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一种用于人胰岛分配的匹配算法。

A matching algorithm for the distribution of human pancreatic islets.

作者信息

Qian Dajun, Kaddis John, Niland Joyce C

机构信息

Division of Information Sciences and Administrative and Bioinformatics Coordinating Center for the Islet Cell Resource Center Consortium, City of Hope National Medical Center, Duarte, California, USA.

出版信息

Comput Stat Data Anal. 2007 Aug;51(12):5494-5506. doi: 10.1016/j.csda.2007.02.030.

Abstract

The success of human pancreatic islet transplantation in a subset of type 1 diabetic patients has led to an increased demand for this tissue in both clinical and basic research, yet the availability of such preparations is limited and the quality highly variable. Under the current process of islet distribution for basic science experimentation nationwide, specialized laboratories attempt to distribute islets to one or more scientists based on a list of known investigators. This Local Decision Making (LDM) process has been found to be ineffective and suboptimal. To alleviate these problems, a computerized Matching Algorithm for Islet Distribution (MAID) was developed to better match the functional, morphological, and quality characteristics of islet preparations to the criteria desired by basic research laboratories, i.e. requesters. The algorithm searches for an optimal combination of requesters using detailed screening, sorting, and search procedures. When applied to a data set of 68 human islet preparations distributed by the Islet Cell Resource (ICR) Center Consortium, MAID reduced the number of requesters that a) did not receive any islets, and b) received mis-matched shipments. These results suggest that MAID is an improved more efficient approach to the centralized distribution of human islets within a consortium setting.

摘要

人类胰岛移植在一部分1型糖尿病患者中取得成功,这使得临床和基础研究对这种组织的需求都有所增加。然而,此类制剂的供应有限,质量也高度可变。在目前全国范围内用于基础科学实验的胰岛分配过程中,专门的实验室试图根据已知研究人员名单将胰岛分发给一个或多个科学家。这种本地决策(LDM)过程已被证明是无效且不理想的。为缓解这些问题,开发了一种胰岛分配计算机匹配算法(MAID),以便更好地将胰岛制剂的功能、形态和质量特征与基础研究实验室(即请求者)所需的标准相匹配。该算法使用详细的筛选、分类和搜索程序来寻找请求者的最佳组合。当应用于胰岛细胞资源(ICR)中心联盟分发的68份人类胰岛制剂数据集时,MAID减少了以下两类请求者的数量:a)未收到任何胰岛的请求者,以及b)收到不匹配批次的请求者。这些结果表明,MAID是在联盟环境中集中分配人类胰岛的一种改进的、更有效的方法。

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