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[Support by telecommunication of decisions in diagnostic pathology. Experience with the first telepathology system in Hungary].

The term of telepathology can be determined as diagnostic work of the pathologist at distance via an interactive telecommunication connection in which the image of the specimen appears on a monitor instead of viewing it directly through a microscope. Being a part of the telemedicine, the fast development of the telepathology is based on the revolution of the new digital technology. Technical advances of telecommunication and of image procession in the latest 80s have provided the means to transfer huge amount of visual information in narrow communication bandwidth in two direction link. In 1995 multiple live image transmission with simultaneous voice transfer has been performed between the Department of Pathology of MI Central Hospital and 1.st Institute of Pathology and Experimental Cancer Research of Semmelweis Medical University, Budapest. Transfer rate via ISDN channel was 128 kbit/sec. The first live image telemedicine system in CCE/NIS countries has achieved transmission of cytological smears, frozen sections and paraffin embedded slides supplemented with immunohistochemical preparations. Quality of visual information using video-conference software of standard H.320 was suitable for diagnosis. Development of global telepathology services depends on compatibility of different systems and on comprehensive examinations of cost, accessibility and quality for the clients and providers of telemedicine. Recent paper surveys shortly the historical development of the telepathology, analyses the essence of the new consultation technology, summaries the first experiences in Hungary and raises some questions have to be answered in the near future.

Academies and Institutes↗

Recent advances in telepathology.

Telepathology is to transform microscopic and gross images of pathological specimen into digital forms and transmit them electronically to remote sites for consultation and collaboration. Many benefits can be derived from telepathology. Although still at its initial developing stage, this technology is beginning to change the way pathological practice is conducted. With the rapid advancement of computer and telecommunication sciences, telepathology is increasingly becoming more feasible and practical for pathologists. This review gives a comprehensive account of the recent development in telepathology, discusses its functionality, applications, limitations and potential, and serves as an introduction to this rapidly evolving field.

Computer Communication Networks↗

The UICC Telepathology Consultation Center. International Union Against Cancer. A global approach to improving consultation for pathologists in cancer diagnosis.

BACKGROUND: The morphologic diagnosis of tumor specimens with precise tumor typing, staging, and grading remains the basis of almost all cancer treatments. Thus, in each tumor case, a histologic diagnosis of the highest quality should be the physician's priority. In approximately 10-20% of tumor cases, diagnostic uncertainty remains to some degree, requiring a second opinion in determining the biologic behavior, the histogenesis, the grade of dedifferentiation, or any other parameter. Facilitating the communication between pathologists and the exchange of cases, telepathology gains more and more importance. To benefit from this technical development, the International Union Against Cancer (UICC) has decided to establish a Telepathology Consultation Center (UICC-TPCC) for interested pathologists around the world. METHODS: The communication and exchange of histologic images works via the Internet. To ensure constant documentation, a case-based data base and image archive is used. Special TPCC software handles all requests to the TPCC and controls the interaction among requesting pathologists, TPCC, and UICC experts (transferring, reading, answering, logging, storing, etc.). All necessary data for controlling the telepathology service are stored in a customized SQL data base. The necessary equipment for the requesting pathologist is a personal computer; a digital or television camera/frame grabber, which is attached to a microscope; and access to the Internet. The requesting party contacts the TPCC's World Wide Web server and uploads the images and the clinical data of their case. To ensure uninterrupted functioning, the hardware will be part of a high-level communication center, which is connected via ATM (asynchronous transfer mode, 155 megabits per second) to the Internet. RESULTS: The UICC has decided to establish the TPCC at the Institute of Pathology at the Charité, Humboldt-University, Berlin, Germany. The TPCC will not make the diagnoses itself but will involve an affiliated specialized expert pathologist. He or she will be on the panel of UICC experts who will constitute the "diagnostic backbone" of the TPCC. The center will function as follows: If a pathologist anywhere on the globe is confronted with the diagnosis of a difficult tumor case, he takes digitized histologic images (5-40 in number) and sends them along with sufficient clinical data to the server of the UICC-TPCC, asking for a second opinion. The center checks the case and transfers it to one of the UICC experts. This expert makes his or her diagnostic suggestion, which is then transferred back to the requesting pathologist via the UICC-TPCC. CONCLUSIONS: The UICC-TPCC will be able to provide rapid and inexpensive diagnostic aid to pathologists all over the world, offering the possibility of a second opinion in accordance with the UICC-TNM and World Health Organization (WHO) standards. During the first and second year, the UICC-TPCC will be financed by sponsors. Telepathology makes the distribution of new developments of diagnostic standards, e.g., of the TNM system, WHO terminology, new tumor classifications, and updated information on actual technologies, globally accessible in a direct and rapid way. It also enables a high quality of education and teaching.

Computers↗

Telepathology and the networking of pathology diagnostic services.

Telepathology is the practice of pathology over a long distance. Components of a telepathology system include the following: a remote-controlled light microscope attached to a high-resolution video camera; a pathologist workstation incorporating controls for manipulating the microscope and a high-resolution video monitor; and a telecommunications linkage. An immediate challenge is to establish the specifications for a telepathology system. Breast tissue has served as a model. Receiver operator characteristic curve studies show that the pathologist's ability to discriminate benign from malignant breast tumors is similar using either a conventional light microscope or a video monitor with approximately 1000 lines of resolution. The percentage of cases for which pathologists render an "equivocal" diagnosis is the same for the two modalities. Telepathology may be an effective way to provide on-line consultations in difficult cases and to provide hospitals in remote areas with immediate access to anatomic pathology services.

Computer Communication Networks↗

Telepathology in a routine clinical environment: implementation and accuracy of diagnosis by robotic microscopy in a one-stop breast clinic.

The concept of using telepathology as a way of increasing the efficiency of pathologists is not new. There have been many studies attempting to evaluate the role of telepathology diagnosis, predominantly using transmission of still digital images. This study evaluates the potential value of remote diagnosis using robotic microscopy in the setting of a one-stop breast clinic. A Zeiss Axiopath telepathology system was used. The aim was to identify deficiencies in software and the minimum specifications for the computer hardware and network capability needed for reproducible pathological diagnosis with a view to developing a system that can preclude the need for an on-site pathologist. Forty-seven fine needle aspiration smears were diagnosed simultaneously by a pathologist in the breast clinic and by a different pathologist operating a robotic microscope situated in the clinic in a different wing of the hospital from the pathology department. The diagnoses, the time taken for clinic and remote diagnosis, and difficulties in using the system were recorded. Absolute correlation was achieved in 80.9% of cases. There was one false-positive diagnosis of cancer and no false negatives. The mean time taken for diagnosis per case was 2.39 min in clinic and 10.81 min by remote control robotic microscopy. However, as the pathologist did not have to leave the department, remote diagnosis was overall more economical of pathologists' time. Image quality was generally found to be good and not an obstacle to diagnosis. There were operational and technical problems that made remote diagnosis tedious and lengthy. Although at present the system is not capable of replacing an on-site pathologist, the results were encouraging and suggest that remote control remote diagnosis has the potential to increase the efficiency of pathologists.

Biopsy, Needle↗

Intra-hospital use of a telepathology system.

Utilization of telepathology systems to cover distant geographical areas has increased recently. However, the potential usefulness of similar systems for closer distances does not seem to be widely appreciated. In this study, we present data on the use of a simple telepathology system connecting the pathology department and the intra-operative consultation room within the operating theaters of the hospital. Ninety-eight frozen section cases from a past period have been re-evaluated using a real-time setup. Forty-eight of the cases have been re-evaluated in the customary fashion; allowing both ends to communicate and cooperate freely. Fifty of the cases, however, were evaluated by the consultant while the operating room end behaved like a robot; moving the stage of the microscope, changing and focusing the objectives. The deferral rate was lower than the original frozen section evaluations. Overall, the sensitivity was 100%, specificity 98%, negative predictive value 96, 5% and positive predictive value 100%. No significant difference was found for the diagnostic performances between the cooperative and robotic simulation methods.Our results strengthen the belief that telepathology is a valuable tool in offering pathology services to remote areas. The far side of a hospital building can also be a remote area and a low cost system can be helpful for intraoperative consultations. Educational value of such a system is also commendable.

Female↗

The image pyramid system--an unbiased, inexpensive and broadly accessible method of telepathology.

Although computerised information technology, including the Internet is broadly used and globally accessible it is still not a significant form of professional communications in diagnostic histopathology. The high cost of interactive dynamic telepathology systems makes their use limited outside the richest economies. In contrast static telepathology systems are relatively cheap but in practice their information content can be heavily biased by the choice of images sent by the consulting pathologist. The degree of this bias may be regarded simply as the amount of information transferred to a remote location expressed as a percentage of the total information present in the histological sample. We refer to this as the percentage of explicit versus implicit information. Another major source of bias may be found in the information transmitted in written or verbal discussion with a remote consultant. We have developed a system of static telepathology, the image pyramid, which attempts to minimise bias by transferring all of the information in a section to the consultant. It is inexpensive and should prove to be widely accessible.

Data Display↗

[The future of telepathology. An Internet "distributed system" with "open standards"].

With the availability of Internet, the interest in the possibilities of telepathology has increased considerably. In the foreground is thereby the need of the non-expert to bring in the opinions of experts on morphological findings by means of a fast and simple procedure. The new telepathology system iPath is in compliance with these needs. The system is based on small, but when possible independently working modules. This concept allows a simple adaptation of the system to the individual environment of the user (e.g. for different cameras, frame-grabbers, microscope steering tables etc.) and for individual needs. iPath has been in use for 6 months with various working groups. In telepathology a distinction is made between "passive" and "active" consultations but for both forms a non-expert brings in the opinion of an expert. In an active consultation both are in direct connection with each other (orally or via a chat-function), this is however not the case with a passive consultation. An active consultation can include the interactive discussion of the expert with the non-expert on images in an image database or the direct interpretation of images from a microscope by the expert. Four software modules are available for a free and as fast as possible application: (1) the module "Microscope control", (2) the module "Connector" (insertion of images directly from the microscope without a motorized microscope), (3) the module "Client-application" via the web-browser and (4) the module "Server" with a database. The server is placed in the internet and not behind a firewall. The server permanently receives information from the periphery and returns the information to the periphery on request. The only thing which the expert, the non-expert and the microscope have to know is how contact can made with the server.

Humans↗

Telepathology diagnosis of prostrate needle biopsies.

We conducted a prospective analysis of the diagnostic accuracy of a static-image telepathology system (Roche RIAS, Elon College, NC) in the interpretation of needle biopsies of the prostate (NBx). Two hundred consecutive cases received in consultation were included. Each case was examined by one of the researchers (MHW), and images were captured either according to the areas of concern designated by the referring pathologist (set A; 100 cases) or according to the judgment of MHW (set B; 100 cases). The other researcher (JIE) daily rendered diagnoses first on the video images and then by direct microscopy. Accuracy of video diagnosis was categorized as 0 (correct), 1 (minor error), 2 (major error), or 3 (deferred). An average of 5.49 images were captured per case in set A, and 5.28 for set B. Seventy-seven, 9, 9, and 5 cases were categorized as 0, 1, 2, and 3, respectively, for set A, and 78, 17, 1, and 4 cases, respectively, for set B. Video versus direct diagnoses for the type 2 errors were five carcinoma versus markedly atypical, two carcinoma versus atypical, one carcinoma versus nonspecific granulomatous prostatitis, and two benign versus atypical. In these difficult NBx, telepathology allowed an essentially correct diagnosis in almost all of the cases. The number of images required was reasonable, and the images were of excellent quality. However, the accuracy varied from set A to set B, with the fractions of nondeferred cases that were given an essentially correct video diagnosis totaling 91% and 99%, respectively (P < .01). Accuracy of telepathology diagnosis using static images may depend on the person capturing the images, even in the case of small biopsies.

Biopsy, Needle↗

Internet teleconferencing method for telepathology consultations from lung and heart transplant patients.

Current Internet-based teleconferencing techniques allow a referring pathologist to transmit real-time images from a microscope to a consultant, while maintaining a verbal conversation using Internet telephony. In our study, 50 randomly selected transbronchial biopsies from lung allograft recipients and 58 randomly selected endomyocardial biopsies from heart transplant patients were diagnosed by consultant pathologists using Internet-based teleconferencing methods. The referring pathologists acquired the real-time video images from the biopsies using a light microscope equipped with a phototube adapter and a video camera. The consultant pathologists viewed the processed images on a video monitor at 800 x 600 resolution, using a standard microcomputer equipped with Netmeeting software, and directed the referring pathologist to move the slide under the microscopy and/or change image magnification. The validity of telepathology diagnoses was assessed with kappa coefficients. Consultations were completed in 5 to 15 minutes per case. Sound transmission was unreliable, and in approximately 25% of consultations the referring pathologist needed to "call back" to reestablish verbal communication. In all but 2 transbronchial biopsies there was agreement between the original diagnosis and the diagnosis by telepathology (kappa = 0.92). In 48 of 58 endomyocardial biopsies there was concordance between the 2 diagnoses (kappa = 0.692). Only 3 out of 10 of these discrepancies were clinically significant (kappa = 0.897). Internet-based teleconferencing techniques provide effective and relatively inexpensive tools for real time telepathology consultations. The technology is probably best suited for the study of small specimens from patients that require rapid diagnosis by a consultant.

Biopsy↗

Diagnosing minimal adenocarcinoma on prostate needle biopsy by real-time dynamic telepathology through the internet: evaluation of an economic technology for remote consultation.

Computer-aided telepathology was introduced about 10 years ago, but has not yet met with worldwide acceptance. Recently, the internet has been used for image transmission in telepathology. We set up an easily assembled system comprising a common microscope, a charge-coupled device (CCD) camera, a personal computer, and a commercial internet surveillance program with internet accessibility. The consultant then views the real-time images using a common web browser at the remote site. The purpose of the study was to assess the ability of the system to transmit images of sufficient quality to achieve high concordance between the diagnoses made at the home base and at the remote site. We chose cases of minimal adenocarcinoma on prostate needle biopsy, because these lesions are liable to be overlooked and, even if discovered, are subject to differences in interpretation due to their limited size and subtle histologic changes. One hundred prostate needle biopsy specimens, including 45 minimal adenocarcinoma, 11 atypical small acinar proliferation, and 44 benign lesions, were tested. Two pathologists, unaware of the final diagnoses, were recruited to provide intra- and interinstitutional consultation. The overall concordance rates between telepathology diagnoses and final diagnoses were 97% and 94% for the two pathologists, respectively. Our results demonstrate that this method is effective for teleconsultation. Similar systems using the internet can be easily set up by ordinary pathology laboratories to facilitate remote consultation.

Adenocarcinoma↗

Current issues in telepathology.

Telepathology involves rendering diagnostic opinions on specimens at remote locations using computer and telecommunications technologies. Consultations are a routine practice pattern in pathology, as there is a large amount of diagnostic and prognostic information available from the examination of biopsy material that requires an extensive knowledge of diseases and their clinical implications. Pathologists therefore frequently request opinions from those who subspecialize in various diseases. The use of video technology to examine and consult on microscopical slides has been validated, although sparsely and with a number of technical issues as yet unresolved. There are two principal paradigms for telepathology: remote dynamic screening by robotic video microscopy and remote diagnosis from selected still video microscopical images. The former is more appealing to most pathologists; however, it requires very high speed telecommunications links that are expensive and may not be available in a given location. The latter method entails a significant reduction in the data on which the diagnosis is rendered, as one is dependent on the fields selected at the remote location. In addition, there are hybrid systems that combine limited robotic capabilities with high-resolution still images. Image compression can increase the number of images that can be transmitted over an otherwise-limiting telecommunications infrastructure. JPEG is the current standard for such compression. Despite certain limitations, telepathology has been demonstrated successfully at several sites around the world. As this technology matures, systems will offer higher resolution, standardization of file formats, and better compression at lower cost.

Computer Communication Networks↗

A randomized controlled trial of the diagnostic accuracy of internet-based telepathology compared with conventional microscopy.

AIMS: To compare the diagnostic accuracy of internet-based virtual microscopy with conventional light microscopy, in the context of renal biopsies assessed by participants in the UK National Renal Pathology External Quality Assessment (EQA) Scheme. METHODS AND RESULTS: 'Virtual slides' of current EQA cases were made available over the internet to participants in the scheme. The approach permitted what may reasonably be described as a randomized controlled trial of the diagnostic accuracy of this mode of telepathology, in the context of renal pathology. No significant difference in diagnostic accuracy could be detected between the diagnoses proffered on the basis of virtual slides and conventional slides; but using virtual slides took pathologists considerably longer. CONCLUSIONS: This result provides some encouragement for the implementation of such virtual slide-based telepathology systems. However, in failing to detect a difference, equivalence of diagnostic accuracy has not been proved; nor has the relevance of this result to other fields of histopathology been demonstrated. A decision to implement a diagnostic telepathology system requires consideration of numerous factors beyond diagnostic accuracy, including financial, legal, professional and ethical issues.

Diagnosis↗

Evaluation of static telepathology in veterinary diagnostic cytology.

BACKGROUND: Telepathology is the process of diagnostic pathology performed on digital images viewed on a display screen rather than by conventional light microscopy with glass slides. At present, electronic mail (e-mail) attachment is the most common communication medium for telepathology, because it is relatively simple and incurs minimal cost. OBJECTIVE: Our objective was to test whether telediagnosis through Internet e-mail could be applied to veterinary diagnostic cytology. METHODS: Using 20 cytology cases, on which a consensus diagnosis was reached by 3 experienced pathologists, a total of 130 images were digitized and sent as e-mail attachments from the Unit of Anatomic Pathology of the Faculty of Veterinary Medicine of Naples to the Unit of Pathology of the Faculty of Veterinary Medicine of Messina, Italy. The images were reviewed at the Unit of Pathology of Messina, where the consulting pathologist formulated his diagnoses by visualizing the images on the monitor of a computer. The telediagnoses were compared with the consensus diagnoses and with the consulting pathologist's interpretation using conventional light microscopy at a later date. RESULTS: The median time to capture images was approximately 30 minutes for each case. The median time to make a telecytodiagnosis was a few seconds for each case. Overall, there was good agreement (85%) between the consensus diagnosis and the consultant's telediagnosis. In 100% of the cases there was agreement between the consulting pathologist's telediagnosis and conventional glass slide diagnosis. CONCLUSION: Telepathology by e-mail provides acceptable efficacy and a faster turnaround time than post and can be applied to veterinary diagnostic cytology.

Animals↗

The use of digital imaging, video conferencing, and telepathology in histopathology: a national survey.

AIMS: To undertake a large scale survey of histopathologists in the UK to determine the current infrastructure, training, and attitudes to digital pathology. METHODS: A postal questionnaire was sent to 500 consultant histopathologists randomly selected from the membership of the Royal College of Pathologists in the UK. RESULTS: There was a response rate of 47%. Sixty four per cent of respondents had a digital camera mounted on their microscope, but only 12% had any sort of telepathology equipment. Thirty per cent used digital images in electronic presentations at meetings at least once a year and only 24% had ever used telepathology in a diagnostic situation. Fifty nine per cent had received no training in digital imaging. Fifty eight per cent felt that the medicolegal implications of duty of care were a barrier to its use. A large proportion of pathologists (69%) were interested in using video conferencing for remote attendance at multidisciplinary team meetings. CONCLUSIONS: There is a reasonable level of equipment and communications infrastructure among histopathologists in the UK but a very low level of training. There is resistance to the use of telepathology in the diagnostic context but enthusiasm for the use of video conferencing in multidisciplinary team meetings.

Attitude of Health Personnel↗

Teleeducation and telepathology for open and distance education.

Our experience in creating and using telepathology system and multimedia database for education is described. This program packet currently works in the Department of Pathology of University Medical School in Poznan. It is used for self-education, tests, services and for the examinations in pathology, i.e., for dental students and for medical students in terms of self-education and individual examination services. The system is implemented on microcomputers compatible with IBM PC and works in the network system Netware 5.1. Some modules are available through the Internet. The program packet described here accomplishes the TELEMIC system for telepathology, ASSISTANT, which is the administrator for the databases, and EXAMINATOR, which is the executive program. The realization of multi-user module allows students to work on several working areas, on random be chosen different sets of problems contemporary. The possibility to work in the exercise mode will image files and questions is an attractive way for self-education. The standard format of the notation files enables to elaborate the results by commercial statistic packets in order to estimate the scale of answers and to find correlation between the obtained results. The method of multi-criterion grading excludes unlimited mutual compensation of the criteria, differentiates the importance of particular courses and introduces the quality criteria. The packet is part of the integrated management information system of the department of pathology. Applications for other telepathological systems are presented.

Computer-Assisted Instruction↗

Telepathology: design of a modular system.

Although telepathology systems have been developed for more than a decade, they are still not a widespread tool for routine diagnostic applications. Lacking interoperability, software that is not satisfying user needs as well as high costs have been identified as reasons. In this paper we would like to demonstrate that with a clear separation of the tasks required for a telepathology application, telepathology systems can be built in a modular way, where many modules can be implemented using standard software components. With such a modular design, systems can be easily adapted to changing user needs and new technological developments and it is easier to integrate modular systems into existing environments.

Computer Systems↗

Diagnosis of congenital heart malformations--possibilities for the employment of telepathology.

GOAL: In a study of 10 autopsy cases with congenital cardiac malformations we investigated whether obtaining a second opinion by means of telepathology could satisfy quality standards for the diagnosis of cardiac malformations and what the advantages and disadvantages of such a procedure might be. MATERIAL: The investigatory samples were 10 formalin-fixed hearts with complex malformations from 9 fetuses and one newborn on which autopsies had been performed at the Pathological Institute of the Charité Hospital. The requests for a second opinion, which included text and image data, were sent in the form of Microsoft PowerPoint presentations to 5 experts in 4 countries. Per case the number of images that were sent was between 3 and 7. The size of the files was between 439 and 942 kb. The time required for preparation of the cases for sending them to the specialists was between 1 and 2 hours: this encompassed the time for putting the notation on the images, compressing them, creating a file that included both the images and the clinical data and then sending the case file. RESULTS: All 10 cardiac malformations were correctly identified. In 8 of the 10 cases at least one expert had questions. After these questions had been answered and further images had been sent final correct diagnoses were made in all cases. All experts said that the quality of the images was very good. Use of a standardized findings questionnaire, which also included the marking of anatomic structures and of pathological findings in the images, proved useful. Standardized findings forms facilitate orientation during interpretation of the cases and should be used generally to avoid misunderstandings in telepathological communication. CONCLUSIONS: In general it is possible to obtain an effective and reliable diagnosis of congenital heart malformations by means of telepathology. It is far quicker to get a second opinion by this means than by conventional means.

Autopsy↗