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正电子发射断层扫描(PET)中局部脑血流量研究的假设检验

Examination of assumptions for local cerebral blood flow studies in PET.

作者信息

Koeppe R A, Hutchins G D, Rothley J M, Hichwa R D

机构信息

Cyclotron/P.E.T. Facility, Department of Internal Medicine, University of Michigan Medical School, Ann Arbor 48109-0552.

出版信息

J Nucl Med. 1987 Nov;28(11):1695-703.

PMID:3499491
Abstract

Two common assumptions made in most positron emission tomography (PET) cerebral blood flow techniques have been examined in detail. These are (1) that the blood-borne radioactivity component in the measured PET data is negligible, and (2) that differences in arrival time of the arterial bolus across the brain cause insignificant biases in the estimated cerebral blood flow (CBF) values. Biases in CBF values due to partial failure of these assumptions have been predicted by computer simulation studies and also quantitated for both dynamic and single scan PET methods using H2 15O. Both computer simulations and measured PET data indicate that these assumptions can sometimes cause significant errors in the estimated flow values. The magnitude of these errors depends on the PET technique used (dynamic or static) and on the interval of data included in the flow calculations. The bias caused when these assumptions fail can be considerably reduced by omitting approximately 40 sec of data immediately following tracer administration from the CBF calculations.

摘要

在大多数正电子发射断层扫描(PET)脑血流技术中所做的两个常见假设已被详细研究。这两个假设是:(1)在测量的PET数据中,血源性放射性成分可忽略不计;(2)动脉团注在整个大脑中的到达时间差异对估计的脑血流量(CBF)值造成的偏差微不足道。由于这些假设部分不成立而导致的CBF值偏差已通过计算机模拟研究进行了预测,并且使用H2 15O对动态和单次扫描PET方法进行了量化。计算机模拟和实测PET数据均表明,这些假设有时会在估计的血流值中导致显著误差。这些误差的大小取决于所使用的PET技术(动态或静态)以及血流计算中所包含的数据间隔。通过在CBF计算中省略示踪剂给药后紧接着的大约40秒数据,可以显著减少这些假设不成立时所造成的偏差。

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