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At least 145 records · Page 8Linked to original sources

Diagnostic errors in interactive telepathology.

Telepathology (TP) as a service in pathology at a distance is now widely used. It is integrated in the daily workflow of numerous pathologists. Meanwhile, in Germany 15 departments of pathology are using the telepathology technique for frozen section service; however, a common recognised quality standard in diagnostic accuracy is still missing. In a first step, the working group Aurich uses a TP system for frozen section service in order to analyse the frequency and sources of errors in TP frozen section diagnoses for evaluating the quality of frozen section slides, the important components of image quality and their influences an diagnostic accuracy. The authors point to the necessity of an optimal training program for all participants in this service in order to reduce the risk of diagnostic errors. In addition, there is need for optimal cooperation of all partners involved in TP service.

Breast Neoplasms↗

Current experiences with internet telepathology and possible evolution in the next generation of Internet services.

The last five years experience has definitely demonstrated the possible applications of the Internet for telepathology. They may be listed as follows: (a) teleconsultation via multimedia e-mail; (b) teleconsultation via web-based tools; (c) distant education by means of World Wide Web; (d) virtual microscope management through Web and Java interfaces; (e) real-time consultations through Internet-based videoconferencing. Such applications have led to the recognition of some important limits of the Internet, when dealing with telemedicine: (i) no guarantees on the quality of service (QoS); (ii) inadequate security and privacy; (iii) for some countries, low bandwidth and thus low responsiveness for real-time applications. Currently, there are several innovations in the world of the Internet. Different initiatives have been aimed at an amelioration of the Internet protocols, in order to have quality of service, multimedia support, security and other advanced services, together with greater bandwidth. The forthcoming Internet improvements, although induced by electronic commerce, video on demand, and other commercial needs, are of real interest also for telemedicine, because they solve the limits currently slowing down the use of Internet. When such new services will be available, telepathology applications may switch from research to daily practice in a fast way.

Humans↗

An economic evaluation of Japanese telemedicine, focusing on teleradiology and telepathology.

We collected information by postal survey from 622 medical institutions reported to be using telemedicine in Japan. The questionnaire asked about willingness to pay (WTP) for telemedicine and willingness to undertake (WTU) it. The Kernel Estimation Method was used to obtain WTP for teleradiology (4379 yen), telepathology (9526 yen), teleconferencing (2084 yen) and teleconsultation (633 yen). The estimated WTU were teleradiology (3875 yen), telepathology (17,918 yen), teleconferencing (3230 yen) and teleconsultation (3643 yen). These values are larger than the current charges that customers actually pay or providers receive. Multiplying these values by the number of medical institutions that had implemented telemedicine allows the total annual benefits of telemedicine to be estimated, e.g. for teleradiology, the annual benefit in terms of WTP and WTU (millions of yen per year) were 140.20 and 1101.75, respectively. Based on the results of the survey, specific policy measures to promote telemedicine further include improvement of quality and reimbursement.

Cost-Benefit Analysis↗

Image selection in static telepathology through the Internet.

A telepathology study was carried out to examine the differences occurring when the images were selected by an experienced pathologist, a junior pathologist and a first-year resident. One hundred and fifty-five consecutive frozen-section pathology cases were collected and sent for consultation to a remote experienced pathologist using multimedia email. Local diagnoses (as reported in the files of the Institute, not from the image selector) and remote diagnoses (based on the images) were compared with those performed on paraffin-embedded sections. Acquisition time and number of selected images were recorded for each case and used to compare the different behaviour of the three local pathologists. Of the 155 cases sent by telepathology, four were considered insufficient for a diagnosis by the remote pathologist and thus the diagnosis was postponed. In the remaining 151 cases, the overall diagnostic agreement between remote and definitive diagnosis was 96.7%. The results indicate that in the routine diagnostic work of a frozen-section service, an inexperienced pathologist can select images which are sufficiently informative for a remote diagnosis, in a sufficiently short time.

Clinical Competence↗

Dynamic robotic telepathology: a preliminary evaluation on frozen sections, histology and cytology.

We evaluated the diagnostic efficacy of a dynamic robotic telepathology system for the delivery of pathology services to distant hospitals. The system provided static/dynamic features and the remote control of a robotic microscope using four ISDN lines. For evaluation purposes, 184 consecutive cases were diagnosed at distance using the system. The cases were 60 frozen sections, 64 cases of gastrointestinal pathology and 60 cases of urinary cytology. The telemedicine diagnoses obtained in this way were compared with traditional microscopic diagnosis. Diagnostic agreement ranged from 90% in urinary cytology to 100% in frozen sections. The results suggest that a dynamic robotic telepathology system can be a useful tool for supporting the pathology practice of isolated hospitals.

Evaluation Studies as Topic↗

Robotic telepathology for intraoperative remote diagnosis using a still-imaging-based system.

The aim of the present study was to assess whether a telemicroscopy system based on static imaging could provide a remote intraoperative frozen section service. Three pathologists evaluated 70 consecutive frozen section cases (for a total of 210 diagnoses) using a static telemicroscopy system (STeMiSy) and light microscopy (LM). STeMiSy uses a robotic microscope, enabling full remote control by consultant pathologists in a near real-time manner. Clinically important concordance between STeMiSy and LM was 98.6% (95.2% overall concordance), indicating very good agreement. The rates of deferred diagnoses given by STeMiSy and LM were comparable (11.0% and 9.5%, respectively). Compared with the consensus diagnosis, the diagnostic accuracy of STeMiSy and LM was 95.2% and 96.2%. The mean viewing time per slide was 3.6 minutes, and the overall time to make a diagnosis by STeMiSy was 6.2 minutes, conforming to intraoperative practice requirements. Our study demonstrates that a static imaging active telepathology system is comparable to dynamic telepathology systems and can provide a routine frozen section service.

Diagnostic Imaging↗

[Telepathology in Mid-Norway].

Telepathology can provide frozen section service to hospitals without a pathology service of their own. Using a dynamic-robotic system with 6 ISDN B-channels (Telemed A200, AM Elektronikk A/S, Oslo, Norway), the pathologists at the University Hospital in Trondheim, Norway during a three-year period from 1995 successfully performed 116 diagnostic sessions for two rural Norwegian hospitals. In 90% of the cases a diagnosis was provided. There was no false positive diagnosis and only 3% false negative cases without clinical consequence. Deferred cases (10%) were mainly due to poor quality of the frozen sections and a conservative attitude among the pathologists. It is concluded that the diagnostic accuracy is good, but for safety reasons telepathology should be offered on a regular basis, so that the skills of the technicians and pathologists involved are kept up. In Mid-Norway, five more hospitals will be included in a telemedicine network comprising eight hospitals in the region.

Attitude of Health Personnel↗

Telepathology and imaging spectroscopy as a new modality in histopathology.

Telemedicine started in the late 1950's by transmitting data on patients' pulse and heart rates. In the 1980's it expanded to radiology and orthopedics. The technology is now expanding to other specialties that can digitally gather patient data. Telepathology comprises the transmission of microscopic images via telecommunication network. Image compression and multiplexing technologies enabled high-resolution telepathology as well as real-time video consultations over international telephone lines. Organ transplantation has become a viable treatment and offers new life to an increasing number of patients suffering from chronic end stage diseases and from irreversible organ failure. Rejection is still a major problem in kidney, liver, and heart transplantation. To gain further insight into the complex interactions within the components of the immune system, it has become increasingly necessary to develop rapid and simple methods to monitor the status of the immune system in patients. Clinical signs suggest organ rejection and abnormal laboratory test results, but only histological signs on biopsy specimens are adequately specific. The financial cost of organ transplant makes it imperative to develop tools for the early identification and treatment of organ rejection. An increasingly sensitive and accurate way of localizing key structures and abnormalities is through spectroscopy of either H&E stained samples or with a fluorescent tag (fluorophore) or by relying on natural fluorescence. The system is based on a unique Prism and Mirror Imaging Spectroscopy System ("PARISS), spectrometer originally designed and implemented for remote Earth monitoring from space and aircraft and astronomical imaging spectroscopy. Compact and lightweight both the mirror and prism are presently constructed in inexpensive glass but can also be injection molded in plastic. Any number of vendors anywhere in the world can produce all parts of the assembly. This greatly enhances the chances of future commercial viability. The Interactive Histopathology Consultation Network INTERPATH (PL961121) project integrated of remote control imaging microscopy system, imaging spectroscopy, and communication networks called SPECTROMIC. This telepethology unit will be a useful tool in the Regional and International Integrated Telemedicine Network for Medical Assistance in End Stage Diseases and Organ Transplant, RETRANSPLANT HC 4028 (HC) & IN 4028 (HC).

Computer Systems↗

[Telepathology in diagnostic consultations for controversial neoplastic growths in the lung--personal experience].

The authors assessed the diagnostic accuracy of the static telepathology (sTP) for practical consultations in the controversial pulmonary oncology cases. The short characteristics of the diagnostic cases is included. We reported the results of 6 difficult clinico-pathological cases submitted to Dept Quantitative Pathology [DQP] for consultations (5F and 1M, age: 26-68 yrs). Digital images of histological or cytological samples were captured at DQP and transmitted to telepathologist (TPat) in Thoraxklinik, Heidelberg or AFIP, Washington DC. Simultaneously, the same slides (or with a paraffin block) were mailed to TPats for re-evaluation with the conventional microscope (dgn-zwPat). The controversial cases presented 2 types of diagnostic problems: 1/rare entities, 2/common difficulties in the routine work of pathologist, but with indefinitely proved diagnosis. The first group encounters TPat diagnoses as follows: * case A: pulmonary plasma cell granuloma with lymphoidal interstitial infiltrates [LIP]--preleukemia; * case B: microfoci of early metastases of benign uterine leiomyoma; * case D: small cell carcinoma spreading along pleura. The second group included: * case C: invasive epidermoidal carcinoma in bronchus; *case E: probably metastatic adenocarcinoma of colon; *case F: synchronous or metastasising 2 lung tumours sharing NE morphology or NE immunohistochemical features. There was very high concordance between referring pathologist (ref-Pat) diagnoses and TPat diagnoses as well as a consensus in zw-TPat diagnoses. In 2 cases the conceptual problem was solved by TPat. Telepathology offered a support or improved the quality of the final diagnosis. The implementation of sTP remarkably reduced the time of consultations and allowed to present the diagnostic problems to the international group of experts.

Adenocarcinoma↗

[Telepathology--applications of an emerging technology].

Due to the development of modern telecommunication by means of high speed data transfer either by normal telephone lines or the internet we are faced with new possibilities and chances in pathology. Instead of mailing slides, today images can be transferred electronically within seconds around the world, a second opinion of a highly skilled specialist can be available within the same day or even the same hour. Beside teleconsultation, telediagnostics is the most sophisticated application of telepathology. This means the evaluation of freshly prepared cryosections obtained during surgery by a pathologist using a remotely controlled microscope in a location deprived of pathological expertise. Since the technology applied has become very reliable, problems encountered by using this technology are mainly caused by either microscopic or macroscopic sampling errors. A correct diagnosis can not be obtained if the images mailed are not containing the necessary information. The same is true for telediagnostics, if the biopsy taken for cryosection does not contain the relevant lesion, a correct diagnosis will not be possible. However, these problems are not specific for telepathology, but are encountered in routinely processed specimens as well. Thus, protocols need to be developed assuring sufficient and reproducible image sampling for teleconsultation.

Biotechnology↗

[Using telepathology for remote pathoanatomical diagnostics].

The experience accumulated in 2000-2002 in the department of pathology of the central clinical hospital of President Administration Medical Centre on the use of telepathology for distant anatomopathological diagnosis is reviewed. Multilevel consulting-diagnostic telepathological network having local (intrahospital and city), federal and international levels was created in the scope of the departmental telemedical project. The results of the use of removed telediagnosis for urgent histological studies on frozen sections indicate the absence of differences between this method and conventional optical diagnosis.

Computer Communication Networks↗

Static telepathology consultation service between Tata Memorial Centre, Mumbai and Nargis Dutt Memorial Charitable Hospital, Barshi, Solapur, Maharashtra: an analysis of the first 100 cases.

Telepathology is the practice of pathology at a distance. Static telepathology is employed to achieve teleconsultation between a tertiary cancer referral centre, Tata Memorial Centre and a sister concern in rural area viz. Nargis Dutt Memorial Cancer Hospital, Barshi, Solapur. This is an analysis of the first 102 cases. Two transcontinental consultations have not been included in statistical analysis. A diagnosis was offered in 99 (99%) cases; whereas it was deferred in only I (1%) case. Clinically important or relevant diagnosis were achieved in 93/ 99 (93.93%) of cases. Major discrepancies were encountered in 6/99 (6.06%) of cases. A total of 79% of cases were reported within 3 days, of which 32% were reported within 8 hours (a single working day) and 47% within 1-3 days. Telemedicine can be used effectively to bridge the gap between medically underprivileged, geographically distant rural areas and advanced centers with technical expertise using cheaper static store and forward methodology.

Cancer Care Facilities↗

Experience with distant pathology demonstrations for clinicians in hospitals without local pathologists through the Swedish telepathology work station.

Conferences between pathologists and clinicians are routinely important at each hospital which has its own department of pathology. With the aid of telepathology, such conferences can be facilitated to provide results similar to those in hospitals with their own pathological service. Our Department serves the hospital in Motala, which is located 50 km west of Linköping. We now have telepathology conferences every second week with the surgeons and every second week with colleagues in internal medicine. The equipment we use is LabEye, which is produced by Innovativ Vision AB in Linköping. This equipment includes mouse pointers at both stations which are always visible in the images at both ends of the system. The quality of images received in Motala is very good, allowing discussion of details regarding the specimens, especially the cytological ones. Our experiences with these conferences have been very good.

Hospital Units↗

Fine-needle aspiration cytology of the breast: a preliminary report on telepathology through Internet multimedia electronic mail.

Telepathology is a field of telemedicine that enables the exchange of histologic and cytologic images for consultations among pathologists of two or more remote institutions, through a suitable communication channel. The Internet can connect several scientific and medical institutions because of the existence of a set of standard protocols that allow different computers to communicate; multimedia electronic mail is one such protocol, which allows asynchronous transmission of multimedia documents, i.e., including text, images, movies, and sounds. The aim of the present article is to test a novel approach in which Internet multimedia electronic mail is used as a communication medium to obtain an asynchronous telepathology tool for remote consultation. To assess the diagnostic validity of the method, 48 cases of fine-needle aspiration cytology of breast lesions were sent from Udine to Trento, Italy. Comparisons between local and remote diagnoses, and cytologic diagnoses versus subsequent histologic reports demonstrated that Internet multimedia electronic mail is suitable for remote consultation. Internet multimedia electronic mail thus presents an additional diagnostic tool that is easy to use, available on a wide range of computers, and inexpensive, because its cost is independent of distance.

Biopsy, Needle↗

Telepathology: practicing pathology in two places at once.

Technical advances in telecommunications and image processing make it possible to transmit high-quality images great distances. Diagnostic pathology--which relies on the accurate representation of cytologic detail, tinctorial properties of cells, and morphological patterns for analysis and interpretation--stands to benefit from these advances. Telepathology permits surgical pathology services to be extended to remote or relatively inaccessible areas, authoritative opinions to be issued by recognized experts on specific cases, and external review of histologic diagnosis for purposes of quality control. Although telepathology systems are simple in concept and operation, their use in the day-to-day practice of pathology is still evolving.

Clinical Laboratory Information Systems↗

Image quality and acceptance of Telepathology.

Aim: To evaluate the quality of components of electronic image, colortruth brightness and sharpness, via two capturing systems on acceptance of images, diagnostic accuracy and training effect. Methods: Ten histological and 4 cytological cases of routined breast specimens were capturing by a pathologist in Germany via two different capturing systems. The images were digitalized and saved on a recordable compact disc with brief clinical informations, and sent to a pathologist in Thailand. The test pathologist viewed the images at his own station, imitating the environment as daily work and noted the results for the analysis. Slides were sent to perform glass-slide diagnosis (GD) and recorded. The results were analyzed concerning: overall image quality in each system; viewing time; diagnostic accuracy; training effect. Main results: Results of 102 images are recorded as: number of images; score of the components of image quality; viewing Time; telepathology diagnosis (TD); glass-slide diagnosis (GD). Conclusions: 1. The capturing part plays an important role performing image quality and viewing time, resulting in the acceptance. 2. Electronic images of cytological cases are better in quality. 3. Training effect to view electronic images helped the acceptance of images used in telepathology, but did not help to increase the diagnostic accuracy in this study. 4. The reliability of electronic images is as high as viewing microscopic images in this investigation, especially in cytological cases via a good capturing machine.

Journal Article↗

The effects of time delays on a telepathology user interface.

Telepathology enables a pathologist to examine physically distant tissue samples by microscope operation over a communication link. Communication links can impose time delays which cause difficulties in controlling the remote device. Such difficulties were found in a microscope teleoperation system. Since the user interface is critical to pathologist's acceptance of telepathology, we redesigned the user interface for this system, built two different versions (a keypad whose movement commands operated by specifying a start command followed by a stop command and a trackball interface whose movement commands were incremental and directly proportional to the rotation of the trackball). We then conducted a pilot study to determine the effect of time delays on the new user interfaces. In our experiment, the keypad was the faster interface when the time delay is short. There was no evidence to favor either the keypad or trackball when the time delay was longer. Inexperienced participants benefitted by allowing them to move long distances over the microscope slide by dragging the field-of-view indicator on the touchscreen control panel. The experiment suggests that changes could be made to the trackball interface which would improve its performance.

Costs and Cost Analysis↗

Expert consultation by use of telepathology--the Heidelberg experiences.

The benefits and constraint using visual telecommunication in pathology (telepathology) are described based upon the experiences of the authors for more than 4 years. The experiences include first trials in visual telecommunication to analyze image quality, transfer rates, handling of commercially available equipment, and need for routinely diagnostic work followed by routinely expert consultations in frozen sections. A quality control study on diagnostic reliability of bronchial carcinomas was performed later, and the diagnosticly different cases were reclassified by a panel of pathologists using visual telecommunication. The latest experiences are based upon routinely expert consultations in morphologically difficult cases by ISDN-based telecommunication. As a result, image quality and transfer rates are sufficient to permit efficient expert contribution to diagnostically difficult cases in 30-50% of transmitted cases in both common telephone lines and ISDN connections. No influence of various staining procedures, immunohistology, or in situ hybridization on image quality or transfer rates were observed. The area of transmitted images is still too small, and the reliability of ISDN lines is still not sufficient for remote control service in Germany. The handling of commercially available equipment needs to be improved; however, as a general result, telepathology will probably improve the diagnostic quality and access in histopathology within the coming years.

Clinical Laboratory Techniques↗