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Experience with a dynamic inexpensive video-conferencing system for frozen section telepathology.

AIM: To evaluate the feasibility of an inexpensive, generally applicable video-conferencing system for frozen section telepathology (TP). METHODS: A commercially widely available PC-based dynamic video-conferencing system (Picture-Tel LIVE, model PCS 100) has been evaluated, using two, four and six ISDN channels (128-384 kilobits per second (kbs)) bandwidths. 129 frozen sections have been analyzed which were classified by TP as benign, uncertain (the remark probably benign, or probably malignant was allowed), malignant, or not acceptable image quality. The TP results were compared with the original frozen section diagnosis and final paraffin diagnosis. RESULTS: Only 384 kbs (3 ISDN-2 lines) resulted in acceptable speed and quality of microscope images, and synchronous image/speech transfer. In one of the frozen section cases (0.7%), TP image quality was classified as not acceptable, leaving 128 frozen sections for the analysis. Five of these cases were uncertain by TP, and also deferred by frozen section procedure (FS). One more benign and three malignant FS cases were classified as uncertain by TP. Three additional cases were uncertain by FS, but benign according to TP (in agreement with the final diagnosis). In one case, FS diagnosis was uncertain but TP was malignant (in agreement with the final diagnosis). Thus, test efficiency (i.e., cases with complete agreement) was 120/128 (93.8%, Kappa = 0.88) between FS and TP. Sensitivity was 93.5%, specificity 98.6%, positive and negative predictive values were 97.7% and 96.0%. Between TP and final diagnosis agreement was even higher. More importantly, there was not a single discrepancy as to benign-malignant. Moreover, there was a clear learning effect: 5 of the 8 FS/TP discrepancies occurred in the first 42 cases (5/42 = 11.9%), the remaining 3 in the following 86 cases (3/86 = 3.5%). DISCUSSION: The results are encouraging. However, TP evaluation is time-consuming (5-15 min for one case instead of 2-4 min although speed went up with more experience) and is more tiring. The system has the following technical drawbacks: no possibility to point at objects or areas of interest in the life image at the other end, resolution (rarely) may become suboptimal (blocky), storage of images evaluated (which is essential for legal reasons) is not easy and no direct control of a remote motorized microscope. Yet, all users were positive about the system both for telepathology and personal contact by video-conferencing. CONCLUSION: With a relatively simple videoconferencing system, accurate dynamic telepathology frozen section diagnosis can be obtained without false positive or negative results, although a limited number of uncertain cases will have to be accepted.

Costs and Cost Analysis↗

Informational aspects of telepathology in routine surgical pathology.

Application of computer and telecommunication technology calls serious challenges in routine diagnostic pathology. Complete data integration, fast access patients' data to usage of diagnosis thesaurus labeled with standardized codes and free text supplements, complex inquiry of the data contents, data exchange via teleconsultation and multilevel data protection are required functions of an integrated information system. Increasing requirement for teleconsultation transferring a large amount of multimedia data among different pathology information systems raises new questions in telepathology. Creation of complex telematic systems in pathology requires efficient methods of software engineering and implementation. Information technology of object-oriented modeling, usage of client server architecture and relational database management systems enables more compatible systems in field of telepathology. The aim of this paper is to present a practical example how to unify text based database, image archive and teleconsultation in a frame of an integrated telematic system and to discuss the main conceptual questions of information technology of telepathology.

Humans↗

The current status of medicolegal issues surrounding telepathology and telecytology in Japan.

The medicolegal issues surrounding telepathology and telecytology in Japan have been partly resolved since the government declared that telediagnosis in these fields using a microscope is essentially a medical practice between doctors. Thus it does not contravene article 20 of the law pertaining to medical practice in Japan, which states that there must be an actual face-to-face encounter between the doctor performing any diagnostic or treatment episode and the patient. It is, however, only beginning to be recognized that the medicolegal issues surrounding telepathology and telecytology depend on factors such as the type of system used (e.g. active versus passive). In an active diagnostic system, the telepathologist or telecytopathologist can control a robotic microscope at the remote site, while in a passive diagnostic system the telepathologist or telecytopathologist makes the diagnosis based on the microscope images that have been selected, and transmitted, by someone in the remote hospital. In the former case the interpreting telepathologist or telecytopathologist must assume most of the responsibility for the diagnostic process, while in the latter more responsibility must be assumed by those at the remote site. The duties and responsibilities of all participants in the telediagnostic process, whatever the system employed, must be determined. We have established working guidelines for telepathological and telecytological diagnoses to help achieve this and hence ensure safe and effective clinical practice.

Cell Biology↗

Telepathology.

The development of a Queensland-wide videoconferencing network provided an opportunity to develop telepathology. In 1999, weekly videoconferences began with remote laboratories and clinical staff in four peripheral hospitals and the Royal Brisbane Hospital and in 2000 biweekly videoconference pathology grand rounds started across Queensland with up to six sites, from Cairns to the Gold Coast, joining in or presenting. The average number of sites connected was 3.0 in 1998, 3.5 in 1999, 4.4 in 2000 and 4.5 in 2001. Problems included the complexity of the system, timing and need for bookings, coordination of presenters and presentations, and the time needed to organize sessions, set up linkages, advertise sessions and attend the telepathology conference. Successful meetings have been associated with well prepared cases, time for discussion, attendance by all sites, timeliness of cases and responses, and the presence of experts to respond to questions, as well as effective linkages and trouble-free hardware. Future needs include better infrastructure and trained staff to coordinate the linkages and presentations. Telepathology has an important part to play in the provision of cost-effective medical care in Queensland.

Computer Terminals↗

Telepathology using immunofluorescence/immunoperoxidase microscopy.

We evaluated low-cost, store-and-forward telepathology interpretation of digital images of skin sections stained immunohistochemically, using immunofluorescence (IF) and immunoperoxidase (IP). The sample comprised 17 patients with skin diseases characterized by cutaneous deposition of immunoglobulins, fibrinogen or complement components. Up to 11 digital IF or IP images (median 3) were transferred via email to centres in Graz, Austria, and Kurume, Japan. Both remote centres had expertise in reading immunohistochemical specimens. Although image files were relatively small (approximately 100 kByte), the IF images were of high quality and they were well suited to static telepathology. There was agreement on the diagnoses made by the local and both remote centres by physicians experienced in IF/IP microscopy in 14 of 17 cases (82%). These results suggest that telepathology evaluation of immunohistochemical specimens may be a useful procedure for the discussion of unusual skin disorders, training purposes and second-opinion consultations on difficult cases from centres of excellence in immunohistochemical diagnosis.

Austria↗

Field test to evaluate telepathology in telemedicine.

Telepathology is currently performed only on prototype systems. The application of telepathology consultations differs from the conventional procedure because of the technical and cost restrictions. This paper outlines technical concepts and the principal hardware and software modules necessary for telemicroscopy equipment. A field test to gather information concerning the user needs and to evaluate parameters of telepathology consultation sessions is reported.

Computer Communication Networks↗

Pathologists' attitudes to implementing telepathology.

If pathologists will benefit so much from using telepathology, why is it taking so long to be introduced? This question has been discussed between experts, but the potential users are rarely asked for their opinions. A questionnaire was sent to the 256 members of the Austrian Society of Pathology; this addressed general aspects of telemedicine, telepathology in frozen-section services and expert consultation, videoconferencing technologies, teleteaching and teletraining. The response rate was 46%. In general, the pathologists thought that telemedicine could become valuable in their daily routine. However, pathologists were most afraid of sampling errors in remote diagnosis and would not readily accept an alternative to the conventional method of looking at a sample. This is only possible using realtime, remotely controlled microscopes. Telepathology systems providing only still images would not be acceptable to most respondents. There was interest in the use of videoconferencing for clinicopathological conferences. Teleteaching and teletraining were seen as welcome additional techniques, but were nevertheless judged unable to replace classical methods of teaching and training.

Attitude of Health Personnel↗

Telepathology applications of the Internet multimedia electronic mail.

Telepathology is based on the sharing of medical images coming from the microscope, and comprises different applications: intra-operative telediagnosis, second opinion teleconsultation, reference case archives, remote data and image processing, quality assessment. Since the Internet is available worldwide, it can be of interest to define which of these tasks can be performed by means of some telepathology method based on it. This paper focuses particularly on the use of Internet multimedia electronic mail for exchanging multimedia cases. To test the validity of the proposed approach for transmission of multimedia cases, the first step is to evaluate its diagnostic accuracy. Trials involving the transmission of 299 cases have been carried out between two departments of Pathology in Italy (at the University of Udine and at the City Hospital of Trento, respectively) in order to evaluate the diagnostic accuracy as well as the time needed for acquisition and transmission. First results show that good diagnostic agreement can be reached, but the time needed for transmission, generally low, is not sufficiently affordable to be adopted in those cases where time is important. In particular, telepathology through multimedia e-mail can be adopted for second opinion consultation, remote image processing, quality assessment and continuing education possibly by means of software that integrates acquisition and delivery of cases with HIS functionalities.

Evaluation Studies as Topic↗

Effect of image compression on telepathology. A randomized clinical trial.

CONTEXT: For practitioners deploying store-and-forward telepathology systems, optimization methods such as image compression need to be studied. OBJECTIVE: To determine if Joint Photographic Expert Group (JPG or JPEG) compression, a glossy image compression algorithm, negatively affects the accuracy of diagnosis in telepathology. DESIGN: Double-blind, randomized, controlled trial. SETTING: University-based pathology departments. PARTICIPANTS: Resident and staff pathologists at the University of Illinois, Chicago, and University of Cincinnati, Cincinnati, Ohio. INTERVENTION: Compression of raw images using the JPEG algorithm. MAIN OUTCOME MEASURES: Image acceptability, accuracy of diagnosis, confidence level of pathologist, image quality. RESULTS: There was no statistically significant difference in the diagnostic accuracy between noncompressed (bit map) and compressed (JPG) images. There were also no differences in the acceptability, confidence level, and perception of image quality. Additionally, rater experience did not significantly correlate with degree of accuracy. CONCLUSIONS: For providers practicing telepathology, JPG image compression does not negatively affect the accuracy and confidence level of diagnosis. The acceptability and quality of images were also not affected.

Diagnosis, Computer-Assisted↗

World wide microscope: new concept of internet telepathology microscope and implementation of the prototype.

We defined a new concept of microscope system for telepathology, named World Wide Microscope (WWM), and implemented its prototype. WWM is constructed by the following three units; (1) microscope unit, (2) control unit, and (3) internet unit. The microscope unit is a conventional light microscope equipped with a motor drive X-Y stage and an objective lens revolver, auto focus and auto iris functions, and a CCD camera. The internet unit is a World Wide Web homepage in which a Java applet and a communication server are installed. The applet is implemented several methods that realize to make a PC client on the Internet as a telepathology terminal. The control unit relays request commands generated from the applet to the microscope unit, and captures the microscopic images. We think WWM will probably become the all round telepathology tool of the next generation.

Evaluation Studies as Topic↗

[Feasibilities of cytological diagnosis in the static telepathology mode].

Results of cytological diagnosis in the static telepathology mode are analyzed. Three expert cytologists made the diagnosis on the basis of images of cytological preparations obtained from 94 patients with tumors of soft tissues and bones. A total of 113 diagnoses were correct: benign or malignant type of the tumor and its histological type were identified. In general, a total of 152 (88.9%) diagnoses were correct as regards their significance for treatment strategy. Errors classified as groups 3 and 4 were the most significant (erroneous assessment of tumor type--benign or malignant--in 6.4% cases). Analysis of discrepancies between cytological and pathoanatomical diagnoses and data of routine optic microscopy of similar cytological preparations of the same material (bone and soft tissue tumors) showed the same value: 6.8% of cytological and pathoanatomical diagnoses were at disagreement (groups 3 and 4 of errors). Therefore, telepathology can be resorted to for consultations and discussion of obscure cases. It is particularly important for a morphologist to discuss complex cases by means of telepathology at a specialized institution, distant from him or her.

Cytodiagnosis↗

Real-time dynamic telepathology through the Internet: evaluation of a new and economic technology at Taipei Veterans General Hospital.

BACKGROUND: Computer-aided, digitalized telepathology was introduced about 10 years ago and is gaining acceptance as a mode of providing pathology to remote site. The usefulness of telepathology for remote diagnosis of histology, cytology and frozen section has been evaluated in USA, Europe and Japan. In Taiwan, the use of telepathology for pathological diagnosis is still rare. In order to evaluate the potential use of this technique, we undertook the study using commercialized and low-cost microscopy, personal computer and software on routine biopsy material. METHODS: Sixty prostatic sextant transrectal needle biopsies, including 30 cases of adenocarcinoma and 30 cases of benign lesions, were retrieved retrospectively. The real-time dynamic images were transmitted to the remote site via internet and reviewed by a senior uropathologist who was unaware of the diagnosis. The diagnoses made at the remote site were correlated to the final diagnoses of the cases. RESULTS: All malignant specimens (30/30) were correctly diagnosed by this method. Only one benign case (1/31) of nonspecific granulomatous prostatitis was misdiagnosed as poorly differentiated carcinoma. CONCLUSIONS: Our results show that this method is a good way for teleconsultation. Further studies on other types of specimen worth encouragement for both intra- and inter-institutional consultation.

Biopsy, Needle↗

Telepathology in India.

Telepathology is the most recent addition to the pathologist's diagnostic tools. It is the acquisition of macroscopic and microscopic images for electronic transmission for diagnosis, consultation and/or education. With the addition of the personal computer at the pathologist's desktop, the stage has been set for one of the greatest advantages the Internet has to offer. Telepathology in India is in infancy, and we at PathoIndia (www.Pathoindia.com) have started a series of publication images from interesting cases in the form of weekly quiz. After cases are published, hundreds of pathologists from around the world are invited by e-mail to send in their diagnosis and comments. The responses to this quiz suggest that telepathology is catching on in the pathology community. Another intention of this series is to identify and select qualified international and Indian pathologists who would be willing to help colleagues from India requesting second opinions online.

Humans↗

Experience with telepathology at a tertiary cancer centre and a rural cancer hospital.

BACKGROUND: Telepathology allows quick and timely access to an expert opinion, no matter where the patient is located. We analysed the experience with the use of telepathology between a tertiary cancer centre and a rural cancer hospital. METHODS: Ninety-three cases were analysed in which static telepathology was used to obtain a consultation between Tata Memorial Centre and Nargis Dutt Memorial Cancer Hospital at Barshi, a rural area. RESULTS: Successful teleconsultation was achieved in all cases. A diagnosis was offered in 92 cases (98.9%) and was deferred in 1 case (1.1%). Complete concordance, clinically unimportant minor discrepancy and hedged diagnosis were obtained in 83 cases (90.2%). Major discrepancies were encountered in 9 cases (9.7%). The number of images per case ranged from 3 to 27 (average: 7 images). Images were of diagnosable quality in 89.2% of cases. Most of the cases (77.4%) were reported within 3 days; 32.2% were reported within 8 hours (a single working day) and 45.1% within 1-3 days. CONCLUSION: Telemedicine can be effectively used to bridge the gap between medically underprivileged, geographically distant rural areas and advanced centres using the static store and forward methodology.

Adolescent↗

From telepathology to virtual pathology institution: the new world of digital pathology.

Telepathology has left its childhood. Its technical development is mature, and its use for primary (frozen section) and secondary (expert consultation) diagnosis has been expanded to a great amount. This is in contrast to a virtual pathology laboratory, which is still under technical constraints. Similar to telepathology, which can also be used for e-learning and e-training in pathology, as exemplarily is demonstrated on Digital Lung Pathology (Klaus.Kayser@charite.de) at least two kinds of virtual pathology laboratories will be implemented in the near future: a) those with distributed pathologists and distributed (> or = 1) laboratories associated to individual biopsy stations/surgical theatres, and b) distributed pathologists (usually situated in one institution) and a centralized laboratory, which digitizes complete histological slides. Both scenarios are under intensive technical investigations. The features of virtual pathology comprise a virtual pathology institution (mode a) that accepts a complete case with the patient's history, clinical findings, and (pre-selected) images for first diagnosis. The diagnostic responsibility is that of a conventional institution. The Internet serves as platform for information transfer, and an open server such as the iPATH (http://telepath.patho.unibas.ch) for coordination and performance of the diagnostic procedure. The size and number of transferred images have to be limited, and usual different magnifications have to be used. The sender needs to possess experiences in image sampling techniques, which present with the most significant information. A group of pathologists is "on duty", or selects one member for a predefined duty period. The diagnostic statement of the pathologist(s) on duty is retransmitted to the sender with full responsibility. The first experiences of a virtual pathology institution group working with the iPATH server working with a small hospital of the Salomon islands are promising. A centralized virtual pathology institution (mode b) depends upon the digitalization of a complete slide, and the transfer of large sized images to different pathologists working in one institution. The technical performance of complete slide digitalization is still under development. Virtual pathology can be combined with e-learning and e-training, that will serve for a powerful daily-work-integrated pathology system. At present, e-learning systems are "stand-alone" solutions distributed on CD or via Internet. A characteristic example is the Digital Lung Pathology CD, which includes about 60 different rare and common lung diseases with some features of electronic communication. These features include access to scientific library systems (PubMed), distant measurement servers (EuroQuant), automated immunohisto-chemistry measurements, or electronic journals (Elec J Pathol Histol, www.pathology-online.org). It combines e-learning and e-training with some acoustic support. A new and complete database based upon this CD will combine e-learning and e-teaching with the actual workflow in a virtual pathology institution (mode a). The technological problems are solved and do not depend upon technical constraints such as slide scanning systems. At present, telepathology serves as promoter for a complete new landscape in diagnostic pathology, the so-called virtual pathology institution. Industrial and scientific efforts will probably allow an implementation of this technique within the next two years with exciting diagnostic and scientific perspectives.

Computer Communication Networks↗

Aspects of telepathology in routinary diagnostic work with specific emphasis on ISDN.

Histopathological diagnosis is based upon visual information and additional clinical and environmental factors. Information can be transmitted over long distances in real time without difficulties. Thus, telecommunication is a technique which may be used in pathology. Several approaches have been performed to introduce telepathology into the daily work of pathologists. Histopathological images of intraoperative sections were transmitted between the Department of Pathology, Thoraxklinik, and the Institute of Pathology, Klinikum Baumgärtner Höhe, Vienna. The transfer time of one image lasted 1-2 minutes depending upon the time of the day; i.e. during telephone "rush" hours the transmission time increased from 1.1 min to more than 2.4 min. As an average, 2 different sections of the image at usually 2 different magnifications were transmitted. Parallel discussion of the images, and acoustic assistance in diagnostic classification or advice lasted for an additional average 3 min. A substantial assistance in the intraoperative classification of the diseases was achieved in 35-40% of cases. No breakdown of telephone lines or communication was observed, while this was the case for the telepathology trials performed by ISDN between the Department of Pathology, Thoraxklinik and the Department of Pathology, Robert Bosch Krankenhaus, Stuttgart. These trials included expert consultation of difficult paraffin embedded cases of various lung diseases. The transmission time of 1 image lasted an average 10 sec was the transfer of non average 4-6 images of the same case was required for substantial assistance in diagnostic classification. The value of the diagnostic assistance was confirmed by submission of the corresponding slides to the partner after termination of the telepathology conference.(ABSTRACT TRUNCATED AT 250 WORDS)

France↗

How is telepathology being used to improve patient care?

Telepathology, as a subspecialty of telemedicine, involves the use of telecommunications technologies to transmit images to distant sites for the purpose of communicating diagnostic information or for teaching. Recent advances in technology have greatly increased the feasibility of performing diagnosis by telepathology, but there are still significant obstacles to implementation. In this review, I will discuss the technologies and organizations involved in telepathology, with examples of current practice in the US and abroad.

Quality of Health Care↗

[Frozen section diagnosis using telepathology].

DEFINITION: Since 1992 we transfer digitalized frozen section images by means of videomicroscope and a personal computer through the public telephone network (ISDN) to the Institut of Pathology at the University Hospital in Basel. The aim of this study is to determine whether the quality of frozen section diagnosis obtained by telepathology is comparable to the conventional one. METHOD: The frozen section diagnoses by telepathology from Oct. 1992 to May 1996 (n = 94) are compared to the paraffin sections performed in each case after the primary examination. The result is then compared to the well documented data of conventional frozen section diagnosis in the literature. RESULTS: From Oct. 1992 to May 1996 we performed 94 frozen sections. In 84 cases the diagnosis was correct compared to the paraffin section (89%). The sensitivity to detect a malignant tumor was 92%, the specifity 100%. Four examinations were not conclusive and one examination had to be canceled because of technical problems. DISCUSSION: In the literature, 92% of malignancy is diagnosed by conventional frozen section [1]. Telepathology gives the same result.

Frozen Sections↗