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At least 19 recordsLinked to original sources

Impact of the Armed Forces Institute of Pathology Radiologic Pathology Course on radiology resident performance on the ACR In-Training and ABR written Examinations. American College of Radiology. American Board of Radiology.

RATIONALE AND OBJECTIVES: The purpose of this study was to assess resident scores on the American College of Radiology (ACR) In-Training Examination and on the written American Board of Radiology (ABR) Examination relative to attendance at and timing of the Armed Forces Institute of Pathology (AFIP) Radiologic Pathology Course. MATERIALS AND METHODS: A survey of 200 radiology residency program directors requested the type of residency program, whether the program sent residents to the AFIP course, dates of AFIP attendance for individual residents, percentile scores of residents on the ACR examination from 1995 through 1998, and ABR examination scores for 1997. Scores were analyzed before and after AFIP attendance and also temporally for examinations during or after AFIP attendance. Improvement in percentile scores for residents undergoing the ACR examination while attending the AFIP were compared with scores of matched residents from their programs who had not attended. RESULTS: Thirty-six (18%) program directors responded, providing data on 619 residents who underwent the ACR examination, ABR examination, or both. No significant improvement was found between pre- and post-AFIP ACR Examination scores for residents at university or military programs. There were statistically significantly improved scores for residents at community programs (mean percentile improvement, 8.1 points; P = .0064). Residents who underwent the ACR examination during the AFIP course improved their scores by 10.7 percentile points compared with matched residents who had not attended the AFIP course (P = .041). CONCLUSION: Residents undergoing the ACR examination while attending the AFIP improve their percentile scores more than residents who have not attended the AFIP.

Curriculum↗

Radiology 2012: radiology and radiologists a decade hence--a strategic analysis for radiology from the second annual American College of Radiology FORUM.

The American College of Radiology (ACR) FORUM brings together a multidisciplinary group of experts in a subject area that the ACR believes to be of long-term importance to the specialty of radiology. The goals of the FORUM are to develop scenarios about the way the future might develop with respect to the chosen topic and to advise both the ACR and the specialty on steps that should be taken to maximize the value and influence of radiology in the future. In May 2002, the FORUM brought together radiologists, health services researchers, specialists in medical technologies, representatives of the imaging industry, and payers to discuss the key drivers of the way medical imaging will develop over the next 10 years.

Forecasting↗

Informatics in Radiology (infoRAD): album of radiologic signs: a useful tool for training in radiologic semiology.

The importance of radiologic semiology can be seen from the large number of articles, books, and Web pages dealing with radiologic signs. Recognition of these signs forms an important part of the training process for radiologists. Computer-assisted instruction complements traditional techniques for teaching radiology and provides an appropriate method of collecting, organizing, and presenting radiologic signs. A computer application that includes more than 350 radiologic signs has been created with Microsoft PowerPoint (version 2002 for Windows). The user can navigate freely to see the signs from a menu that provides access according to anatomic region or from an interactive dictionary that includes 779 terms. From the presentation of each sign, the user can access one or more representative images, information about the examination wherein the sign appears, an explanation of the meaning of the sign and the corresponding diagnosis, additional comparative images (pathologic or normal), and relevant references. This album of radiologic signs is a useful tool for training in radiologic semiology and also allows a quick consultation based on the name of the sign. Although designed for interns and residents, it will also be useful in pregraduate teaching of radiology, as a reference, and in continuing medical education.

Databases, Factual↗

Attitudes of and influences on residents in English Canadian radiology programs regarding interventional radiology: results of a national survey by the Canadian Interventional Radiology Association (CIRA).

PURPOSE: There has been a North American trend toward reduced application to the subspecialty of Interventional Radiology (IR). Out of fear of a looming manpower shortage, this survey was conducted to better understand awareness and attitudes toward IR by radiology residents-in-training. MATERIALS AND METHODS: An anonymous online survey was emailed to the Diagnostic Radiology Residency Program Director/Department Chairperson of each of the 13 English medical schools in Canada, to be forwarded to each respective Radiology Residency Program's radiology residents. The survey was open for a period of 1 month. The survey consisted of 29 questions, which could be answered online using a web-based program. Responses to questions were tabulated and comments recorded. RESULTS: A total of 84 survey responses were received of a possible 333 (25%), including responses from each of the 13 English Programs. Responses regarding demographics, training, careers aspirations and motivations, and influences were collected. Fifty-one percent of respondents reported being either "moderately" or "very" interested in the field of IR; however, only 13% reported intention to perform an IR fellowship. A number of issues were identified as dissuading current radiology residents from pursuing IR, including income, work hours and hours of on-call, and turf issues. CONCLUSION: A number of issues were identified as factors which prevented residents with an interest in IR from applying to IR fellowships. These must be addressed to increase IR recruitment rates of radiology residents.

Adult↗

2001 Joseph E. and Nancy O. Whitley Award. Teaching noninterpretive skills to radiology residents: a collaborative effort between the American College of Radiology and the Association of Program Directors in Radiology.

RATIONALE AND OBJECTIVES: The authors' purpose was to develop, implement, and evaluate a series of videotapes for teaching noninterpretive skills to radiology residents. MATERIALS AND METHODS: An Association of Program Directors in Radiology/American College of Radiology working group developed a series of seven videotapes to teach residents job search and contracting skills; business aspects of radiology; American College of Radiology standards, accreditation programs, and appropriateness criteria; critical thinking skills; ethics; service orientation and interpersonal skills; and medical organizational politics. Residents viewed the videotapes, evaluated the learning experience, and completed both pre- and posttests. RESULTS: From 85 to 264 residents completed each of six pre- and posttests. Mean total pretest scores ranged from 55.0% to 76.9% and improved significantly (P < .05) to 73.8% to 94.9% on posttests. Each videotape was evaluated by 90-336 residents using a Likert-type scale, with a rating of 5 representing the most positive response. The proportion of residents who gave each tape an overall rating of either 4 or 5 varied from 75.9% to 95.9%. CONCLUSION: Significant resident learning occurred as a result of viewing the videotapes. Program director support of the learning experience was strong, and use of the videotapes as a teaching modality received strong support by residents. Local moderators and question-and-answer sessions would optimize the learning experience.

Awards and Prizes↗

Addressing the coming radiology crisis-the Society for Computer Applications in Radiology transforming the radiological interpretation process (TRIP) initiative.

The Society for Computer Applications in Radiology (SCAR) Transforming the Radiological Interpretation Process (TRIP) Initiative aims to spearhead research, education, and discovery of innovative solutions to address the problem of information and image data overload. The initiative will foster interdisciplinary research on technological, environmental and human factors to better manage and exploit the massive amounts of data. TRIP will focus on the following basic objectives: improving the efficiency of interpretation of large data sets, improving the timeliness and effectiveness of communication, and decreasing medical errors. The ultimate goal of the initiative is to improve the quality and safety of patient care. Interdisciplinary research into several broad areas will be necessary to make progress in managing the ever-increasing volume of data. The six concepts involved are human perception, image processing and computer-aided detection (CAD), visualization, navigation and usability, databases and integration, and evaluation and validation of methods and performance. The result of this transformation will affect several key processes in radiology, including image interpretation; communication of imaging results; workflow and efficiency within the health care enterprise; diagnostic accuracy and a reduction in medical errors; and, ultimately, the overall quality of care.

Humans↗

[Pulmonary alveolar microlithiasis: clinical and radiological course of three cases according to conventional radiology and HRCT. A hypothesis for radiological classification].

Pulmonary alveolar microlithiasis (PAM) is a rare chronic disease of unknown etiology and pathogenesis. The disease is characterized by the diffuse presence in the alveoli of minute calcific deposits known as microliths. In most cases patients have mild clinical symptoms, contrasting with the severe radiographic appearance: this is a typical feature that should raise the suspicion of PAM. The first to describe the clinical and radiographic aspects of the disease, as well as the first case series, was the radiologist Sosman. In recent years, high resolution computed tomography (HRCT) has made it possible to define the extent and severity of the disease more precisely, and has demonstrated calcifications in anatomical sites that could not be shown by conventional radiology. The present paper describes the radiological evolution of the disease, and suggests a classification based on the radiographic and HRCT follow-up of the three clinical cases: two young patients followed up for 24 and 11 years and one elderly man who is still alive and is the PAM case with the longest survival since diagnosis, over 50 years, to be reported in the international literature.

Adult↗

Protecting people against radiation exposure in the event of a radiological attack. A report of The International Commission on Radiological Protection.

This report responds to a widely perceived need for professional advice on radiological protection measures to be undertaken in the event of a radiological attack. The report, which is mainly concerned with possible attacks involving 'radioactive dispersion devices', re-affirms the applicability of existing ICRP recommendations to such situations, should they ever occur. Many aspects of the emergency scenarios expected to arise in the event of a radiological attack may be similar to those that experience has shown can arise from radiological accidents, but there may also be important differences. For instance, a radiological attack would probably be targeted at a public area, possibly in an urban environment, where the presence of radiation is not anticipated and the dispersion conditions commonly assumed for a nuclear or radiological emergency, such as at a nuclear installation, may not be applicable. First responders to a radiological attack and other rescuers need to be adequately trained and to have the proper equipment for identifying radiation and radioactive contamination, and specialists in radiological protection must be available to provide advice. It may be prudent to assume that radiological, chemical, and/or biological agents are involved in an attack until it is proven otherwise. This calls for an 'all-hazard' approach to the response. In the aftermath of an attack, the main aim of radiological protection must be to prevent the occurrence of acute health effects attributable to radiation exposure (termed 'deterministic' effects) and to restrict the likelihood of late health effects (termed 'stochastic' effects) such as cancers and some hereditable diseases. A supplementary aim is to minimise environmental contamination from radioactive residues and the subsequent general disruption of daily life. The report notes that action taken to avert exposures is a much more effective protective measure than protective measure the provision of medical treatment after exposure has occurred. Responders involved in recovery, remediation and eventual restoration should be subject to the usual international standards for occupational radiological protection, which are based on ICRP recommendations, including the relevant requirements for occupational dose limitation established in such standards. These restrictions may be relaxed for informed volunteers undertaking urgent rescue operations, and they are not applicable for voluntary life-saving actions. However, specific protection measures are recommended for female workers who may be pregnant or nursing an infant. The immediate countermeasures to protect the public in the rescue phase are primarily caring for people with traumatic injuries and controlling access. Subsequent actions include respiratory protection, personal decontamination, sheltering, iodine prophylaxis (if radio-iodines are involved), and temporary evacuation. In the recovery phase, the relocation and resettlement of people may be needed in extreme cases. This phase may require remedial action, including cleanup, management of the resulting radioactive waste, management of any human remains containing significant amounts of radioactive substances, and dealing with remaining radioactive residues. The guidance given in relation to public protection is based solely on radiological protection considerations and should be seen as a decision-aiding tool to prepare for the aftermath of a radiological attack. It is expected to serve as input to a final decision-making process that may include other societal concerns, consideration of lessons learned in the past (especially these involving the public perception of the risks posed by radioactive contamination) and the participation of interested parties. A radiological attack could also be the cause of radioactive contamination of water, food, and other widely consumed commodities. This possible outcome is considered unlikely to lead to significant internal contamination of a large number of people owing to the large amounts of radioactive material that would be required to cause high levels of contamination of water, food, and other commodities. Nonetheless, the report recommends radiological criteria for restricting the use of commodities under such circumstances. The report concludes by re-iterating that the response to radiological attacks should be planned beforehand following the customary processes for optimisation of radiological protection recommended by ICRP, and that optimised measures should be prepared in advance. Such plans should result in a systematic approach that can be modified if necessary to take into account the prevailing conditions and to invoke actions as warranted by the circumstances. Many potential scenarios clearly cannot induce immediate severe radiation injuries. Therefore, in order to prevent over-reaction, response measures prepared in advance should reflect the real expected gravity of the various possible scenarios.

Environmental Exposure↗

Self-citation: comparison between Radiología, European Radiology and Radiology for 1997-1998.

Self-citation, considered as the number of times a paper cites other papers in the same journal, is an important criteria of journal quality. Our objective is to evaluate the self-citation in the official journal of the Spanish Society of Radiology (Radiología), and to compare it with the European Radiology and Radiology journals. Papers published in Radiología, European Radiology, and Radiology during 1997 and 1998 were analyzed. The Self Citation Index, considered as the ratio between self-references and total number of references per article, for the journals Radiología (SCIR), European Radiology (SCIER), and Radiology (SCIRY), were obtained and expressed as percentages. Also, the number of references to Radiología in European Radiology and Radiology papers were calculated. Stratification of the index per thematic area and article type was also performed. Mean SCIR, SCIER, and SCIRY values were compared with the ANOVA and the Student-Newman-Keuls tests. The self-citation index was statistically higher in Radiology (23.2%; p<0.0001) than in Radiología (1.8%) and European Radiology (0.8%). There were no statistically significant differences between SCIR and SCIER indexes ( p=0.25). In the stratification per thematic areas and article type, self-citation in Radiology was statistically higher ( p<0.0001), with the only exception of "Radioprotection" area ( p=0.2), to SCIR and SCIER. Although there were no statistically significant differences, by thematic areas SCIR was always larger than SCIER, with the only exception of the "Genitourinary imaging" area, and by article type SCIR also went greater to SCIER, except in review articles. Radiología, The Spanish official radiological journal, although not included in Index Medicus and its database Medline, had a larger number of self-citing than European Radiology in the period 1997-1998.

Bibliometrics↗

Cost accounting of radiological examinations. Cost analysis of radiological examinations of intermediate referral hospitals and general practice.

The purpose of this study was to analyse the cost structure of radiological procedures in the intermediary referral hospitals and general practice and to develop a cost accounting system for radiological examinations that takes into consideration all relevant cost factors and is suitable for management of radiology departments and regional planning of radiological resources. The material comprised 174,560 basic radiological examinations performed in 1991 at 5 intermediate referral hospitals and 13 public health centres in the Pirkanmaa Hospital District in Finland. All radiological departments in the hospitals were managed by a specialist in radiology. The radiology departments at the public health care centres operated on a self-referral basis by general practitioners. The data were extracted from examination lists, inventories and balance sheets; parts of the data were estimated or calculated. The radiological examinations were compiled according to the type of examination and equipment used: conventional, contrast medium, ultrasound, mammography and roentgen examinations with mobile equipment. The majority of the examinations (87%) comprised conventional radiography. For cost analysis the cost items were grouped into 5 cost factors: personnel, equipment, material, real estate and administration costs. The depreciation time used was 10 years for roentgen equipment, 5 years for ultrasound equipment and 5 to 10 years for other capital goods. An annual interest rate of 10% was applied. Standard average values based on a sample at 2 hospitals were used for the examination-specific radiologist time, radiographer time and material costs. Four cost accounting versions with varying allocation of the major cost items were designed. Two-way analysis of variance of the effect of different allocation methods on the costs and cost structure of the examination groups was performed. On the basis of the cost analysis a cost accounting program containing both monetary and nonmonetary variables was developed. In it the radiologist, radiographer and examination-specific equipment costs were allocated to the examinations applying estimated cost equivalents. Some minor cost items were replaced by a general cost factor (GCF). The program is suitable for internal cost accounting of radiological departments as well as regional planning. If more accurate cost information is required, cost assignment employing the actual consumption of the resources and applying the principles of activity-based cost accounting is recommended. As an application of the cost accounting formula the average costs of the radiological examinations were calculated. In conventional radiography the average proportion of the cost factors in the total material was: personnel costs 43%, equipment costs 26%, material costs 7%, real estate costs 11%, administration and overheads 14%. The average total costs including radiologist costs in the hospitals were (FIM): conventional roentgen examinations 188, contrast medium examinations 695, ultrasound 296, mammography 315, roentgen examinations with mobile equipment 1578. The average total costs without radiologist costs in the public health centres were (FIM): conventional roentgen examinations 107, contrast medium examinations 988, ultrasound 203, mammography 557. The average currency rate of exchange in 1991 was USD 1 = FIM 4.046. The following formula is proposed for calculating the cost of a radiological examination (or a group of examinations) performed with a certain piece of equipment during a period of time (e.g. 1 year): a2/ sigma ax*ax+ b2/ sigma bx*bx+ d1/d5*dx+ e1 + [(c1+ c2) + d4 + (e2 - e3) + f5 + g1+ g2+ i]/n.

Accounting↗

Authentication and management of radiologic reports: value of a computer workstation integrated with a radiology information system.

An increasing number of radiology departments are using computers to facilitate management of radiologic information. Transcription, storage, and printing of radiologic reports are among the primary functions of a radiology information system. Consequently, manual signature of radiologic reports is being replaced by on-line electronic authentication. However, the utilities provided on most radiology information systems to review, edit, and otherwise manipulate radiologic reports are relatively crude compared with commercial word-processing and data-base management software available for personal computers. We have developed a personal computer software system that is integrated with our existing radiology information system; expedites the radiologist's task of reviewing, editing, and authenticating (i.e., signing) radiologic reports; provides a teaching file data base on the workstation into which radiologic reports and patients' demographics can be instantly transferred; and provides a similar data base to facilitate follow-up on those examinations deemed appropriate for quality-assurance procedures. These features improve the radiologist's efficiency and increase his or her willingness to more fully exploit the intended purposes of a radiology information system.

Humans↗