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Telepathology for the biopsy specimens from human allografted kidney: effectiveness and pitfalls.

This study was conducted to examine the validity and accuracy of telepathology for biopsy specimens from allografted kidney. The still video images of paraffin sections were transmitted via a two-way telephone by use of a digitized telephone network, ISDN. The quality of the transmitted images was sufficient for the diagnosis, especially at higher magnification. A total of 37 needle biopsy specimens from the 31 allografted kidneys were presented for consultation and diagnosed by an expert pathologist at Tottori University, until July 2000. The average number of transmitted images was 7.1 (range 3-12). Of the 37 specimens, diagnoses by telepathology agreed well with those made through direct microscopy in the 30 specimens. Insufficient or improper diagnosis was made in four specimens, in which proper and pathognomonic still images were not transmitted. Three cases were not diagnosed by telepathology because of the difficulty in making differential diagnosis. From these results, we concluded that telepathology is useful for transplantation pathology, in spite of limitations in some cases.

Biopsy, Needle↗

Hybrid system for telepathology.

We introduce a novel hybrid telepathology system providing simultaneous transmission of both real-time microscopy and static imagery at a reasonable cost. It is capable of capturing static, true color images at resolution of 1,520 x 1,144 pixels and providing live transmission of real-time video images of the glass slide in Common Intermediate Format (CIF), which can be viewed at 1,024 x 768 pixels or higher. Instant freeze function can be enabled with 4x CIF resolution (1,408 x 1,152 pixels). This system comprises the advantages of real-time transmission and high-resolution static imagery, while direct visual and audio communications are maintained at the same time. It uses standard 'off-the-shelf' components with a total cost of around $30,000 to $40,000. We also conclude that differences in telepathology modality and image quality have an impact on diagnostic accuracy and should be considered for discussion and standards development by professional organizations in the field of telepathology. An effort to ascertain the diagnostic limitations of various telepathology modalities is essential to the future use of this modality of pathology practice.

Computers↗

Online Internet-based robotic telepathology in the diagnosis of neuro-oncology cases: a teleneuropathology feasibility study.

This feasibility study examined the diagnostic accuracy of Internet-based dynamic-robotic telepathology using neuropathology cases. Randomly, 83 cases were selected from the routine diagnostic workload of the Neurosurgical Pathology Laboratory in Poznan, Poland. Telepathology diagnoses were compared with conventional paraffin section diagnosis. The neuropathologists, operating a robotically controlled motorized microscope over the Internet from 3 different Polish cities, individually reviewed the cases using computer workstations. Viewing times ranged from 2 minutes 54 seconds to 32 minutes 12 seconds per case. The mean diagnostic accuracy for telepathology diagnosis was 95%, with 2 of 3 observers achieving 100% diagnostic accuracy. Image quality was judged to be sufficient for correct evaluation, and the viewing times required to establish a final diagnosis by remote video microscopy were acceptable. Generally, user acceptance of robotic telepathology was high.

Adolescent↗

Telepathology between Richmond and Beckley Veterans Affairs Hospitals: report on the first 1000 cases.

OBJECTIVE: A telepathology connection between Richmond VAMC and Beckley VAMC using dynamic robotic telepathology to provide pathology services remotely was established. MATERIALS AND METHODS: This study reports a 14-month experience using telepathology to diagnose surgical specimens obtained from patients at the Beckley VA Medical Center and viewed in Richmond 250 miles away. Over 14 months, 2325 slides representing 1000 cases were viewed. RESULTS: Discrepancies were observed in 20 of 2325 slides, or 0.86% of the total. None of the patients, where a discrepancy was found, were adversely affected by the preliminary report given. CONCLUSIONS: This study demonstrates that telepathology is a reliable and cost-effective alternative to on-site pathology services and reviews advantages and disadvantages of the system.

Hospital Costs↗

Store-and-forward diagnostic telepathology of small biopsies by e-mail attachment: a feasibility pilot study with a view for future application in Thailand diagnostic pathology services.

Diagnostic telepathology by electronic mail (e-mail) attachment is relatively simple and incurs minimal cost. We assessed its accuracy and practical aspects in routine diagnostic pathology. Using 100 small biopsy specimens, a total of 1,488 images were digitized by one pathologist and sent as e-mail attachments from Nara Medical University, Japan, to a pathologist at Rajavithi Hospital, Thailand. His diagnoses were compared with his conventional light microscopy interpretation at a later date. The average total turnaround time spent on each case was 215 minutes, far less than the several days required by conventional post. There were two clinically significant errors. One was a diagnostically difficult case of colonic dysplasia, which was called carcinoma with telepathology. The other was a signet ring cell carcinoma of the stomach which was undetected with telepathology. Microscopy objective magnification and digital image quality may have played a role in impairing interpretation in both cases. Store-and-forward telepathology provides acceptable efficacy, a comparatively faster turnaround time than post and could be applied in routine work within Thai pathology services.

Biopsy↗

Use of telepathology for routine surgical pathology review in a test bed in the Department of Veterans Affairs.

BACKGROUND: Routine surgical pathology review by telepathology could be an important service component of multi-institutional pathology laboratory systems. Such service networks would increase access for rural hospitals without on-site pathologists to a broader range of pathology services on a daily basis. METHODS: In this clinical trial, we analyzed the diagnostic accuracy, deferral rates, and viewing times of two generalist pathologists using a hybrid dynamic/store-and-forward (HDSF) telepathology (TP) system to render diagnoses in real time on 200 consecutive surgical cases. The objective was to assess the efficacy of TP in providing diagnostic surgical pathology services to a remote hospital without an onsite pathologist. Surgical pathology specimens underwent gross preparation by specially trained personnel. When appropriate, this was done under the video supervision of a telepathologist. For TP, glass slides were placed on the stage of a robotic microscope at the Iron Mountain (MI) Department of Veterans Affairs Medical Center (VAMC) (remote site); control of the motorized microscope was then transferred to a pathologist located 220 miles away at the Milwaukee VAMC (host site). For each case, the telepathologist had the option of rendering a diagnosis or deferring the case for later analysis by conventional light microscopy (LM). After the slides were read by TP and a surgical pathology report had been generated, the slides were transported to Milwaukee, where they were reexamined by the telepathologist using LM and then by the pathology group practice or, when there was no consensus, by an outside consultant to establish a "truth" diagnosis. RESULTS: Compared with the consensus ("truth") diagnosis, clinically important and overall concordance were 99.0% and 97.4%, respectively, by TP, and clinically important and overall concordance were 100.0% and 98.5%, respectively, by LM. The deferral rate was 2.5%. Examining glass slides by HDSF telepathology took an average of 4.43 minutes per slide and 12.09 minutes per case. CONCLUSION: The high diagnostic accuracy and low rate of case deferral support the proposal that an offsite pathologist using HDSF telepathology can substitute effectively for an onsite pathologist as a service provider.

Biopsy↗

An automated tissue preclassification approach for telepathology: implementation and performance analysis.

Telepathology is generally defined as the use of telecommunications technologies in the practice of anatomic or surgical pathology. In the usual telepathology scenario, a remotely located pathologist views images of tissues samples in order to render a diagnosis of the biopsy. Some telepathology systems involve interactive remote control of a microscope-based imaging system which delivers diagnostic quality imagery to the remote pathologist. The usefulness of such interactive systems depends on minimizing the end-to-end delays involved in controlling the robotic microscope, manipulating the tissue sample, and acquiring and transmitting the high-resolution image. An approach to minimizing end-to-end delay involves adding "intelligence" to the image acquisition system so that it can gather, classify, rank, and transmit diagnostically useful images in a semiautonomous fashion. In this research, we develop image analysis and ranking techniques which can improve the end-to-end performance of a robotic telepathology imaging system. Our semiautonomous image collection system uses morphological techniques to extract seed points for suspicious regions, a novel region growing algorithm to segment the regions of interest, and heuristically motivated expert system ranking techniques to select diagnostically relevant "next-step" image acquisitions. Diagnostic relevance of our segmentation and ranking algorithms is established via subjective and objective testing of the system. In subjective testing, pathologists Agree or Strongly Agree that all segmented regions are diagnostically relevant with probability greater than 0.75. In objective testing, 84% of "next-step" images acquired by our algorithms coincide with the areas most likely to be chosen by a pathologist.

Artificial Intelligence↗

Frozen-section services by telepathology: experience of 100 cases in the San-in District, Japan.

The early experience is reported here of the use of intra-operative frozen-section service by telepathology using the integrated Service Digital Network (ISDN), a commercially available system that is being connected between the Department of Pathology of Tottori University and Matsue City Hospital, a distance of 30 km. The transfer rate is currently 64 kbit/s. The frozen-section service was conducted for a total of 117 tissue specimens (organs) from 100 patients between August 1993 and May 1995. The average time taken for examination of each specimen of frozen section was 13 min, ranging between 2 and 42 min. The average number of transmitted images was 6.2. Six cases necessitated more than 11 transmitted images to make a diagnosis, while 13 cases could be diagnosed from two images only. Correct and permissible diagnoses were obtained in 109 (93.2%) out of 117 specimens when comparing the telepathology diagnosis with that of direct microscopy. Improper or misdiagnosis was made for eight cases (specimens), which were misinterpreted as papillary carcinoma in Basedow's disease, adenoma and hyperplasia in two pheochromocytomas, solid-tubular carcinoma in phyllodes tumor, mastopathy in invasive carcinoma, metastatic carcinoma in astrocytoma, follicular lymphoma in reactive hyperplasia, and lymphadenitis in follicular lymphoma. In retrospect, diagnosis of these cases should have been deferred. From the results, it was concluded that the intraoperative frozen-section service by telepathology may be a worthwhile substitute for hospitals with limited accessibility to local pathology service, in spite of pitfalls in some cases. Well prepared, high-quality frozen section, sufficient verbal communication with surgeons, and a rather conservative attitude on the part of a well-trained pathologist seem to be the essential ingredients for reaching an accurate decision when using telepathology.

Computer Communication Networks↗

Cost-effective dynamic telepathology in the Mohs surgery laboratory utilizing iChat AV videoconferencing software.

BACKGROUND: Dynamic telepathology is the real-time transmission of histologic images from one pathologist to another by means of telecommunications technology. OBJECTIVE: The objective was to determine whether dynamic telepathology can be accomplished accurately and inexpensively by use of readily available off-the-shelf consumer products and software. METHODS: We attached a standard, consumer-grade, digital video camera to a microscope in the Mohs surgery laboratory and then transmitted via the Internet real-time histologic video images and audio to a consultant dermatopathologist by means of iChat AV videoconferencing software (Apple Computer Inc., Cupertino, CA). In the first part of the study, 20 unknown formalin-fixed, paraffin-embedded slides from tumors typically seen in a Mohs practice were evaluated by the consultant dermatopathologist. In the second part of the study, the Mohs surgeon consulted the dermatopathologist on 20 Mohs frozen section slides in which the surgeon had a particular question (e.g., "Is this part of a pilosebaceous unit or is this basal cell carcinoma?"). RESULTS: The video images were adequate for pathologic interpretation. There was agreement between conventional light microscopy and dynamic telepathology diagnosis in 19 of 20 tumors. There was complete agreement for all 20 Mohs frozen section consultations. CONCLUSION: Dynamic telepathology can be accomplished accurately and inexpensively by use of readily available consumer products and software.

Cost-Benefit Analysis↗

An experimental inter-expert telepathology network using static imaging.

AIMS: To set up a network for remote consultation using static imaging telepathology via Internet connection between pathologists in different European countries, and to collect some numerical and subjective impressions on the usefulness of this form of telepathology. METHODS: A static image remote consultation network between 11 pathologists in nine European countries was set up; all pathologists were equipped with the same telepathology system. The pathologists formed three subject oriented subgroups concerned with prostate, melanoma, and soft tissue sarcoma pathology. Each pathologist sent and received a small number of cases, and data on each case were collected and analysed. The whole experiment was controlled through a World Wide Web site. RESULTS: A total of 56 case consultations on 34 different cases were exchanged. The average case document contained seven images, and contained 1.97 Mbytes of data. For cases in which data were recorded, average case preparation and remote consultation time was 55 minutes and 9.2 minutes, respectively. Transmission times averaged 3.9 minutes. In subjective impressions, reservations were expressed in several cases regarding the confidence that could be given to the diagnosis from the images presented. CONCLUSIONS: Remote consultation by telepathology via the Internet is now technically feasible and reasonably user friendly, but is only suitable as a method of disease diagnosis in some cases.

Diagnostic Imaging↗

Legal aspects of telepathology.

In some legal surroundings telepathology is considered a breach of registrational barriers. The recommendation of the G 8 states in Europe for required legislation in telemedicine suggests to recognise that the localization of the remote health care professional defines the site not only of licensure but also of liability. This approach must be considered helpful, since it can solve many problems brought about by the doubtful results of private international law and conventions like the European Union (EU) and Lugano Convention. Under today's conditions in private international law it must be considered essential to agree upon a choice of law and stipulate a court of jurisdiction when doing telepathology. However, the opposing aims of insuring the patients claims and avoiding jurisdictions that exceed the local expectations of the medical professional must be reconciled. Data protection and data security are other crucial topics that require attention. Generally speaking, the principles of minimum data exchange, anonymity, pseudonymity and cryptography must be established as a basis for all telepathology procedures. Only when personal data is needed, its use can be legitimated. Written consent of the patient is advised. To guarantee a cross-border security level the regulations of the EU-Data Protection Directive need to be transformed into national law. In practise, cross-border dataflow shall only take place where the security level can be maintained even within the other country. Finally, reimbursement questions must be answered to establish a sound economical basis for telepathology. The spatial distance between the participants may yield the question, whether the service has been rendered to an extent necessary and sufficient for reimbursement. If reimbursement takes place on a cross-border or cross-regional level, severe disturbances of the health systems can occur. Regulation schemes or treaties need therefore to be developed to avoid such disturbances and encompass mutual standards of care as well as methods to balance reimbursement.

Europe↗

The telepathology and teleradiology network in Croatia.

Telepathology as a demanding branch of telemedicine poses a real challenge to experts. The introduction of telepathology in underprivileged countries with poor infrastructure and low health-care budget is a difficult task. On the other hand these countries would mostly benefit by introducing telemedicine/telepathology. In our experience it is possible to build an efficient telepathology/teleradiology network using analogue telephone links and still image transmission, and a store and forward mode of operation. This experience is based on the application of telepathology in Croatia for seven years leading to a national teleradiology network. In this paper the ideas, development and software solutions in the process of establishing a national telepathology and teleradiology network are highlighted.

Croatia↗

The economics of telepathology--a case study.

There are several obstacles that slow down the diffusion of telepathology. One is related to uncertainty about the economic consequences of its adoption, possibly more so than in other fields of telemedicine. We have evaluated the economics of telepathology when used to provide a frozen-section service to a mountain hospital, in comparison with three current alternatives. In the specific situations studied, no one model was always less expensive than the others. In particular, owing to the very low cost of the ambulance service provided by the Red Cross, the ambulance model was least expensive when dealing with up to 73 frozen sections a year, while at higher case-loads telepathology was cheaper. If ambulance transfer is neglected, telepathology appears to be the most convenient approach to the remote frozen-section service. Although the consultant pathologist costs more than telemedicine, during free time he/she could perform other (routine) work, thus reducing the real cost of frozen sections.

Frozen Sections↗

Teleconsultation in diagnostic pathology: experience from Iran and Germany with the use of two European telepathology servers.

Eighty pathology cases were sent independently to each of two telepathology servers. Cases were submitted from the Department of Pathology at the University of Kerman in Iran (40 cases) and from the Institute of Pathology in Berlin, Germany (40 cases). The telepathology servers were located in Berlin (the UICC server) and Basel in Switzerland (the iPATH server). A scoring system was developed to quantify the differences between the diagnoses of the referring pathologist and the remote expert. Preparation of the cases, as well as the submission of images, took considerably longer from Kerman than from Berlin; this was independent of the server system. The Kerman delay was mainly associated with a slower transmission rate and longer image preparation. The diagnostic gap between referrers' and experts' diagnoses was greater with the iPATH system, but not significantly so. The experts' response time was considerably shorter for the iPATH system. The results showed that telepathology is feasible for requesting pathologists working in a developing country or in an industrialized country. The key factor in the quality of the service is the work of the experts: they should be selected according to their diagnostic expertise, and their commitment to the provision of telepathology services is critical.

Germany↗

Virtual microscopy and public-key cryptography for Internet telepathology.

The Internet is a potentially inexpensive, widely available medium for telepathology, but there are concerns about its reliability and security. Using a digital camera, 41 photomicrographs of transbronchial biopsies, at x 100 optical magnification, were captured and digitized at 2700 x 3400 pixel, 24 bit/pixel resolution. The image files were saved in JPEG format at medium compression, attached to text files with patient information, encrypted for security in the S/MIME format using a digital signature and digital envelope, and transmitted by email. Received email files were decrypted automatically and the images viewed with standard software. Telepathology diagnoses were compared with original interpretations. The images averaged 810 kByte in size. The encryption and decryption did not cause significant delays in overall transmission time and, together with transmission, did not produce noticeable image degradation. The received image files could be viewed in a manner that simulated light microscopy. There was agreement between telepathology and original diagnoses in 92% of the cases. All the discrepancies were due to inadequate area selection because the pathological features of interest were present in histological levels other than those photographed. The use of high-resolution digital photomicrography, the Internet and public-key cryptography offers an effective and relatively inexpensive method of telepathology consultation. The method is best suited for the diagnosis of small biopsy specimens that require the transmission of only a few digital images that represent the majority of the biopsy materials.

Bronchi↗

European field tests with HISTKOM telepathology equipment.

HISTKOM telemicroscopy equipment for telepathology is designed for the most challenging application in telepathology: intraoperational frozen section diagnosis. Adapted to this application, it is also excellently suited for all other telepathology modes requesting less sophisticated equipment. The technical concept and user interface are oriented to routine daily pathology. HISTKOM underwent heavy field-tests at several locations. The field-tests designs and the results of five of these are reported in this paper. Telepathology will exploit its advantages in networks hosting participants requesting and offering services. The solution of the interoperability problem caused by different equipment from different suppliers within such a network will be a major task, the solution for which is in progress. The new generation of HISTKOM equipment and software is designed in a modularized concept, allowing the integration of various hardware components from different manufacturers; thus special configurations can be realized easily. HISTKOM is offered as complete turnkey system, but can also be installed in yet existing configurations of the customer if they meet specifications.

Evaluation Studies as Topic↗

[Telepathology at presence and in the future].

Telepathology is the performance of pathology at distance using available telecommunication links such as optic fiber, communication satellite, and integrated services digitized network (ISDN). The main applications of telepathology are to provide frozen section service, consultation between pathologists at a distance, and conducting conferences using displays. These activities are required due to the shortage and disproportional distribution of pathologists. Telepathology for frozen section service is fairly effective in providing indications for surgical procedures by discriminating malignant tumor from benign tumor, confirming metastasis to distant organs or lymph nodes, and decisions regarding the surgical margin. However, there are several public insurance problems in the spread and practice of telepathology. To solve these problems, not only from a medical approach but also from the development of mechanical engineering, economic and legal issues must be considered.

Diagnosis, Differential↗

Telepathology network: conceptual groundwork and evaluation.

Telepathology uses telecommunication technology to transmit microscopic images for diagnostic or teaching purposes. Basic requirements for a telepathology system are described. Usage scenarios for a telepathology network are presented including applications in intraoperative frozen section diagnosis, scientific collaboration and computer based training. Results of an evaluation of 4 currently available telepathology systems are presented.

Computer Communication Networks↗