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L W Bassett

Publications and source records attributed to L W Bassett.

At least 19 recordsLinked to original sources

US-guided core biopsy of the breast with a coaxial system.

From July 1993 through June 1994, the authors performed 42 ultrasound (US)-guided core biopsies with use of a coaxial technique in which a 14- or 15-gauge core biopsy needle was passed through a 12-gauge introducer needle. This technique proved to be effective in all 42 biopsies. Use of the coaxial technique decreased the procedure time necessary for US-guided core biopsy and may be less traumatic than the standard core biopsy technique.

Adult

Communication of mammography results to women by radiologists: attitudes of referring health care providers.

PURPOSE: To understand the attitudes of referring physicians about the communication of mammography results directly to women by radiologists. MATERIALS AND METHODS: Questionnaires were mailed to 87 health care providers (85 physicians and two nurse practitioners) who regularly refer women to the authors' mammographic facility. Responses were answered by assigning a score of 1-5 (strongly agree to strongly disagree). RESULTS: Seventy-one (82%) referring providers responded to the survey. For normal results, 85% agreed that radiologists should report directly to women; for abnormal results, 58% agreed. For a radiologist to send a written report directly to women, 75% agreed for normal results and 73% for abnormal results. For follow-up reminders, 67% agreed the radiologist should do it, 25% agreed both the radiologist and referring physician should be both responsible, and 8% agreed the referring physician should do it. CONCLUSION: Referring physicians were receptive to the direct communication of mammography results to women by radiologists. Use of this type of survey is recommended for radiologists planning to change their communication protocols.

Attitude of Health Personnel

Mammography of the male breast.

Mammography of the male breast accounts for less than 1% of mammographic examinations done in breast imaging centers [1]. The purpose of this pictorial essay is to familiarize readers with diseases of the male breast and their mammographic manifestations that were observed during a 40-month period at the VA Medical Center, West Los Angeles. The most common presenting signs and symptoms that lead to a request for a mammograph in these men included an enlarging breast, a palpable lump, and breast tenderness.

Adult

A proposal for a national mammography database: content, purpose, and value.

A national mammography database is a centralized, computerized method of data collection consisting of two possible parts: a national mammography audit and a system for monitoring and tracking patients. A national mammography audit refers to collecting and analyzing medical audit data of individual mammography practices at a national level and is a critical step in improving the interpretive component of mammography. The monitoring and tracking component refers to a centralized system that provides women and physicians with a recruitment and follow-up mechanism to optimize participation in mammography services. Both parts of a national mammography database represent important components in the improvement of mammography quality. However, unique scientific, legal, and fiscal concerns are important to consider before establishing a national mammography database.

Female

Clinical image evaluation.

The radiologist interpreting mammograms is responsible for an ongoing evaluation of the quality of the initial images produced by the facility. The Mammography Quality Standards act requires an external review of clinical images at least every 3 years from each facility accredited. Clinical image evaluation includes an assessment of position and compression, labeling, image quality, and artifacts. For each of these assessment categories, specific criteria have been identified for distinguishing properly performed from deficient clinical images.

Artifacts

Silicone implant rupture diagnosis using computed tomography: a case report and experience with 22 surgically removed implants.

Silicone elastomer shell rupture is a complication of silicone implants. To date, the rate of implant rupture has not been well documented. Magnetic resonance imaging and sonography are noninvasive breast implant imaging modalities that have been shown to be useful in evaluating the integrity of implants. We present a case of rupture detection using a follow-up computed tomographic (CT) scan of a breast cancer patient, which prompted us to use CT scans to evaluate explants of patients undergoing implant removal surgery. The purpose of the investigation was to evaluate the effectiveness of CT scan in detecting rupture. CT scan was performed on 22 explants with intact capsules, for which 17 ruptures were confirmed: 16 true-positive ruptures, 5 true-negative ruptures, O false-positive ruptures, and 1 false-negative rupture were identified. CT scan was shown to be highly sensitive and specific in rupture detection, comparable to magnetic resonance imaging. Although CT scans are consistently reliable, patients are exposed to ionizing radiation; therefore, it is not recommended for patients with augmentation mammoplasty. This study characterizes the appearance of implant rupture on CT scan, which may be useful in evaluating breast cancer patients reconstructed with silicone implants.

Breast Implants

Effect of poor control of film processors on mammographic image quality.

With the increasingly stringent standards of image quality in mammography, film processor quality control is especially important. Current methods are not sufficient for ensuring good processing. The authors used a sensitometer and densitometer system to evaluate the performance of 22 processors at 16 mammographic facilities. Standard sensitometric values of two films were established, and processor performance was assessed for variations from these standards. Developer chemistry of each processor was analyzed and correlated with its sensitometric values. Ten processors were retested, and nine were found to be out of calibration. The developer components of hydroquinone, sulfites, bromide, and alkalinity varied the most, and low concentrations of hydroquinone were associated with lower average gradients at two facilities. Use of the sensitometer and densitometer system helps identify out-of-calibration processors, but further study is needed to correlate sensitometric values with developer component values. The authors believe that present quality control would be improved if sensitometric or other tests could be used to identify developer components that are out of calibration.

Humans

Enlarging fibroadenoma in a postmenopausal woman: case report.

The authors describe mammographic and pathologic evidence of the growth of a fibroadenoma in an 82-year-old obese woman, 44 years after menopause, who had never been treated with hormone therapy. The patient's obesity is hypothesized as the causal factor for increased estrogen levels leading to growth of the fibroadenoma.

Adenofibroma

Silicone breast implants in vivo: MR imaging.

This study was designed to evaluate pulse sequences and patient positioning for MR imaging of silicone breast implants in patients. One hundred forty-three patients (281 silicone implants) underwent imaging over a 21-month period. The combination of a T2-weighted fast spin echo technique (SE), T2-weighted fast SE with water suppression, and T1-weighted SE with fat suppression is recommended to reliably differentiate silicone from other breast tissues and to identify intracapsular and extracapsular ruptures or leaks. Seventy of the 143 patients underwent removal of their silicone implants. The sensitivity for detection of silicone implant rupture was 76%, with a specificity of 97%. Positioning the patient prone improved image quality.

Adult

Strategies for implementation and quality assurance for mammographic screening.

Compliance with screening mammography guidelines is affected by complex factors, including cost, accessibility, education, and attitudes of referring physicians. High-volume mammography facilities have lower fees and higher quality. Quality assurance is the focus of the voluntary American College of Radiology Mammography Accreditation Program, and over half of all mammography units are accredited. Nonetheless, pressure for mandatory quality standards is increasing. Mobile mammography reduces costs and increases access, but it presents challenges in financing and quality assurance. These screening issues, especially quality assurance, are not taught adequately in radiology residency training programs. Yet public awareness of the benefits of early detection has resulted in more lawsuits for failure to diagnose and delay in diagnosis. Preventive measures reduce medicolegal risks. On a personal level, the psychologic trauma of screening mammography is greater than was previously suspected. However, associated anxiety and stress do not seem to affect compliance with screening guidelines adversely.

Female

Mammographic analysis of calcifications.

Because mammographically detected calcifications are frequently the only sign of breast cancer, the breast radiography equipment, screen-film imaging package, and film processing should be optimized to detect such calcifications. For this purpose, dedicated units with molybdenum targets, microfocal spot magnification capability, reciprocating grids, and high output x-ray tubes are required. With the greater use of state-of-the-art mammography, intraductal carcinoma, or DCIS, manifested only by calcifications is being detected more frequently than ever. DCIS can be of the comedo, cribriform, or micropapillary types. Comedocarcinoma, characterized by linear and branching (casting) calcifications, is the most aggressive type, and it has the highest rate of recurrence after breast-conserving surgery. Cribriform and micropapillary calcifications are characteristically punctate and vary in size and shape. In addition to histologic type, the recurrence of DCIS is related to its extent at detection and whether adequate tissue was removed at the time of breast-conserving surgery. Biopsies for suspicious calcifications should be followed immediately by specimen radiography to verify their removal. If breast-conserving surgery is elected for DCIS, the resected segment of tissue should be examined with pathologic techniques designed to determine whether the margins are clear of tumor. For DCIS and invasive cancers with extensive intraductal component, microfocus magnification mammography over the surgical site is recommended prior to radiotherapy to identify any residual tumor calcifications. Although state-of-the-art mammography is very sensitive in the detection of calcifications, it is low in specificity, thus resulting in a large number of false-positive mammograms and a relatively low true-positive biopsy rate. While some benign calcifications cannot be distinguished from those of malignancy, the number of biopsies for benign conditions can be decreased by careful analysis of the mammograms in a search for features indicating benignity.

Breast Diseases

Mammographically guided fine-needle aspiration biopsy of nonpalpable breast lesions. Can it replace open biopsy?

The authors report the accuracy of mammographically guided fine-needle aspiration (FNA) for the diagnosis of nonpalpable breast lesions in a series of 71 patients. Each mammographically guided FNA was immediately followed by hookwire localization and open biopsy. Seven malignancies were identified cytologically, but three cancers were not detected in aspirates judged to be sufficient for diagnosis. In addition, 19 aspirates were reported to be insufficient, and 4 of these were obtained from lesions histologically proven to be adenocarcinoma. Although no false-positive diagnoses were encountered, the technique demonstrated a sensitivity of 78% and a diagnostic accuracy of 94% for adequate specimens. In this study, mammographically guided FNA was insufficiently sensitive to replace open biopsy for the diagnosis of nonpalpable breast lesions.

Biopsy

Anatomy of the hip: correlation of coronal and sagittal cadaver cryomicrosections with magnetic resonance images.

Magnetic resonance imaging (MRI) is noninvasive and provides images with higher soft tissue contrast than possible with any other imaging modality. Unlike CT which depicts anatomy in the axial plane, MRI is capable of producing images in thin cross sections acquired directly in any plane, usually axial, coronal or sagittal planes. The use of diagnostic MR images is facilitated by an understanding of the detailed anatomy that is depicted. The purpose of this study was to identify anatomical structures in coronal and sagittal cryomicrosections of the hip region. Thin cryosections of the hips of fresh-frozen cadavers were obtained by a method developed by one of the authors (WR). These sections were matched with thin-section, high resolution MR images of a normal volunteer. The complex anatomy of the hip and its surrounding muscles, tendons and ligaments was exquisitely depicted on both the cadaver microcryosections and the matched MRT images.

Cadaver

Increased radiation dose at mammography due to prolonged exposure, delayed processing, and increased film darkening.

Four single-emulsion films introduced over the past 2 years--Du Pont Microvision, Fuji MiMa, Konica CM, and Eastman Kodak OM--were compared with Eastman Kodak OM SO-177 (Min-RE) film to evaluate their varying effects on mean glandular dose of reciprocity law failure due to prolonged exposure, delayed processing, and increased film darkening as a result of increased radiation exposure to improve penetration of glandular tissue. Exposures over 1.3 seconds led to increased radiation doses of 20%-30%. Delays in processing of 6 hours decreased processing speed by 11%-32% for all films except Du Pont Microvision. Optical density increases of 0.40 required 20%-30% more skin exposure for all five films. Optimal viewing densities were also evaluated and found to be different for each of the five films. Mammographers need to be aware of these differences in mammographic films to achieve maximum contrast at mammography.

Breast

Usefulness of mammography and sonography in women less than 35 years of age.

Indications, clinical history, mammographic findings, and clinical outcome were reviewed in 1,016 women younger than 35 years who underwent mammography during an 8-year period. The indications for mammography were a palpable mass in 454 (44.7%), findings at routine screening in 237 (23.3%), lumpiness in 29 (14.9%), unilateral nipple discharge in seven (3.5%), localized breast tenderness in six (5.1%), adenopathy in three (1.9%), diffuse tenderness in two (2.9%), bilateral nipple discharge in two (1.5%), and miscellaneous in four (2.2%). In 405 women (39.9%), at least two-thirds of the breast tissue was radiodense; however, in 299 (29.4%) women the breast was predominantly fatty, allowing for excellent mammograms. Six women had carcinomas: Mammographic findings prompted biopsy in one patient, indicated a benign-appearing mass (found to be solid at sonography or aspiration) in three patients with a palpable mass (contributing to delay in biopsy in two), and were negative in two. Sonography was performed in 389 women and was useful in preventing unnecessary biopsy of cysts but was not useful in differentiating benign from malignant solid masses. Younger women with persistent localized breast symptoms should undergo a tailored mammographic examination, but negative findings or findings of a benign lesion should not preclude biopsy of a palpable solid mass.

Adult

Present status of residency training in mammography.

We conducted a telephone interview of all 207 accredited diagnostic radiology residency training programs listed in the American Medical Association's Directory of Graduate Medical Education Programs. Resident training in mammography was offered in 206 programs, and 35% of the programs had initiated this training within the past 3 years. Residents had an assigned block of time to do mammography in 84% of the programs. Of the 206 programs, 40% had rotations devoted exclusively to mammography, with 82% of the exclusive rotations lasting from 4 to 8 weeks. Residents were performing localization procedures in 91% of the programs and dictating cases in 81%. A distinction was made between screening and diagnostic examinations by 35% of the training institutions, at least in terms of the fee for the examination. Radiologists who devoted at least half of their practice to mammography taught in 52% of the programs. The American College of Radiology has granted accreditation in mammography to 29% of the programs. Although almost all accredited residency training programs offer training in mammography, there are some deficiencies in this training. More residents need to gain the experience of dictating mammography reports and need to learn about the distinctions between screening and diagnostic mammography. Despite the anticipated deluge of screening examinations in the next decade, there were only 17 fellowships that included at least 6 months of mammography identified in 15 (7%) of the institutions; only 11 of these were full-time 1-year breast imaging fellowships.

Curriculum

Breast sonography.

Sonographic equipment for breast imaging has continued to improve, and the role of breast sonography has evolved to that of an indispensable adjunct to mammography. Breast sonography is not useful for screening for breast cancer in any age group. Its main use is for the differentiation of cystic vs solid palpable and mammographically visible masses. If strict sonographic criteria are used for a simple cyst, the diagnostic accuracy approaches 100%. Sonographic diagnosis of a simple cyst precludes the need for further workup, including aspiration, biopsy, or followup. This article emphasizes the technical aspects of breast sonography, especially those factors that alter the diagnostic information on the images. These factors can be especially problematic in differentiating cysts and solid masses, the most common diagnostic use of breast sonography. Selection of equipment depends largely on the requirements of a specific practice. Optimally, the sonographic equipment is located close to where mammography is performed, and the sonographic and mammographic findings are interpreted together.

Breast Neoplasms