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Biomedical subjects

Christopher P Landrigan

Publications and source records attributed to Christopher P Landrigan.

At least 19 recordsLinked to original sources

Interns' compliance with accreditation council for graduate medical education work-hour limits.

CONTEXT: Sleep deprivation is associated with increased risk of serious medical errors and motor vehicle crashes among interns. The Accreditation Council for Graduate Medical Education (ACGME) introduced duty-hour standards in 2003 to reduce work hours. OBJECTIVE: To estimate compliance with the ACGME duty-hour standards among interns. DESIGN, SETTING, AND PARTICIPANTS: National prospective cohort study with monthly Web-based survey assessment of intern work and sleep hours using a validated instrument, conducted preimplementation (July 2002 through May 2003) and postimplementation (July 2003 through May 2004) of ACGME standards. Participants were 4015 of the approximately 37 253 interns in US residency programs in all specialties during this time; they completed 29 477 reports of their work and sleep hours. MAIN OUTCOME MEASURE: Overall and monthly rates of compliance with the ACGME standards. RESULTS: Postimplementation, 1068 (83.6%; 95% confidence interval [CI], 81.4%-85.5%) of 1278 of interns reported work hours in violation of the standards during 1 or more months. Working shifts greater than 30 consecutive hours was reported by 67.4% (95% CI, 64.8%-70.0%). Averaged over 4 weeks, 43.0% (95% CI, 40.3%-45.7%) reported working more than 80 hours weekly, and 43.7% (95% CI, 41.0%-46.5%) reported not having 1 day in 7 off work duties. Violations were reported during 3765 (44.0%; 95% CI, 43.0%-45.1%) of the 8553 intern-months assessed postimplementation (including vacation and ambulatory rotations), and during 2660 (61.5%; 95% CI, 60.0%-62.9%) of 4327 intern-months during which interns worked exclusively in inpatient settings. Postimplementation, 29.0% (95% CI, 28.7%-29.7%) of reported work weeks were more than 80 hours per week, 12.1% (95% CI, 11.8%-12.6%) were 90 or more hours per week, and 3.9% (95% CI, 3.7%-4.2%) were 100 or more hours per week. Comparing preimplementation to postimplementation responses, reported mean work duration decreased 5.8% from 70.7 (95% CI, 70.5-70.9) hours to 66.6 (95% CI, 66.3-66.9) hours per week (P<.001), and reported mean sleep duration increased 6.1% (22 minutes) from 5.91 (95% CI, 5.88-5.94) hours to 6.27 (95% CI, 6.23-6.31) hours per night (P<.001). However, reported mean sleep during extended shifts decreased 4.5%, from 2.69 (95% CI, 2.66-2.73) hours to 2.57 (95% CI, 2.52-2.62) hours (P<.001). CONCLUSION: In the first year following implementation of the ACGME duty-hour standards, interns commonly reported noncompliance with these requirements.

Adult↗

Recovery from medical errors: the critical care nursing safety net.

BACKGROUND: Safety initiatives have primarily focused on physicians despite the fact that nurses provide the majority of direct inpatient care. Patient surveillance and preventing errors from harming patients represent essential nursing responsibilities but have received relatively little study. METHODS: The study was conducted between July 2003 and July 2004 in a 10-bed academic coronary care unit. Direct observation of nursing care and solicited and institutional incident reports were used to find potential incidents. Two physician reviewers rated incidents as to the presence, preventability, and potential severity of harm of errors and associated factors. RESULTS: Overall data were collected for 147 days, including 150 hours of direct observation. One hundred forty-two recovered medical errors were found, including 61% (86/142) during direct observations. Most errors (69%; 98/142) were intercepted before reaching the patients. Errors that reached patients included 13% that were mitigated before resulting in harm and 18% that were ameliorated before more severe harm could occur. DISCUSSION: Protecting patients from the potentially dangerous consequences of medical errors is one of the many ways critical care nurses improve patient safety. Interventions designed to increase the ability of nurses to recover and promptly report errors have the potential to improve patient outcomes.

Academic Medical Centers↗

When policy meets physiology: the challenge of reducing resident work hours.

Considerable controversy exists regarding optimal work hours for physicians and surgeons in training. In a series of studies, we assessed the effect of extended work hours on resident sleep and health as well as patient safety. In a validated nationwide survey, we found that residents who had worked 24 hours or longer were 2.3 times more likely to have a motor vehicle crash following that shift than when they worked < 24 hours, and that the monthly risk of a crash increased by 16.2% after each extended duration shift. We also found in a randomized trial that interns working a traditional on-call schedule slept 5.8 hours less per week, had twice as many attentional failures on duty overnight, and made 36% more serious medical errors and nearly six times more serious diagnostic errors than when working on a schedule that limited continuous duty to 16 hours. While numerous opinions have been published opposing reductions in extended work hours due to concerns regarding continuity of patient care, reduced educational opportunities, and traditionally-defined professionalism, there are remarkably few objective data in support of continuing to schedule medical trainees to work shifts > 24 hours. An evidence-based approach is needed to minimize the well-documented risk that current work hour practices confer on resident health and patient safety while optimizing education and continuity of care.

Accidents, Traffic↗

Pediatric hospitalists: report of a leadership conference.

OBJECTIVES: To summarize a meeting of academic pediatric hospitalists and to describe the current state of the field. METHODS: The Ambulatory Pediatric Association sponsored a meeting for academic pediatric hospitalists in November 2003. The purpose of the meeting was to discuss and to define roles of academic pediatric hospitalists, including their roles as clinicians, educators, and researchers, and to discuss organizational issues and unique hospitalist issues within general academic pediatrics. Workshops were held in the areas of organization and administration, academic life, research, and education. A literature review was also conducted in the areas discussed. RESULTS: More than 130 physicians attended. Thirteen workshops were held, and all information was summarized in large-group sessions for all attendees. CONCLUSIONS: Pediatric hospital medicine is a rapidly growing field, with an estimated 800 to 1000 pediatric hospitalists currently practicing. Initial work has defined the clinical environment and has begun to stake out a unique knowledge and skill set. The Pediatric Hospitalists in Academic Settings conference demonstrated the audience for additional development and the resources to move forward.

Hospitalists↗

Pediatric hospitalists: a systematic review of the literature.

BACKGROUND: Systematic reviews have demonstrated consistently decreased length of stay and costs in internal medicine hospitalist systems. Systematic reviews of pediatric hospitalist systems have not been conducted. OBJECTIVE: Our aim was to determine the effects of pediatric hospitalist systems on length of stay, costs, quality of care, and provider satisfaction and experience. METHODS: We searched PubMed, Medline, Cochrane Library databases, and the Pediatric Academic Societies National Meeting research abstracts for all primary-data studies published or presented on pediatric hospitalist systems. Studies presenting primary data on efficiency, financial performance, clinical outcomes, or family, referring provider, and housestaff experience in hospitalist systems were included; review articles and case studies were excluded. To minimize publication bias, we contacted all primary authors to obtain information about unpublished studies. RESULTS: Of 47 publications reviewed, 20 were primary-data studies that met criteria for inclusion. Six of 7 studies that compared traditional and hospitalist systems of care demonstrated improvements in costs and/or length of stay in pediatric hospitalist systems. The average decrease in cost was 10%; average decrease in length of stay was 10%. Three of 3 economic analyses, however, demonstrate that efficiency gains do not generally translate into revenues for the hospitalist programs themselves; most hospitalist programs are currently losing money. Surveys of families, referring providers, and pediatric residents demonstrate neutral or improved experiences in hospitalist systems, although these data are less comprehensive. Data on quality of care are insufficient to draw conclusions. CONCLUSIONS: Emerging research suggests that pediatric hospitalist systems decrease hospital costs and length of stay without adversely affecting provider, parent, or housestaff experiences. The quality of care in pediatric hospitalist systems is unclear, because rigorous metrics to evaluate quality are lacking. Studies of the processes and outcomes of hospital care are needed.

Child↗

Variations in management of common inpatient pediatric illnesses: hospitalists and community pediatricians.

OBJECTIVE: The goal was to test the hypothesis that pediatric hospitalists use evidence-based therapies and tests more consistently in the care of inpatients and use therapies and tests of unproven benefit less often, compared with community pediatricians. METHODS: A national survey was administered to hospitalists and a random sample of community pediatricians. Hospitalists and community pediatricians reported their frequency of use of diagnostic tests and therapies, on 5-point Likert scales (ranging from never to almost always), for common inpatient pediatric illnesses. Responses were compared in univariate and multivariable logistic regression analyses controlling for gender, race, years out of residency, days spent attending per year, hospital practice type, and completion of fellowship/postgraduate training. RESULTS: Two hundred thirteen pediatric hospitalists and 352 community pediatricians responded. In multivariable regression analyses, hospitalists were significantly more likely to report often or almost always using the following evidence-based therapies for asthma: albuterol and ipratropium in the first 24 hours of hospitalization. After the first urinary tract infection, hospitalists were more likely to report obtaining the recommended renal ultrasound and voiding cystourethrogram. Hospitalists were significantly more likely than community pediatricians to report rarely or never using the following therapies of unproven benefit: levalbuterol, inhaled steroid therapy, and oral steroid therapy for bronchiolitis; stool culture and rotavirus testing for gastroenteritis; and ipratropium after 24 hours of hospitalization for asthma. CONCLUSION: Overall, in comparison with community pediatricians, hospitalists reported greater adherence to evidence-based therapies and tests in the care of hospitalized patients and less use of therapies and tests of unproven benefit.

Administration, Inhalation↗

Medication errors related to computerized order entry for children.

OBJECTIVE: The objective of this study was to determine the frequency and types of pediatric medication errors attributable to design features of a computerized order entry system. METHODS: A total of 352 randomly selected, inpatient, pediatric admissions were reviewed retrospectively for identification of medication errors, 3 to 12 months after implementation of computerized order entry. Errors were identified and classified by using an established, comprehensive, active surveillance method. Errors attributable to the computer system were classified according to type. RESULTS: Among 6916 medication orders in 1930 patient-days, there were 104 pediatric medication errors, of which 71 were serious (37 serious medication errors per 1000 patient-days). Of all pediatric medication errors detected, 19% (7 serious and 13 with little potential for harm) were computer related. The rate of computer-related pediatric errors was 10 errors per 1000 patient-days, and the rate of serious computer-related pediatric errors was 3.6 errors per 1000 patient-days. The following 4 types of computer-related errors were identified: duplicate medication orders (same medication ordered twice in different concentrations of syrup, to work around computer constraints; 2 errors), drop-down menu selection errors (wrong selection from a drop-down box; 9 errors), keypad entry error (5 typed instead of 50; 1 error), and order set errors (orders selected from a pediatric order set that were not appropriate for the patient; 8 errors). In addition, 4 preventable adverse drug events in drug ordering occurred that were not considered computer-related but were not prevented by the computerized physician order entry system. CONCLUSIONS: Serious pediatric computer-related errors are uncommon (3.6 errors per 1000 patient-days), but computer systems can introduce some new pediatric medication errors that are not typically seen in a paper ordering system.

Adolescent↗

The safety of inpatient pediatrics: preventing medical errors and injuries among hospitalized children.

This article explores the current state of knowledge about the safety of hospitalized patients in general and patients in pediatric settings in particular. It discusses approaches to evaluating patient safety and reviews the current literature on adverse events and errors in hospitals. The article also discusses strategies proven effective in reducing medical errors and some of the barriers to implementing these strategies that must be overcome.

Child↗

The Critical Care Safety Study: The incidence and nature of adverse events and serious medical errors in intensive care.

OBJECTIVE: Critically ill patients require high-intensity care and may be at especially high risk of iatrogenic injury because they are severely ill. We sought to study the incidence and nature of adverse events and serious errors in the critical care setting. DESIGN: We conducted a prospective 1-year observational study. Incidents were collected with use of a multifaceted approach including direct continuous observation. Two physicians independently assessed incident type, severity, and preventability as well as systems-related and individual performance failures. SETTING: Academic, tertiary-care urban hospital. PATIENTS: Medical intensive care unit and coronary care unit patients. INTERVENTIONS: None. MEASUREMENTS AND MAIN RESULTS: The primary outcomes of interest were the incidence and rates of adverse events and serious errors per 1000 patient-days. A total of 391 patients with 420 unit admissions were studied during 1490 patient-days. We found 120 adverse events in 79 patients (20.2%), including 66 (55%) nonpreventable and 54 (45%) preventable adverse events as well as 223 serious errors. The rates per 1000 patient-days for all adverse events, preventable adverse events, and serious errors were 80.5, 36.2, and 149.7, respectively. Among adverse events, 13% (16/120) were life-threatening or fatal; and among serious errors, 11% (24/223) were potentially life-threatening. Most serious medical errors occurred during the ordering or execution of treatments, especially medications (61%; 170/277). Performance level failures were most commonly slips and lapses (53%; 148/277), rather than rule-based or knowledge-based mistakes. CONCLUSIONS: Adverse events and serious errors involving critically ill patients were common and often potentially life-threatening. Although many types of errors were identified, failure to carry out intended treatment correctly was the leading category.

Aged↗

Preventable adverse events in infants hospitalized with bronchiolitis.

OBJECTIVE: To determine the incidence of preventable adverse events (AEs) and near misses (NMs) among infants hospitalized for bronchiolitis at a pediatric tertiary care hospital and the impact of these errors on hospital length of stay (LOS). METHODS: We studied 143 infants with bronchiolitis, ages 0 to 12 months, admitted from December 2002 to April 2003. Using prospective chart review and staff reports, we captured medical errors and AEs. Each event was classified as a (1) preventable AE, (2) nonpreventable AE, (3) intercepted NM, (4) nonintercepted NM, or (5) error with little or no potential for harm. RESULTS: Of 143 patients, 15 (10%) suffered an AE or NM. The incidence of preventable AEs was 10 per 100 admissions. We found a higher incidence of preventable AEs and NMs among critically ill patients (CIPs) compared with non-CIPs (68 vs 5 per 100 admissions, respectively), making the absolute risk of an AE or NM 14 times more likely in CIPs. Mean LOS was significantly longer for CIPs with at least 1 AE (9.1 +/- 8.8 days) than for CIPs without AEs (2.9 +/- 1.5 days). Mean LOS was not significantly different between non-CIPs who did (3.8 +/- 2.6 days) and did not (4.2 +/- 5.0 days) experience an AE. CONCLUSIONS: Preventable AEs occur frequently among patients admitted for bronchiolitis, especially those who are critically ill. CIPs who suffer AEs during their hospitalization have longer hospital LOSs. Future studies should investigate error-prevention strategies with a focus on those patients with severe disease.

Bronchiolitis↗

Effect of reducing interns' weekly work hours on sleep and attentional failures.

BACKGROUND: Knowledge of the physiological effects of extended (24 hours or more) work shifts in postgraduate medical training is limited. We aimed to quantify work hours, sleep, and attentional failures among first-year residents (postgraduate year 1) during a traditional rotation schedule that included extended work shifts and during an intervention schedule that limited scheduled work hours to 16 or fewer consecutive hours. METHODS: Twenty interns were studied during two three-week rotations in intensive care units, each during both the traditional and the intervention schedule. Subjects completed daily sleep logs that were validated with regular weekly episodes (72 to 96 hours) of continuous polysomnography (r=0.94) and work logs that were validated by means of direct observation by study staff (r=0.98). RESULTS: Seventeen of 20 interns worked more than 80 hours per week during the traditional schedule (mean, 84.9; range, 74.2 to 92.1). All interns worked less than 80 hours per week during the intervention schedule (mean, 65.4; range, 57.6 to 76.3). On average, interns worked 19.5 hours per week less (P<0.001), slept 5.8 hours per week more (P<0.001), slept more in the 24 hours preceding each working hour (P<0.001), and had less than half the rate of attentional failures while working during on-call nights (P=0.02) on the intervention schedule as compared with the traditional schedule. CONCLUSIONS: Eliminating interns' extended work shifts in an intensive care unit significantly increased sleep and decreased attentional failures during night work hours.

Adult↗

Effect of reducing interns' work hours on serious medical errors in intensive care units.

BACKGROUND: Although sleep deprivation has been shown to impair neurobehavioral performance, few studies have measured its effects on medical errors. METHODS: We conducted a prospective, randomized study comparing the rates of serious medical errors made by interns while they were working according to a traditional schedule with extended (24 hours or more) work shifts every other shift (an "every third night" call schedule) and while they were working according to an intervention schedule that eliminated extended work shifts and reduced the number of hours worked per week. Incidents were identified by means of a multidisciplinary, four-pronged approach that included direct, continuous observation. Two physicians who were unaware of the interns' schedule assignments independently rated each incident. RESULTS: During a total of 2203 patient-days involving 634 admissions, interns made 35.9 percent more serious medical errors during the traditional schedule than during the intervention schedule (136.0 vs. 100.1 per 1000 patient-days, P<0.001), including 56.6 percent more nonintercepted serious errors (P<0.001). The total rate of serious errors on the critical care units was 22.0 percent higher during the traditional schedule than during the intervention schedule (193.2 vs. 158.4 per 1000 patient-days, P<0.001). Interns made 20.8 percent more serious medication errors during the traditional schedule than during the intervention schedule (99.7 vs. 82.5 per 1000 patient-days, P=0.03). Interns also made 5.6 times as many serious diagnostic errors during the traditional schedule as during the intervention schedule (18.6 vs. 3.3 per 1000 patient-days, P<0.001). CONCLUSIONS: Interns made substantially more serious medical errors when they worked frequent shifts of 24 hours or more than when they worked shorter shifts. Eliminating extended work shifts and reducing the number of hours interns work per week can reduce serious medical errors in the intensive care unit.

Humans↗

Complications in infants hospitalized for bronchiolitis or respiratory syncytial virus pneumonia.

OBJECTIVE: To characterize complications among infants hospitalized for bronchiolitis or respiratory syncytial virus (RSV). STUDY DESIGN: Retrospective data from 684 infants with bronchiolitis or RSV pneumonia, < or =1 year old, admitted to 10 children's hospitals from April 1995 to September 1996. Outcomes included complication rates and effects on hospital and pediatric intensive care unit (PICU) length of stay (LOS) and hospital costs. RESULTS: Most infants (79%) had one or more complication, with serious complications in 24%. Even minor complications were associated with significantly longer PICU and hospital LOS and higher costs (P<.001). Respiratory complications were most frequent (60%), but infectious (41%), cardiovascular (9%), electrolyte imbalance (19%), and other complications (9%) were common. Complication rates were higher in former premature infants (87%), infants with congenital heart disease (93%), and infants with other congenital abnormalities (90%) relative to infants without risk factors (76%). Infants 33 to 35 weeks gestational age (GA) had the highest complication rates (93%), longer hospital LOS, and higher costs (P<.004) than other former premature infants. CONCLUSIONS: Complications were common in infants hospitalized for bronchiolitis or RSV pneumonia and were associated with longer LOS and higher costs. Former premature infants and infants with congenital abnormalities are at significantly greater risk for complications. Broader use of RSV prevention should be considered for these higher-risk infants.

Bronchiolitis↗

Prioritizing strategies for preventing medication errors and adverse drug events in pediatric inpatients.

OBJECTIVES: Medication errors in pediatric inpatients occur at similar rates as in adults but have 3 times the potential to cause harm. Error prevention strategies in this setting remain largely untested. The objective of this study was to classify the major types of medication errors in pediatric inpatients and to determine which strategies might most effectively prevent them. METHODS: A prospective cohort study was conducted of 1020 patients who were admitted to 2 academic medical centers during a 6-week period in April and May 1999. Medication errors were characterized by subtype. Physician raters evaluated error prevention strategies and identified those that might be most effective in preventing errors. RESULTS: Of 10 778 medication orders reviewed, 616 contained errors. Of these, 120 (19.5%) were classified as potentially harmful, including 115 potential adverse drug events (18.7%) and 5 preventable adverse drug events (0.8%). Most errors occurred at the ordering stage (74%) and involved errors in dosing (28%), route (18%), or frequency (9%). Three interventions might have prevented most potentially harmful errors: 1) computerized physician order entry with clinical decision support systems (76%); 2) ward-based clinical pharmacists (81%); and 3) improved communication among physicians, nurses, and pharmacists (86%). Interrater reliability of error prevention strategy assignment was good (agreement: 0.92; kappa: 0.82). CONCLUSIONS: Of the assessed interventions, computerized physician order entry with clinical decision support systems; ward-based clinical pharmacists; and improved communication among physicians, nurses, and pharmacists had the greatest potential to reduce medication errors in pediatric inpatients. Development, implementation, and assessment of such interventions in the pediatric inpatient setting are needed.

Adult↗