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本文引用的文献

1
Electronic time-stamping: the notary public goes digital.电子时间戳记:公证人走向数字化。
Science. 1993 Jul 9;261(5118):162-3. doi: 10.1126/science.261.5118.162.

一个基于密码学的医学图像信任中心。

A cryptologic based trust center for medical images.

作者信息

Wong S T

机构信息

Department of Radiology, School of Medicine, University of California, San Francisco 94143, USA.

出版信息

J Am Med Inform Assoc. 1996 Nov-Dec;3(6):410-21. doi: 10.1136/jamia.1996.97084514.

DOI:10.1136/jamia.1996.97084514
PMID:8930857
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC116325/
Abstract

OBJECTIVE

To investigate practical solutions that can integrate cryptographic techniques and picture archiving and communication systems (PACS) to improve the security of medical images.

DESIGN

The PACS at the University of California San Francisco Medical Center consolidate images and associated data from various scanners into a centralized data archive and transmit them to remote display stations for review and consultation purposes. The purpose of this study is to investigate the model of a digital trust center that integrates cryptographic algorithms and protocols seamlessly into such a digital radiology environment to improve the security of medical images.

MEASUREMENTS

The timing performance of encryption, decryption, and transmission of the cryptographic protocols over 81 volumetric PACS datasets has been measured. Lossless data compression is also applied before the encryption. The transmission performance is measured against three types of networks of different bandwidths: narrow-band Integrated Services Digital Network, Ethernet, and OC-3c Asynchronous Transfer Mode.

RESULTS

The proposed digital trust center provides a cryptosystem solution to protect the confidentiality and to determine the authenticity of digital images in hospitals. The results of this study indicate that diagnostic images such as x-rays and magnetic resonance images could be routinely encrypted in PACS. However, applying encryption in teleradiology and PACS is a tradeoff between communications performance and security measures.

CONCLUSION

Many people are uncertain about how to integrate cryptographic algorithms coherently into existing operations of the clinical enterprise. This paper describes a centralized cryptosystem architecture to ensure image data authenticity in a digital radiology department. The system performance has been evaluated in a hospital-integrated PACS environment.

摘要

目的

研究能整合加密技术与图像存档和通信系统(PACS)以提高医学图像安全性的切实可行的解决方案。

设计

加利福尼亚大学旧金山医学中心的PACS将来自各种扫描仪的图像及相关数据整合到一个集中的数据存档中,并将其传输到远程显示站以供查看和会诊。本研究的目的是探究一种数字信任中心模型,该模型能将加密算法和协议无缝整合到这样的数字放射学环境中,以提高医学图像的安全性。

测量

已测量了81个容积式PACS数据集上加密协议的加密、解密和传输的定时性能。在加密前还应用了无损数据压缩。针对三种不同带宽的网络测量传输性能:窄带综合业务数字网、以太网和OC-3c异步传输模式。

结果

所提出的数字信任中心提供了一种密码系统解决方案,以保护医院中数字图像的保密性并确定其真实性。本研究结果表明,诸如X光和磁共振图像等诊断图像可在PACS中常规加密。然而,在远程放射学和PACS中应用加密是通信性能与安全措施之间的一种权衡。

结论

许多人不确定如何将加密算法连贯地整合到临床企业的现有操作中。本文描述了一种集中式密码系统架构,以确保数字放射科中图像数据的真实性。该系统性能已在医院集成的PACS环境中进行了评估。