PubMed Health⌕ Search

Biomedical subjects

J L Littlefield

Publications and source records attributed to J L Littlefield.

9 recordsLinked to original sources

Elevational distribution of mosquitoes in a mountainous area of southeastern Wyoming.

During the summer of 1984, mosquito sampling with CDC miniature light traps and standard mosquito dippers was used to investigate the elevational distribution of different species of mosquitoes. Of 27 species found in significant numbers in the study area in southeastern Wyoming, 8 were found primarily in the lower elevations (2,134 and 2,591 m). Nine additional species were found in both the middle and lower elevations (2,134-3,048 m), whereas 8 occurred only in the middle areas (2,592-3,048 m). A single species (Aedes punctor) was found in both the middle and upper elevations (2,439-3,292 m), and yet another species (Aedes impiger) was found primarily in the upper (alpine) area, from 3,049, to 3,292 m. There is some evidence to indicate that restriction in elevational distribution is a result of habitat specificity.

Aedes↗

Testicular circulatory isolation in man: comparison of radionuclide angiography with Doppler evaluation.

Testicular circulatory isolation (TCI) holds promise as a method to avoid drug-induced infertility in male patients about to receive cancer chemotherapy. Complete exclusion of blood flow to the testicle is essential to the success of this technique. We have compared the hand-held Doppler probe and radionuclide angiography (technetium-99m pertechnetate) as monitors of testicular blood flow in 10 patients subjected to unilateral TCI. When Doppler evaluation indicated that testicular circulation had been interrupted, the radionuclide angiogram uniformly confirmed and quantified this conclusion. These results validate the hand-held Doppler as an appropriate tool for assessing testicular blood flow in patients undergoing TCI.

Aged↗

Work force problems in nuclear medicine and possible solutions.

Nuclear medicine practice and work force demographics reflect the historically diverse evolution of this specialty. The most pressing problem for nuclear medicine is a projected shortage of fully trained physicians due to practitioner retirement that is unmatched by residency program output. During the past decade the number of 2-year nuclear medicine residency programs (average of 90) and the total number of residents (average of 191 in both years) have remained remarkably stable. In contrast, the number of 1-year nuclear radiology residency programs, available positions, and residents have declined significantly. A similar decline is seen in radiologists obtaining full nuclear medicine training and American Board of Nuclear Medicine (ABNM) board certification. This void has been filled by nonradiologist trainees who only seek certification by ABNM. Perhaps such shifts in resident profile are an early indicator that the United States is evolving toward practice models in which nuclear medicine is provided by fully trained, full-time physicians, similar to the European work force model. The recent Society of Nuclear Medicine survey of 10,446 physicians who practice nuclear medicine shows a current practice pattern in the United States that is distinctly different from that in Europe. The vast majority of those surveyed practice part time. Only 7% of all physicians who practice nuclear medicine do so full time, (ie more than 90% of the time), but they account for as much full-time employee (FTE) work load as 70% of all part-time physicians. Although the number of radiologists entering nuclear medicine is declining, 51% of total FTE work load is still done by radiologists with only American Board of Radiology certification. Physicians certified by ABNM represent 42% of all FTE work load. Cardiologists certified by American Board of Internal Medicine-Cardiovascular Specialization account for approximately 4% of nuclear medicine (15% of total cardiovascular nuclear medicine) FTE work load. Work force shortage of nuclear medicine technologists remains a chronic problem in spite of extensive study: however, recent predictions suggest some improvement in the future. Solutions to work force problems facing nuclear medicine will require ongoing data surveys, aggressive recruitment of trainees, expansion of training positions, and socioeconomic initiatives that promote desirable future practice models.

Adult↗

Acute cerebral infarction in monkeys: an experimental study using MR imaging.

Magnetic resonance (MR) imaging was performed in five monkeys with experimentally induced acute cerebral infarction to define the MR imaging features and correlate these with computed tomographic (CT) findings, laboratory analysis, and histopathologic studies. Acute infarct (2-4 hours after embolization) was generally visible on MR images but not on CT scans. CT at 24 and 48 hours did show the infarcts. In all cases the infarct was more clearly depicted with MR imaging and was visualized as an area of high signal intensity on T2-weighted images. Spectrometric nuclear MR measurements of the postmortem cerebral tissue confirmed prolongation of both T1 and T2 values similar to that calculated from MR images. At postmortem laboratory testing, the area of infarction detected with MR imaging had decreased specific gravity and increased water content, reflecting edema.

Animals↗

Tc-99m hydroxymethylene diphosphonate and Tc-99m methylene diphosphonate: biological and clinical comparison: concise communication.

The biologic and imaging characteristics of Tc-99m HMDP and Tc-99m MDP were compared in ten patients. Tc-99m HMDP blood levels were marginally lower at 4 hr. There were no significant differences in 4-hr urinary clearance, normal bone-to-background ratio, or ratio of lesion to normal bone. Relative image quality comparison showed a slight preference for Tc-99m HMDP. Biologically Tc-99m HMDP compares favorably with Tc-99m MDP. Under the conditions of this study, Tc-99m HMDP image quality is at least comparable to that of Tc-99m MDP.

Aged↗