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At least 55 records · Page 3Linked to original sources

Real-time teleneuropathology for a second opinion of neurooncological cases.

A teleneuropathology system directed by Java programs through a standard Internet browser was evaluated in the present study. Assessment of neurooncological cases was done by remote microscope through the "Case Study" Web page at the Department of Pathology Web site (http:¿ampat.amu.edu.pl). The site was used to control a remote automatic microscope, the Axioplan 2 (Zeiss), which was connected to a computer that acts as an Internet server. The Java program for the control of the microscope server is automatically downloaded and started if the user selects the Web site of the corresponding microscope server. The microscope server receives microscope operation commands from the telemicroscopy clients, executes them, and distributes the new microscope image to all of the connected telemicroscopy clients. Fifteen cases were evaluated over several weeks. The percentage of correctly classified cases sent by remote consultation was 100%. Since the system does not require specialized software for the remote side and since the number of possible discussion partners is unlimited, this system may help to overcome obstacles to the practice of teleneuropathology.

Adenoma↗

An overview of networking for physicians and problems of network consulting in remote areas.

For computer networking the most suitable operating systems are UNIX or MS-DOS. As networking software UUCP and TCP/IP are most common. Hardware requirements are derived from the operating system and from the networking software. Low-cost solutions, for example, uuPC, a public domain version of UUCP, require only an 8088 processor and a 2400-baud modem. TCP/IP fares better with more powerful processors and requires permanent lines between the connecting computers. In developing countries the introduction of computer networks is hampered by several factors: lack of foreign exchange, price of hardware and software, unreliable electricity and telephone lines, lack of hardware and software support, large distances to the nearest center, and incompatibilities between existing systems and the network. Important aspects for clinical networking in developing countries include appointment scheduling in the referral hospitals, access to laboratory and pathology results from the central laboratory, and primary health care information such as epidemiologic data. Advanced systems, for example, for image processing, are not yet feasible in developing countries.

Computer Communication Networks↗

An evaluation of a surgical telepresence system for an intrahospital local area network.

We evaluated a digital telepresence system in an operating theatre (OR) environment which enabled a consultant to join the surgical team from a remote site by audiovisual communication. The system is based on video transmission using a streaming technique, with a server and a client connected via a local area network (LAN). Two cameras can be remotely controlled: one camera is built into the OR lamp and a second, laparoscopic camera is mounted on a robotic arm. Another feature of the system is teledemonstration, which permits the remote consultant to demonstrate points of particular interest. We evaluated the system clinically in 237 cases. In 28 cases (12%), telepresence could not be established for various reasons, mainly human failure. In 42 cases (18%), the full potential of telepresence was used. Technical evaluation showed that a data rate of 2 Mbit/s provides sufficient audio and video quality, as well as reliable teledemonstration. The data transmission delay was acceptable for clinical purposes (video 0.92 s, audio 0.6 s from OR to client, audio 0.7 s from client to OR). The study showed that telepresence is a promising means of providing highly specialized expertise within the OR.

General Surgery↗

Remote expert consultation for MRI procedures by means of teleradiology.

From April 1992 to January 1993, radiology expert opinion for MRI procedures was offered by means of teleradiology. The experiment was carried out in addition to an existing service of a mobile MRI unit. MRI images were sent by means of teleradiology via regular telephone lines from the mobile MRI unit to an academic hospital, which served as expert consultation centre. During this period, 43 requests for expert opinions were performed. This article describes the clinical effects of these expert opinions, and the technical and organisational requirements to perform teleradiology in daily clinical practice.

Humans↗

[Automatic electrocardiographic diagnosis of the main types of arrhythmia at a remote cardiologic consultation and diagnostic center].

A combination of methods based on hardware, software and mathematical support, was used to filter an ECG signal, transmitted telemetrically to the computer. Clusterization of P-Q and R-R intervals was used as primary informative ECG signs, providing the basis for the diagnosis of the type of heart rhythm disorder. The comparison was made by correlation of ranges. An algorithm, based on unconventional clinical signs, was developed. An analysis of 672 electrocardiograms has demonstrated that mean sensitivity of the proposed automated diagnosis of the basic heart rhythm is 96.9%, and its specificity is 98.0%.

Algorithms↗

Three-dimensional ultrasonographic telepresence.

We have developed a three-dimensional ultrasound telepresence system for remote consultation. Three-dimensional ultrasound data-sets can be acquired by relatively unskilled operators. The data are stored in the remote unit and then transmitted to a consultant equipped with a similar unit. A telepresence pointing device enables the consultant to re-slice that data-set in any plane. During the study period, 72 volumetric scans of male and female volunteers aged 18-45 years were performed in Bosnia. Field users of limited ultrasound experience (most with less than 30 min of training) were able to acquire volumetric scans, send volume data and interact with remote consultants over standard communications lines at distances of up to 20,000 km. Communications links from 9.6 to 1500 kbit/s were used. Technical limitations included lack of motion data, lack of colour data, scan artefacts and increased scan-to-diagnosis time. However, our preliminary experience indicates that this technique may eventually prove to be a useful adjunct to telesonography. Further studies of the technique are needed to determine its value in the broader clinical setting.

Adolescent↗

Remote critical care consultation: telehealth projection of clinical specialty expertise.

Remote critical care consultations have been employed between the Naval Hospital in Guam and the Tripler Army Medical Center in Hawaii, a distance of 5300 km. During a 10-week study period there were physician-physician daily consultation rounds for patients in the intensive care unit at the Naval Hospital. Physiological data, video-images and sound were transmitted via a 768 kbit/s frame relay connection, albeit with a 1-3 s delay. During the study there were 87 consultations concerning 25 patients. Preliminary results showed that a broad range of critical care patients could be managed effectively through daily remote critical care consultation. Broader implementation of this strategy may represent a method of making critical care expertise available to front-line military health-care facilities and to remote civilian facilities with limited critical care expertise.

Critical Care↗

Instrumentation available for remote diagnosis and consultation in eye care.

It is feasible to transmit digital images captured via a biomicroscope using currently available instrumentation, hardware, software, and communication technology. To demonstrate this point, commercially available digital imaging equipment was obtained and installed in the eye clinic at the Kanakanak Hospital. Interactive agreements were established with sites having compatible equipment. High-quality digital images were transmitted between the involved sites in Alaska, Arizona, and California. Images of sufficient quality and resolution for remote consultation and diagnosis were transmitted both to and from the clinic site in Dillingham. This demonstrates that the instrumentation currently exists for rapid sharing of digital images coupled with direct, real-time communication.

Alaska↗

[Patient monitoring after discharge by teleconsultation].

The Televisite application is a post-stationary consulting method, whose main aim is to reduce the treatment time of inpatients. It provides a high quality home consultation after the patient has been discharged from the hospital. The technical handling and the validity of the new method of caring will be analysed--particularly the human-machine interface. In a prospective study case injured patients were attend using the Televisite. For communications with the consulting doctor they were supplied with a high resolution digital camera and a mobile PC with an integrated HCSCD cell phone. The doctor examined the data transmitted by the patient and remotely consulted the patient using the Televisite. Through a simple self-explaining user interface, a smooth information transfer was guaranteed.

Computer Systems↗

Teleconsultation with the mobile camera-phone in digital soft-tissue injury: a feasibility study.

The purpose of this study was to examine the feasibility of teleconsultation using a mobile camera-phone to evaluate the severity of digital soft-tissue injury and to triage the injury with regard to management recommendations. With a built-in 110,000-pixel digital camera, pictures of the injured digit(s) or radiograph were taken by surgical residents in the emergency room and transmitted to another camera-phone to be viewed by the remote consultant surgeon. A brief medical and trauma history of each patient was relayed also by mobile phone. The consultant surgeon then reviewed all of these patients in the emergency room shortly after the initial telemedicine referral. Separate triaging for each digital injury into three groups was recorded during remote teleconsultation and according to actual treatment by the attending surgeon as follows: group I, the injury could be managed with conservative treatment, such as secondary intention wound healing, or primary closure with or without bone shortening; group II, skin grafting or local flap coverage was required for management of the injury; and group III, microsurgery such as replantation or free flap coverage was necessary to deal with the injury. Later, triaging was also performed individually by three junior plastic residents according to image review and patient referral information. Teleconsultation through a mobile camera-phone was performed for 45 patients with injuries of 81 digits from January to May of 2003. Of these 81 digital injuries, there were 12 cases (15 percent) where disagreement of triaging occurred between the teleconsultation and the actual treatment by the attending surgeon. In image reviewing, there was 79 percent sensitivity and 71 percent specificity in remote diagnosis of the skin defect and 76 percent sensitivity and 75 percent specificity in remote identification of the bone exposure regarding the concordance of opinions of all three surgeons; there was significant discordance in triaging in 20 cases (25 percent), and the difference in triaging was partly attributed to the inability to show instances of tiny exposed digital bone or tendon in some cases under the low-resolution digital image and the situation of a bloody oozing wound. In some cases, the difficulty in evaluating the probability of primary closure of severely avulsed skin edges or the probability of executing replantation for finger amputation also contributed to different triaging outcomes. Two neglected diagnoses of transected digital nerves were found and influenced triaging, highlighting the importance of on-site physical examination during teleconsultation. The telemedicine system using a mobile camera-phone based on the global system for mobile communication is feasible and valuable for early diagnosis and triaging of digital soft-tissue injury in emergency cases, with on-line verbal communication and review of the transmitted captured image. This system has the advantages of ease of use, low cost, high portability, and mobility. With advances in hardware for digital imaging and transmission technology and the development of the third-generation advanced mobile phone system in the foreseeable future, this system has potential for future applications in telemedicine and telecare.

Cervicoplasty↗

JavaScope: A Web-based TEM control interface.

JavaScope is a Web-based java applet that implements an "exploration/browser" tool for operating a Philips CM200 transmission electron microscope and viewing digital images remotely. The primary use of the application is as a collaborative tool for remote consultations.

Image Processing, Computer-Assisted↗

NASA/DARPA advanced communications technology satellite project for evaluation of telemedicine outreach using next-generation communications satellite technology: Mayo Foundation participation.

OBJECTIVE: To describe the development of telemedicine capabilities-application of remote consultation and diagnostic techniques-and to evaluate the feasibility and practicality of such clinical outreach to rural and underserved communities with limited telecommunications infrastructures. MATERIAL AND METHODS: In 1992, Mayo Foundation (Rochester, Minn, Jacksonville, Fla, and Scottsdale, Ariz), the National Aeronautics and Space Administration, and the Defense Advanced Research Projects Agency collaborated to create a complex network of fiberoptic landlines, video recording systems, satellite terminals, and specially developed data translators linking Mayo sites with other locations in the continental United States on an on-demand basis. The purpose was to transmit data via the asynchronous transfer mode (ATM) digital communications protocol over the Advanced Communications Technology Satellite. The links were intended to provide a conduit for transmission of data for patient-specific consultations between physicians, evaluation of medical imagery, and medical education for clinical staffs at remote sites. RESULTS: Low-data-rate (LDR) experiments went live late in 1993. Mayo Clinic Rochester successfully provided medical consultation and services to 2 small regional medical facilities. High-data-rate (HDR) experiments included studies of remote digital echocardiography, store-and-forward telemedicine, cardiac catheterization, and teleconsultation for congenital heart disease. These studies combined landline data transmission with use of the satellite. The complexity of the routing paths and network components, immaturity of available software, and inexperience with existing telecommunications caused significant study delays. CONCLUSIONS: These experiments demonstrated that next-generation satellite technology can provide batch and real-time imagery for telemedicine. The first-generation of the ATM and satellite network technology used in these experiments created several technical problems and inconveniences that should be overcome as the network infrastructure matures.

Feasibility Studies↗

Nurse-doctor interaction in teleconsultations between a hospital and a geriatric nursing home.

The aim of the present study was to elucidate both the interaction between a doctor and five registered nurses and the problems or tasks dealt with in teleconsultations between a university clinic for geriatric medicine and a nursing home for the elderly in northern Sweden. The interaction and problems or tasks were studied through analyses of video-recorded teleconsultations and through open interviews with the participating staff. The results indicated that teleconsultations between a geriatrician and the nurses at a nursing home for the elderly can be a useful tool for providing medical services. Teleconsultations alter both the 'power-control' and 'practice spheres' for the doctor and the nurses, and must be based on mutual trust. The use of teleconsultations gives the nurse a larger role as the presenter of medical problems, and gives the doctor the role of remote consultant.

Aged↗

The development of a telemedicine system for a centralized maxillofacial unit serving four towns.

Following the amalgamation on one site of inpatient oral and maxillofacial surgical (OMFS) services serving four towns, patients attending accident and emergency (A and E) departments in Bolton, Burnley and Bury who required specialist OMFS care were transferred to Blackburn. This sometimes led to inappropriate transfer, with inconvenience for patients, sub-standard care and wasted resources. To reduce these problems, a videoconferencing system was established, linking the A and E departments of three peripheral hospitals to the central site. This allowed realtime visualization of patients and their radiographs, discussion between clinicians and transfer of a summary data-sheet. The aim was to improve remote diagnosis and to deliver a cost-effective, high-quality specialist service. In the first 12 months, there were an average of 25 remote consultations per month, with favourable feedback from both patients and clinicians.

Cost-Benefit Analysis↗

Diagnostic quality of low resolution images for tele-woundcare.

The use of digital wound images would allow remote consultation between patients, physicians, or other caregivers over the Internet. To evaluate the efficacy and validity of digital images for assessment of wounds, we compared the ability and reliability of surgeons to diagnose and make treatment suggestions using either digital or slide images of several types of wounds. Twenty-four wound images on 35-mm slides were selected for use in this study. Each slide image was digitized at 24-bit color with a resolution of 640 pixels horizontal by 425 pixels vertical, and stored as a JPEG file. Six physicians, of varying experience, examined the images, first in digital format and then later in the original slide form. Each observer assessed each wound for condition and possible treatment options by filling out a questionnaire using a series of yes/no questions. For all observers, there was an 87% agreement of answers between digital and slide images (p = 0.004). The agreement between the digital and slide images was also measured for each individual observer using a kappa coefficient. The agreement kappa correlated with the experience of the observer, with the kappa values ranging from greater than 0.8 (almost perfect agreement) for an experienced woundcare professional to just greater than 0.5 (moderate agreement) for a surgical intern. With this study, we have demonstrated the feasibility of distance wound consultation using digital images of a quality consistent with consumer-grade digital photography.

Diagnostic Imaging↗