to their capacitance and leakage current. We have made significant progress on the development of silicon drift photodetectors (SDPs) for direct replacement of the PMT's in Anger cameras. The main advantage of these new detectors is their extremely small capacitance (independent of detector size) and low noise. However until now these devices have needed a large amount of cooling (deltaT=50 degrees C).
During the proposed Phase I effort we propose to investigate a significant innovation in drift detector design that adds internal gain to the drift detector. This mitigates leakage current noise so that the new devices do not have to be cooled. We propose to fabricate test structures showing the feasibility of the approach in Phase I and to finalize the technology during Phase II. This technology will result in vastly superior performance and low cost compared to other technologies such as APDs, PIN diodes, proposed as PMT replacements in the past. These novel devices will be assembled into a 20cm diameter prototype Anger camera during Phase II.
PROPOSED COMMERCIAL APPLICATION: This technology has potential for replacement of photomultiplier tubes used in conjunction with scintillation crystals for gamma-ray spectroscopy, nuclear medical imaging, photon counting, etc. The overall market for the instrumentation in these areas is in the billions of dollars. The portion of this market addressed by this technology is in the hundreds of millions of dollars.
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