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At least 505 records · Page 28Linked to original sources

Interactive navigation and bronchial tube tracking in virtual bronchoscopy.

An interactive virtual environment for simulation of bronchoscopy is developed. Medical doctor can safely plan their surgical bronchoscopy using the virtual environment without any invasive diagnosis which may risk the patient's health. The 3D pen input device of the system allows the doctor to navigate and visualize the bronchial tree of the patient naturally and interactively. To navigate the patient's bronchial tree, a vessel tracking process is required. While manual tracking is tedious and labor-intensive, fully automatic tracking may not be reliable. We propose a semi-automatic tracking technique called Intelligent Path Tracker which provides automation and enough user control during the vessel tracking. To support an interactive frame rate, we also introduce a new volume rendering acceleration technique, named as IsoRegion Leaping. The volume rendering is further accelerated by distributed rendering on a TCP/IP-based network of low-cost PCs. With these approaches, a 256 x 256 x 256 volume data of human lung, can be navigated and visualized at a frame rate of over 10 Hz in our virtual bronchoscopy system.

Bronchoscopy↗

Access to DNA and protein databases on the Internet.

During the past year, the number of biological databases that can be queried via Internet has dramatically increased. This increase has resulted from the introduction of networking tools, such as Gopher and WAIS, that make it easy for research workers to index databases and make them available for on-line browsing. Biocomputing in the nineties will see the advent of more client/server options for the solution of problems in bioinformatics.

Amino Acid Sequence↗

Remote connection to the Kyushu University Medical Center LAN using digital and analog telephone lines.

SOHO (Small Office/Home Office) has recently become popular, as it makes working at home possible. Computers or Local Area Networks(LAN) connected to the office network from home are necessary for the implementation of this concept. Kyushu University has begun a service connecting home computers to the campus LAN for researchers, staff and students of the Faculty of Medicine. We have two different telephone connection methods. One connects the campus LAN and the home computer LAN using routers through the Integrated Services Digital Network (ISDN). The other connects computers at home to the workstation in the university, using modems and the PPP (Point to Point Protocol) through a public telephone analog line. This paper outlines our university SOHO connection system and discusses the merits and demerits of using telephone line connections.

Academic Medical Centers↗

Web-based access to an online atlas of anatomy: the Digital Anatomist Common Gateway Interface.

A World Wide Web Common Gateway Interface package is described for accessing existing online interactive atlases of anatomy. The Web interface accesses the same 2-D and 3-D images of human neuroanatomy, knee anatomy and thoracic viscera that are currently accessed by a custom interactive atlas in distance learning courses. Although the Web interface is too slow to replace the existing atlas, it provides a parallel access path that has much broader potential for development of a distributed distance learning network in anatomy. By maintaining both access methods to the same information sources we continue to satisfy the fast interactivity needs for our local courses, while at the same time providing a migration path to the Web as the capabilities of Web browsers evolve.

Anatomy, Artistic↗

RESHEN, a best practice approach for secure healthcare networks in Europe.

Electronic communication of healthcare related information (in the framework of Regional Healthcare Information Networks), introduces a number of security risks with regard to confidentiality, integrity and availability, which can become quite crucial taking into account its sensitive nature. Public Key Infrastructure (PKI) is acknowledged as an appropriate means for dealing with such risks, as long as all the involved critical factors are first practically assessed. This paper presents a best-practice approach for secure regional healthcare networks in Europe, examining all the identified crucial parameters (technical, organisational, legal/regulatory, medical and business). Our approach is conducted at two levels (the regional and the European), including the integration of PKI-aware security mechanisms (strong authentication, encryption, digital signature, time-stamping) in three regional pilot sites in Greece, Finland and Germany and demonstrating their interconnection in a pan-European architecture. Following the above approach, some major conclusions are excluded, pointing out existing open issues and possible steps forward.

Access to Information↗

Privacy and security issues in a wide area health communications network.

In 1993 the first national health information service went live in New Zealand, using commercial network services for all communications. This system provides a point of connection for all health personnel, and for those with a legitimate interest in health care information (e.g. insurers): it also provides access to a number of information resources managed on behalf of the government of New Zealand (e.g. index of health care users), as well as to those developed by individual network service providers. Much of the data exchanged across this network is personalised. Since the recipient may not be known personally to the sender, it is vital that the sender has confidence that the recipient will treat personal information according to agreed criteria for privacy. A Code of Practice covering health information was developed under the New Zealand Privacy Act to ensure that the confidence to share confidential data was supported. For large organisations such as hospitals to function efficiently, they need the flexibility to be able quickly to assign user privileges to selected staff without the need for extra paperwork seeking approval from the centre. But the audit trail requires unique identification of the individual undertaking each transaction. This requirement has been addressed. Some of the data moved across the network relates to life-critical issues, e.g. clinical warnings about allergies or serious medical conditions. A failure of communications causing this vital information to be improperly represented in some way on the receivers system could have disastrous consequences. To ensure the integrity of data transfers, user installations have to be certified compliant with standard test scripts before they are authorized for access to these resources.

Accreditation↗

An experimental health smart home and its distributed internet-based information and communication system: first steps of a research project.

We present a study and whole experimental tele-monitoring and medical tele-surveillance system for maintaining patients at home. The project features networked sensors, in a fully equipped apartment, operated by an advanced information and communication system based on Internet, Java, and object oriented modeling. The sensors are connected, mainly wirelessly, with a in-home software module devoted to signals analysis and detection of critical situation such as falls, sickness, sudden palsy, stroke, hypothermia, etc. This module communicates, either via modem or ethernet network, with a remote medical control station in charge of appropriate response to received information and alarms. The system is designed to be a powerful information and communication tools for medical and social workers. It offers a series of functions such as medical file management, user profiles and rights management, drafting and management of ordinances and visit notes, confidentiality of medical information, and management of scenarios of detectable events. The access to the system is allowed to authorized users only (physicians, emergentists, social workers, etc.), and is available on as much authorized computers as needed, by means of a Java applet invoked from any traditional web browsers.

Computer Communication Networks↗

The use of clinical computer workstations as an educational adjunct in prosthodontics.

Current computer systems improve the health professional's ability to store, retrieve, and present visual data in a way never before possible. Health professionals in general are beginning to use computer-based digital imaging to improve the diagnosis and treatment planning of disease processes. The use of computer-based networks to transmit medical and dental data is in its infancy but promises to be the main form of data transmission of the future. This article outlines a few applications presently being used and developed at the Ohio State University College of Dentistry in the preclinical and clinical courses in prosthodontics.

Computer Communication Networks↗

A component-based, distributed object services architecture for a clinical workstation.

Attention to an architectural framework in the development of clinical applications can promote reusability of both legacy systems as well as newly designed software. We describe one approach to an architecture for a clinical workstation application which is based on a critical middle tier of distributed object-oriented services. This tier of network-based services provides flexibility in the creation of both the user interface and the database tiers. We developed a clinical workstation for ambulatory care using this architecture, defining a number of core services including those for vocabulary, patient index, documents, charting, security, and encounter management. These services can be implemented through proprietary or more standard distributed object interfaces such as CORBA and OLE. Services are accessed over the network by a collection of user interface components which can be mixed and matched to form a variety of interface styles. These services have also been reused with several applications based on World Wide Web browser interfaces.

Computer Communication Networks↗

Remote instrument telemaintenance.

In the past decade, great technological progress has been made in telemaintenance of mainframe and mini computers. As hardware technology is now available at an acceptable cost, computer aided trouble-shooting can be adapted to laboratory instrumentation in order to significantly improve repair time, avoid instrument downtime by taking advantage of predictive methods, and provide general diagnostic assistance. Depending on the size of the instrument, the telemaintenance facility can be dedicated to a single instrument or alternatively a telemaintenance server can manage multiple distributed small instruments through a Local Area Network. As complex failures can occur, the local diagnosis capabilities may be exceeded and automatic dialing for connection to computerized Remote Maintenance Centers is needed. The main advantages of such a centre, as compared to local diagnosis systems, are the increased access to more information and experience of failures from instrument installations, and consequently the provision of training data updates for Artificial Neural Networks and Knowledge Based Systems in general. When an abnormal situation is detected or anticipated by a diagnosis module, an automatic alert is given to the user, local diagnosis is activated, and for simple solutions, instructions are given to the operator. In the last resort, a human expert can be alerted who, with remote control tools, can attend to the failures. For both local and remote trouble-shooting, the data provided by the instrument and connected workstation is of paramount importance for the efficiency and accuracy of the diagnosis. Equally, the importance of standardization of telemaintenance communication protocols is addressed.

Clinical Laboratory Information Systems↗

An X-protocol based medical teleconsultation system using low or high speed networks. A specific-design approach.

The objective of this proposal is to provide solutions for the necessities of teleconsultation or telediagnosis among medical professionals, using work stations within the X-Windows environment and applicable in communication lines with an extensive range of bandwidths and operating system independence. Among the advantages sought are savings in transportation, improvement in the quality of the medical attention provided and continued training for the medical professional.

Computer Communication Networks↗

Aspects of computer security: a primer.

As health care organizations continue on the path toward total digital operations, a topic often raised but not clearly understood is that of computer security. The reason for this is simply the vastness of the topic. Computers and networks are complex, and each service offered is a potential security hole. This article describes for the lay person the fundamental points of computer operation, how these can be points attacked, and how these attacks can be foiled--or at least detected. In addition, a taxonomy that should aid system administrators to evaluate and strengthen their systems is described.

Computer Communication Networks↗

Medical volume rendering over the WWW using VRML and JAVA.

The rapid growth of the World Wide Web (WWW) enables access to huge amounts of data and applications. The diversity of data-structures and applications has led to the concept of network computing where the data is encapsulated within the application. The end-user does not have to worry about tools for data manipulation as they are bundled together with the data itself. However, the user usually has to pay a price in the form of degraded performance. While JAVA is gradually taking its place as the network cross platform programming language, it is clear that it currently does not support high-performance visualization. The purpose of this paper is to demonstrate that high performance volume rendering, traditionally reserved for high-end visual computing, can now be made widely available in a cross-platform fashion using VRML and JAVA.

Algorithms↗

Development of interactive patient-based multimedia computer programs in veterinary orthopedic radiology.

Three computerized multimedia programs on large and small animal veterinary orthopedic radiology were developed and implemented for the radiology curriculum as an alternative to traditional film-based laboratory learning. Programs utilized "hot words" (colored text words that displayed an overlaid image label that highlighted lesions) and interactive quizzes which responded appropriately to selected answers. "Hot words" helped students develop confidence in accurate lesion detection and the interactive quizzes transformed learning from a passive to an active process. Multiple examples were provided for reinforcement and concepts were incorporated from other clinical disciplines for curriculum integration. Programs were written using a presentation software program, Toolbook for DOS based platform, and contained radiographic images made by laser-scanning digitization. Multiple students could simultaneously access the programs through a network server. These pilot programs were implemented successfully and computerized multimedia presentation proved to be well suited to teaching radiology. Development of the programs required attention to a number of hardware, software, time and cost factors.

Computer Communication Networks↗

[Multi-bed & multi-parameter central monitoring system based on TCP/IP protocol].

Communication is one of the key problems to a central monitoring system. In this paper we put forward a central monitoring system using TCP/IP as the network protocol, Windows NT4.0 as the platform, forming a Intranet in a hospital. We also discussed the communication problem between the bed-side monitoring station and the central monitoring station in detail and then put forward a new protocol--Hospital Central Monitor Protocol (HCMP) based on TCP/IP to transfer monitoring data. It is easy to achieve tele-monitoring through the current communication subsystem.

Computer Communication Networks↗

Security Services for the HemaCAM Project.

Within the HemaCAM project which deals with automated differential white blood cell count by image processing, a security infrastructure has been integrated. The security services for this demonstrator have been derived from the German health network ONCONET that enables a trustworthy framework for both health professionals and patients as well as supports clinical studies. For the solution, services assuring both communication security and application security have to be provided. This task has been realised by the use of the security token Health Professional Card and an appropriate Trusted Third Party infrastructure.

Communication↗

User evaluation of a graphical user interface for biomedical literature search.

This paper gives a short overview of the Archimedes Network System, an information retrieval system that allows the user to browse, in a visual way, through domain knowledge about the topics discussed in the documents. The system was evaluated by medical students who used the system to find documents in Medline. The results were comparable with the results of WinSpirs, a Boolean retrieval system.

Computer Communication Networks↗

Implementation of multi-vendor DICOM standard image transfer in hospital wide ATM network.

At Hamamatsu University Hospital, an ATM + FDDI network was installed in January 1995, when the hospital information system was upgraded. With its unique 'wheel' shape configuration, FDDI automatically backs up in case of an ATM switch failure. The authors implemented a DICOM image database server and DICOM viewer in the Hamamatsu University Hospital ATM + FDDI network. The DICOM standard worked well between different vendor products. In sending 512 x 512, 2 byte CT images, 40% of the transfer time was spent for the network data transfer, which is 70% of the theoretical value of 10 Mb peripheral transfer rate. Meanwhile, ATM load factor increased less than 0.5%. As we have a very fast data transfer network, we must check display speed, hard disc access time, PC bus speed, and display software, in order to enjoy the high speed network transfer fully. The sequence of image transmission within a study is not stated in the DICOM document and is depending on the server. Therefore, there should be an agreement between server and clients, still more than DICOM, in order to make better PACS.

Computer Communication Networks↗