Publications
Department of Medicine faculty members published more than 3,600 peer-reviewed articles in 2024.
2003
PURPOSE
To determine which clinical and radiologic findings are independently associated with a pathologic diagnosis of usual interstitial pneumonia (UIP).
METHODS
We recently reported, using a prospective, multicenter study of patients suspected of having idiopathic interstitial pneumonia (IIP), that a confident diagnosis of UIP made by experienced radiologists was correct in 95% of cases. In the current article, we further analyzed data from this study. Ninety-one patients were entered into the study. Clinical, physiologic, chest radiographic, and CT features were prospectively recorded, and analyzed using univariate and multivariate logistic regression analysis to compare the patients with a histologic diagnosis of UIP with those who received other pathologic diagnoses.
RESULTS
Fifty-four of 91 patients (59%) received a pathologic diagnosis of UIP. The following features recorded at the referring clinical centers were associated with a pathologic diagnosis of UIP on multivariate analysis: lower-lobe honeycombing on high-resolution CT (HRCT) [odds ratio, 11.45], radiographic findings consistent with UIP (odds ratio, 5.73), elevated ratio of FEV(1) to FVC (odds ratio, 4.8), and absence of smoking history (odds ratio, 0.19). On multivariate analysis of specific HRCT features recorded by four experienced chest radiologists, lower-lung honeycombing (odds ratio, 5.36) and upper-lung irregular lines (odds ratio, 6.28) were the only independent predictors of UIP. Using only these two factors, a diagnosis of UIP could be established with a sensitivity of 74%, a specificity of 81%, and a positive predictive value of 85%.
CONCLUSION
In patients presenting with a clinical syndrome suggestive of IIP, CT findings of lower-lung honeycombing and upper-lung irregular lines are most closely associated with a pathologic diagnosis of UIP.
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Bronchiolitis is increasingly recognized as an important clinical syndrome that encompasses the broad spectrum of histopathologic processes which show some degree of inflammation, narrowing, or obliteration of the small conducting airways. It has an extremely variable clinical course, etiology, and histologic appearance. Understanding of this entity has been limited because until recently only case reports described this lesion in several diverse clinical settings. In addition, there has been considerable confusion as a result of the different terminologies applied to the many syndromes. This article reviews the clinical, radiographic, and histopathologic findings of the bronchiolar syndromes that are secondary to inhalation of chemicals or organic dust, that are secondary to infection, that are drug-induced, and that have no known etiology (idiopathic).
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We have developed a rapid and simplified approach for the strain characterization of Staphylococcus aureus on the basis of multilocus sequence typing (MLST) in which sequence variations in the MLST housekeeping gene loci are detected by restriction fragment pattern analysis rather than sequencing; we refer to this approach as multilocus restriction fragment typing (MLRFT). Briefly, MLRFT for S. aureus involves the PCR amplification of each of the seven MLST housekeeping gene loci by using the same primer pairs used in MLST. The amplicons are then digested directly with one or two restriction enzymes and the restriction fragments are resolved by agarose gel electrophoresis. Projection from published MLST data shows that MLRFT captures about 95% of the genetic diversity detected by MLST. The MLRFT approach was validated with a set of 59 methicillin-susceptible and 44 methicillin-resistant S. aureus isolates from community-acquired and nosocomial sources which had previously been characterized by pulsed-field gel electrophoresis (PFGE). MLRFT resolved the 103 isolates into 15 restriction fragment types, giving a discrimination index of 89.0%. Clonal groupings established by MLRFT correlated well with those established by PFGE. In short, MLRFT provides a convenient alternative to MLST and PFGE because it requires minimal laboratory facilities and is relatively simple and inexpensive to perform.
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2003
2003
BACKGROUND
Skeletal muscle remodeling is a critical component of an organism's response to environmental changes. Exercise causes structural changes in muscle and can induce phase shifts in circadian rhythms, fluctuations in physiology and behavior with a period of around 24 hours that are maintained by a core clock mechanism. Both exercise-induced remodeling and circadian rhythms rely on the transcriptional regulation of key genes.
RESULTS
We used DNA microarrays to determine the effects of resistance exercise (RE) on gene regulation in biopsy samples of human quadriceps muscle obtained 6 and 18 hours after an acute bout of isotonic exercise with one leg. We also profiled diurnal gene regulation at the same time points (2000 and 0800 hours) in the non-exercised leg. Comparison of our results with published circadian gene profiles in mice identified 44 putative genes that were regulated in a circadian fashion. We then used quantitative PCR to validate the circadian expression of selected gene orthologs in mouse skeletal muscle.
CONCLUSIONS
The coordinated regulation of the circadian clock genes Cry1, Per2, and Bmal1 6 hours after RE and diurnal genes 18 hours after RE in the exercised leg suggest that RE may directly modulate circadian rhythms in human skeletal muscle.
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2003
CONTEXT
The value of exercise testing in women has been questioned.
OBJECTIVE
To determine the prognostic value of exercise testing in a population-based cohort of asymptomatic women followed up for 20 years.
DESIGN AND SETTING
Near-maximal Bruce-protocol treadmill test data from the Lipid Research Clinics Prevalence Study (1972-1976) with follow-up through 1995.
PARTICIPANTS
A total of 2994 asymptomatic North American women, aged 30 to 80 years, without known cardiovascular disease.
MAIN OUTCOME MEASURES
Cardiovascular and all-cause mortality.
RESULTS
There were 427 (14%) deaths during 20 years of follow-up, of which 147 were due to cardiovascular causes. Low exercise capacity, low heart rate recovery (HRR), and not achieving target heart rate were independently associated with increased all-cause and cardiovascular mortality. There was no increased cardiovascular death risk for exercise-induced ST-segment depression (age-adjusted hazard ratio, 1.02; 95% confidence interval [CI], 0.57-1.80; P =.96). The age-adjusted hazard ratio for cardiovascular death for every metabolic equivalent (MET) decrement in exercise capacity was 1.20 (95% CI, 1.18-1.30; P<.001); for every 10 beats per minute decrement in HRR, the hazard ratio was 1.36 (95% CI, 1.19-1.55; P<.001). After adjusting for multiple other risk factors, women who were below the median for both exercise capacity and HRR had a 3.5-fold increased risk of cardiovascular death (95% CI, 1.57-7.86; P =.002) compared with those above the median for both variables. Among women with low risk Framingham scores, those with below median levels of both exercise capacity and HRR had significantly increased risk compared with women who had above median levels of these 2 exercise variables, 44.5 and 3.5 cardiovascular deaths per 10 000 person-years, respectively (hazard ratio for cardiovascular death, 12.93; 95% CI, 5.62-29.73; P<.001).
CONCLUSION
The prognostic value of exercise testing in asymptomatic women derives not from electrocardiographic ischemia but from fitness-related variables.
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