A study of the process timing and organization has been done in a Radiology Department where Radiology Information System (RIS) and Picture Archiving and Communication System (PACS) are working. The workflow times hav...A study of the process timing and organization has been done in a Radiology Department where Radiology Information System (RIS) and Picture Archiving and Communication System (PACS) are working. The workflow times have been directly read from RIS database. In particular, Execution and Reporting steps were considered. Afterwards, data have been analyzed through a statistical elaboration and results were compared with data, coming from studies performed on similar process, collected with a stopwatch method. Possible “bottlenecks” can be evidenced in the process structure. Moreover, comparing hospitals with the same RIS/PACS system, different internal organization is emphasized.展开更多
Objective To determine a network solution to meet the network requirements of the heavy data flow, load balance, and potential network storms from expansion of picture archiving and communication system (PACS) appli...Objective To determine a network solution to meet the network requirements of the heavy data flow, load balance, and potential network storms from expansion of picture archiving and communication system (PACS) application.Methods Intel Netstructure 480T Giga Switch was used as the main switch and connected to each building by fiber channel at 1 Giga speed to archive 100 MB/s to each port. At the same time, the in-dependence of the original network construction was physically kept. The layer 3 and 4 switchers were used as load balance to reduce the heavy load of the network, and all the cabling for PACS used the super CAT5 along with the Intel NetStructure 1520 to prepare for potential network storms.Results An advanced intranet was set up to fully meet the high standard requirement of the PACS. The foundation for upgrading the whole network system to 1 Giga application was built to achieve sharing and transmission of images, information, and patient data within the hospital. The base was established for the standardized management of the hospital.Conclusion Good planning is the first step in setting up PACS, and the equipment forms the necessary platform to run PACS and all kinds of hospital information system (HIS). The networking construction is the foundation of e-hospital.展开更多
目的探讨医用胶片、报告自助打印系统的应用情况。方法医用胶片、报告自助打印系统和图像存储与传输系统/放射学信息系统(piCTure arChiving and CommuniCaTionS SySTem/radiology informaTion SySTem,paCS/riS)连接,将计算机断层扫描...目的探讨医用胶片、报告自助打印系统的应用情况。方法医用胶片、报告自助打印系统和图像存储与传输系统/放射学信息系统(piCTure arChiving and CommuniCaTionS SySTem/radiology informaTion SySTem,paCS/riS)连接,将计算机断层扫描图像排版后形成的电子胶片发送至paCS按需打印服务器,医生研究判读图像后书写的电子诊断报告发送至riS服务器内保存,等待与之匹配的信息。患者在医用胶片、报告自助打印系统终端的激光发射口处扫描条码,检索信息发回至paCS按需打印服务器和riS服务器,将保存在服务器中的电子胶片和电子报告按条码信息要求传输到医用胶片、报告自助打印系统的终端,即可按需自助打印胶片与诊断报告。结果 2015年2月2日—2016年6月2日有1.9%出现扫描条形码后不能正常取胶片和报告。医院CT室每天平均工作量200例次,3~4例次不能完成自助打印胶片和报告。结论胶片、诊断报告与条码信息一一对应,杜绝了胶片、报告发放过程中'张冠李戴'现象的发生;同时,也降低了登记台护士和扫描技师的工作强度。展开更多
文摘A study of the process timing and organization has been done in a Radiology Department where Radiology Information System (RIS) and Picture Archiving and Communication System (PACS) are working. The workflow times have been directly read from RIS database. In particular, Execution and Reporting steps were considered. Afterwards, data have been analyzed through a statistical elaboration and results were compared with data, coming from studies performed on similar process, collected with a stopwatch method. Possible “bottlenecks” can be evidenced in the process structure. Moreover, comparing hospitals with the same RIS/PACS system, different internal organization is emphasized.
文摘Objective To determine a network solution to meet the network requirements of the heavy data flow, load balance, and potential network storms from expansion of picture archiving and communication system (PACS) application.Methods Intel Netstructure 480T Giga Switch was used as the main switch and connected to each building by fiber channel at 1 Giga speed to archive 100 MB/s to each port. At the same time, the in-dependence of the original network construction was physically kept. The layer 3 and 4 switchers were used as load balance to reduce the heavy load of the network, and all the cabling for PACS used the super CAT5 along with the Intel NetStructure 1520 to prepare for potential network storms.Results An advanced intranet was set up to fully meet the high standard requirement of the PACS. The foundation for upgrading the whole network system to 1 Giga application was built to achieve sharing and transmission of images, information, and patient data within the hospital. The base was established for the standardized management of the hospital.Conclusion Good planning is the first step in setting up PACS, and the equipment forms the necessary platform to run PACS and all kinds of hospital information system (HIS). The networking construction is the foundation of e-hospital.
文摘目的探讨医用胶片、报告自助打印系统的应用情况。方法医用胶片、报告自助打印系统和图像存储与传输系统/放射学信息系统(piCTure arChiving and CommuniCaTionS SySTem/radiology informaTion SySTem,paCS/riS)连接,将计算机断层扫描图像排版后形成的电子胶片发送至paCS按需打印服务器,医生研究判读图像后书写的电子诊断报告发送至riS服务器内保存,等待与之匹配的信息。患者在医用胶片、报告自助打印系统终端的激光发射口处扫描条码,检索信息发回至paCS按需打印服务器和riS服务器,将保存在服务器中的电子胶片和电子报告按条码信息要求传输到医用胶片、报告自助打印系统的终端,即可按需自助打印胶片与诊断报告。结果 2015年2月2日—2016年6月2日有1.9%出现扫描条形码后不能正常取胶片和报告。医院CT室每天平均工作量200例次,3~4例次不能完成自助打印胶片和报告。结论胶片、诊断报告与条码信息一一对应,杜绝了胶片、报告发放过程中'张冠李戴'现象的发生;同时,也降低了登记台护士和扫描技师的工作强度。