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At least 253 records · Page 14Linked to original sources

Examination of time-reversal acoustics in shallow water and applications to noncoherent underwater communications.

The shallow water acoustic communication channel is characterized by strong signal degradation caused by multipath propagation and high spatial and temporal variability of the channel conditions. At the receiver, multipath propagation causes intersymbol interference and is considered the most important of the channel distortions. This paper examines the application of time-reversal acoustic (TRA) arrays, i.e., phase-conjugated arrays (PCAs), that generate a spatio-temporal focus of acoustic energy at the receiver location, eliminating distortions introduced by channel propagation. This technique is self-adaptive and automatically compensates for environmental effects and array imperfections without the need to explicitly characterize the environment. An attempt is made to characterize the influences of a PCA design on its focusing properties with particular attention given to applications in noncoherent underwater acoustic communication systems. Due to the PCA spatial diversity focusing properties, PC arrays may have an important role in an acoustic local area network. Each array is able to simultaneously transmit different messages that will focus only at the destination receiver node.

Journal Article↗

Dispersive multiplexing in multimode optical fiber

Recently developed ideas in the field of wireless communications suggest that the presence of scattering can be used to enhance, rather than degrade, the total information capacity of a transmission system. This concept is applied to data transmission over multimode optical fiber, and the result is an optical multiplexing that can increase the capacity of such fiber. Experimental results demonstrate the feasibility of this approach. The technique may play an important role in future high-bandwidth local area networking applications.

Journal Article↗

Computer-assisted instruction: MR imaging of the knee.

Computer-assisted education offers a unique method of learning that is complementary to conventional learning techniques. The regional anatomy of musculoskeletal magnetic resonance (MR) imaging lends itself well to discrete learning modules on the computer. This article describes a computer-assisted educational program for MR imaging of the knee. The program is divided into four sections: MR imaging physics, anatomy, pathology, and a quiz. The program has cross-references between the sections that allow comparison of normal versus pathologic findings, review of specified pathologic entities, and self-testing of comprehension. The student can progress through the program in a linear or nonlinear fashion at his or her own pace. All images in the program were digitally acquired with an MR imager and transferred directly to the computer used to develop the program. The program is available throughout the radiology department on a local area network and in the medical school library on stand-alone units. The program is currently being used at a medical school as a supplement to the recently implemented problem-based learning curriculum and for resident education.

Computer-Assisted Instruction↗

Informatics in Radiology (infoRAD): mobile wireless DICOM server system and PDA with high-resolution display: feasibility of group work for radiologists.

A novel mobile system has been developed for use by radiologists in managing Digital Imaging and Communications in Medicine (DICOM) image data. The system consists of a mobile DICOM server (MDS) and personal digital assistants (PDAs), including a Linux PDA with a video graphics array (VGA) display (307,200 pixels, 3.7 inches). The MDS weighs 410 g, has a 60-GB hard disk drive and a built-in wireless local area network (LAN) access point, and supports a DICOM server (Central Test Node). The Linux-based MDS can be accessed with personal computers (PCs) and PDAs by means of a wireless or wired LAN, and client-server communications can be established at any time. DICOM images can be displayed by using any PDA or PC by means of a Web browser. Simultaneous access to the MDS is possible for multiple authenticated users. With most PDAs, image compression is necessary for complete display of DICOM images; however, the VGA screen can display a 512 x 512-pixel DICOM image almost in its entirety. This wireless system allows efficient management of heavy loads of lossless DICOM image data and will be useful for collaborative work by radiologists in education, conferences, and research.

Computers, Handheld↗

Modern wireless telecommunication technologies and their electromagnetic compatibility with life-supporting equipment.

Hospitals rely on pagers and ordinary telephones to reach staff members in emergency situations. New telecommunication technologies such as General Packet Radio Service (GPRS), the third generation mobile phone system Universal Mobile Telecommunications System (UMTS), and Wireless Local Area Network (WLAN) might be able to replace hospital pagers if they are electromagnetically compatible with medical devices. In this study, we sought to determine if GPRS, UMTS (Wideband Code Division Multiple Access-Frequency Division Duplex [WCDMA FDD]), and WLAN (IEEE 802.11b) transmitted signals interfere with life-supporting equipment in the intensive care and operating room environment. According to United States standard, ANSI C63.18-1997, laboratory tests were performed on 76 medical devices. In addition, clinical tests during 11 operations and 100 h of intensive care were performed. UMTS and WLAN signals caused little interference. Devices using these technologies can be used safely in critical care areas and during operations, but direct contact between medical devices and wireless communication devices ought to be avoided. In the case of GPRS, at a distance of 50 cm, it caused an older infusion pump to alarm and stop infusing; the pump had to be reset. Also, 10 cases of interference with device displays occurred. GPRS can be used safely at a distance of 1 m. Terminals/cellular phones using these technologies should be allowed without restriction in public areas because the risk of interference is minimal.

Cell Phone↗

The cost-effectiveness of telehealth in metropolitan hospitals.

We established a telehealth link between two inner-city health services about 10 km apart. The video-link between the sites was based on IP videoconferencing; ISDN connections were maintained as a form of system redundancy and to connect to sites beyond the local area network. The cost of a conventional consultation, in which the patient travelled to an outpatient appointment, was A$170. Because existing equipment and telecommunications could be used, the cost of a telehealth consultation was only A$74. During the study approximately 15 teleconsultations were completed and a number of patient transfers were cancelled because they were deemed clinically unnecessary. The preliminary results suggest that the cost-savings from telehealth can be substantial. In addition there were major benefits to continuity of patient care and clinical communication within the organization.

Journal Article↗

Evaluation of two mobile telemedicine systems in the emergency room.

Two different prototype mobile telemedicine systems were constructed for use in the emergency room. They could transmit physiological signals as well as video pictures and sound. One device, the mobile emergency bed (MEB), was powered by battery and had a wireless connection to the local-area network (LAN). For the other, the mobile emergency server (MES), a patient monitor, video-camera and microphone were connected by a radio-frequency link to a server. A functional evaluation and a clinical evaluation (by 12 emergency doctors in six emergency centres) were performed on both prototypes. The bandwidth and the video quality of the MEB were better than those of the MES, because of the digital transmission of the wireless LAN. The MES was better for directing patient treatment and teleconsultation; the MEB was better for static patients in the emergency centre. In general, the MES was more suitable for practical emergency telemedicine work.

Attitude of Health Personnel↗

Nurse and patient communication via low- and high-bandwidth home telecare systems.

We examined nurse-patient communication on two videoconferencing systems: a video-phone (PSTN video) and a PC-based system (IP video). The former used data transmission via a modem at 33.6 kbit/s and the latter via a local-area network at up to 512 kbit/s. Twenty-six nurses and 18 volunteers (simulated patients) participated. On each video system nurse-patient dyads completed scripted interactions; they then completed questionnaires to assess communication. Of the participants, 84% (n=37) preferred IP video and 14% (n=6) preferred PSTN video (one expressed no preference). IP video was rated significantly higher in all communication quality areas except self-consciousness/embarrassment. Although participants' overall ratings were higher for the IP video system, two important advantages of the PSTN video system were identified by both nurses and patients: first, it provided superior visualization of the medication bottle, insulin syringe and the patient's skin; and second, it was easier to use. Video quality and audio quality are important determinants of patient and provider perceptions, but ease of use, clinical appropriateness, and the need for training and support must not be forgotten.

Adult↗

Enhanced autocompensating quantum cryptography system.

We have improved the hardware and software of our autocompensating system for quantum key distribution by replacing bulk optical components at the end stations with fiber-optic equivalents and implementing software that synchronizes end-station activities, communicates basis choices, corrects errors, and performs privacy amplification over a local area network. The all-fiber-optic arrangement provides stable, efficient, and high-contrast routing of the photons. The low-bit error rate leads to high error-correction efficiency and minimizes data sacrifice during privacy amplification. Characterization measurements made on a number of commercial avalanche photodiodes are presented that highlight the need for improved devices tailored specifically for quantum information applications. A scheme for frequency shifting the photons returning from Alice's station to allow them to be distinguished from backscattered noise photons is also described.

Journal Article↗

Documenting drug-related problems with personal digital assistants in a multisite health system.

PURPOSE: A scalable, multiuser, personal digital assistant (PDA)-based documentation tool for pharmacist collection of data on drug-related problems (DRPs) is described. SUMMARY: A PDA-based tool for documenting DRPs and pharmacist interventions was developed with database software. Data fields were based on the pharmaceutical care model. PDA synchronization stations were configured to transmit encrypted data from three hospital sites to a central server. Pharmacists in a multisite health care organization were trained to use the documentation tool. Data were analyzed with commercially available software. Users' opinions about the tool were solicited in a survey. Twenty-eight PDAs containing a 15-field database were issued to 39 pharmacists in 31 service areas. Data were successfully transmitted from all hospital sites over the existing corporate local area network. During a two-month period, 5084 DRPs were documented; 90% of them were resolved at the time of data entry. The most frequent types of DRPs were the need to add a drug (31%) and the ordering of an unnecessary drug (15%). Most pharmacists reported that the tool was easy to use, was well integrated with the workflow, and required less than 30 minutes per day for documenting DRPs. CONCLUSION: A PDA-based documentation tool was successfully used in a multisite health care organization to collect data on DRPs and document pharmacist interventions.

Adverse Drug Reaction Reporting Systems↗

Value of on-line informational databases in a radiology department.

Radiologists and ancillary personnel in a radiology department frequently access a variety of paper-based information during their workday to facilitate decision making. This information can be as mundane as telephone numbers and work schedules or as important as a detailed emergency procedure for treating a patient with a severe contrast reaction. We have installed some hierarchical, textual database systems on the same computer that runs our radiology information system. Several different databases are maintained, including protocol manuals, emergency procedures, and a directory of telephone and pager numbers. This information is accessible from any terminal connected to our radiology information system and from any personal computer connected to our department's local area network or terminal server. Advantages include decreased costs from the photocopying, consumption, and distribution of paper; ubiquitous access for all users to a single source of information; faster and more powerful ways to access data than paper-based media provide; decreased risk of inadvertently using information from an obsolete document; and convenience in maintaining computerized versus paper-based information. Because we use software that is either free or that came with our computer's operating system, no additional software costs were involved.

Online Systems↗

[Computer communication between an ambulatory centre and its hospital of reference].

BACKGROUND: To analyse the demand for medical information requested by a primary care team from its hospital of reference over an 18 month period. MATERIAL AND METHODS: Patients assigned to 5 surgeries of a primary care team, which had computerised clinical records available in its hospital of reference. In 1995 computerised communication via modem was set up between this team and the "Local Area Network" of its hospital of reference. This connection allows members of the team to carry out real time consultations of the hospital clinical records of their patients (reports, complementary explorations...) and the laboratory and radiology reports requested by the primary care team. Consultations made over an 18 month period (March 96 - August 97) were analysed. RESULTS: Five hundred and twenty three consultations were made (29.06 per month). Ninety three point seven per cent of the patients concerning whom consultations were made had a computerised clinical record available. The most consulted services were: Radiology (28.7%), Laboratory (25.2%) and Internal Medicine (16.3%). The most consulted parts of the clinical record were those corresponding to the results of complementary tests: simple radiology (27.3%), haematology and biochemistry (24.7%), other explorations (23.7%). Some 67.5% of the searches were considered "resolutive" by the consulting doctor. An average of 4 minutes 13 seconds were employed per consultation. CONCLUSIONS: The information principally required by the family doctor was the results of complementary tests and, in particular, from the laboratory and radiology. Computerised communication between primary care and specialised care is going to be an effective, and probably efficient, system for improving communication between the two levels.

English Abstract↗

PACS in practice: the status of the PACS project at the St. Radboud University Hospital. Part A: Introduction and the picture system.

A so-called bottom-up approach of a Picture Archiving and Communication System (PACS) is initiated by existing clinical questions. It is investigated how far existing Data-Acquisition (DA) modalities combined with the existing computer infrastructure of the hospital can provide soil to a, at first local, PACS system. Examples of current research projects in Digital Subtraction Angiography (DSA), Computed Tomography (CT) and Magnetic Resonance Imaging (MRI) demonstrate how image and raw data processing evolve from applications based on a general matrix manipulation software package to projects within the field of PACS. Starting from the existing facilities a stepwise increase of connections and expansions of required features is going to be brought about by separately considering the picture system, the communication system and the archive system. A three step phasing is proposed: (1) Software linking; (2) Hardware linking: small scale; and (3) Hardware linking: local area network. Examples are given from the first phase, i.e. the development and expansion of software on existing DA-modalities or processing hardware to receive the data on floppy disk, hard disk or tape. Data are converted and transported for further processing: (a) within the department; (b) between hospital departments; and (c) between research centres. With regard to the picture system special attention has to be given to the requirements for digitizing analogue film images and the reading of images from monitor screens instead of films on lightboxes.

Computer Communication Networks↗

Development and evaluation of a radiological reporting system for use with a personal computer.

A computer-assisted radiological reporting system (CRRS) was developed for the efficient management and effective use of a database of radiological information. The system consists of a computer terminal linked to an HIS, a reporting console and a personal computer in the local area network of the radiology department, and a radiography care reader which transfers basic data on the patient from the HIS to the CRRS. The patient's name, hospital ID number, sex and date of birth, the department from which the patient has been referred, in-patient/out-patient status and the procedure needed are recorded on magnetic cards (radiography cards) issued to radiology patients. The system has been successfully used in all diagnostic procedures for 8 months: 16,300 reports have been printed out and stored. The system has made it possible to implement the complete radiological reporting procedure for clinical applications, and the required data can easily be retrieved and used. It has proved to be quite easy to use CRRS to obtain diagnostic histories, and the improved efficiency of the reporting procedure has enabled the cost of a clerk typist to be eliminated.

Data Collection↗

Research-oriented image registry for multimodal image integration.

To provide multimodal biomedical images automatically, we constructed the research-oriented image registry, Data Delivery System (DDS). DDS was constructed on the campus local area network. Machines which generate images (imagers: DSA, ultrasound, PET, MRI, SPECT and CT) were connected to the campus LAN. Once a patient is registered, all his images are automatically picked up by DDS as they are generated, transferred through the gateway server to the intermediate server, and copied into the directory of the user who registered the patient. DDS informs the user through e-mail that new data have been generated and transferred. Data format is automatically converted into one which is chosen by the user. Data inactive for a certain period in the intermediate server are automatically achieved into the final and permanent data server based on compact disk. As a soft link is automatically generated through this step, a user has access to all (old or new) image data of the patient of his interest. As DDS runs with minimal maintenance, cost and time for data transfer are significantly saved. By making the complex process of data transfer and conversion invisible, DDS has made it easy for naive-to-computer researchers to concentrate on their biomedical interest.

Computer Communication Networks↗

An inexpensive system for measuring the processing of relational information by romantic partners.

The present paper describes the computer aspects of a reaction time experiment with couples. The hardware consists of two computers connected through a local area network. Issues that deal with the first PC include timing routines, screen control, mice data decoding, and synchronization of computer software--written in Assembler for a PC without hard disk--with information presented in a videotape. The second computer was used for data processing that was written in VBA. Although the system was created for a dedicated purpose, it is easily applicable to other environments.

Choice Behavior↗

Potential for Personal Digital Assistant interference with implantable cardiac devices.

OBJECTIVE: To determine whether the wireless local area network (WLAN) technology, specifically the Personal Digital Assistant (PDA), interferes with implantable cardiac pacemakers and defibrillators. MATERIAL AND METHODS: Various pacemakers and defibrillators were tested in vitro at the Mayo Clinic in Rochester, Minn, between March 6 and July 30, 2003. These cardiac devices were exposed to an HP Compaq IPAQ PDA fitted with a Cisco Aironet WLAN card. Initial testing was designed to show whether the Aironet card radiated energy in a consistent pattern from the antenna of the PDA to ensure that subsequent cardiac device testing would not be affected by the orientation of the PDA to the cardiac device. Testing involved placing individual cardiac devices in a simulator and uniformly exposing each device at its most sensitive programmable value to the WLAN card set to maximum power. RESULTS: During testing with the Cisco WLAN Aironet card, all devices programmed to the unipolar or bipolar configuration single- or dual-chamber mode had normal pacing and sensing functions and exhibited no effects of electromagnetic interference except for 1 implantable cardioverter-defibrillator (ICD). This aberration was determined to relate to the design of the investigators' testing apparatus and not to the output of the PDA. The ICD device appropriately identified and labeled the electromagnetic aberration as "noise." CONCLUSIONS: We documented no electromagnetic interference caused by the WLAN technology by using in vitro testing of pacemakers and ICDs; however, testing ideally should be completed in vivo to confirm the lack of any clinically important interactions.

Artifacts↗

Storage and distribution of pathology digital images using integrated web-based viewing systems.

CONTEXT: Health care providers have expressed increasing interest in incorporating digital images of gross pathology specimens and photomicrographs in routine pathology reports. OBJECTIVE: To describe the multiple technical and logistical challenges involved in the integration of the various components needed for the development of a system for integrated Web-based viewing, storage, and distribution of digital images in a large health system. DESIGN: An Oracle version 8.1.6 database was developed to store, index, and deploy pathology digital photographs via our Intranet. The database allows for retrieval of images by patient demographics or by SNOMED code information. SETTING: The Intranet of a large health system accessible from multiple computers located within the medical center and at distant private physician offices. RESULTS: The images can be viewed using any of the workstations of the health system that have authorized access to our Intranet, using a standard browser or a browser configured with an external viewer or inexpensive plug-in software, such as Prizm 2.0. The images can be printed on paper or transferred to film using a digital film recorder. Digital images can also be displayed at pathology conferences by using wireless local area network (LAN) and secure remote technologies. CONCLUSIONS: The standardization of technologies and the adoption of a Web interface for all our computer systems allows us to distribute digital images from a pathology database to a potentially large group of users distributed in multiple locations throughout a large medical center.

Computer Storage Devices↗