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Biomedical subjects

C L Raehl

Publications and source records attributed to C L Raehl.

42 records · Page 3Linked to original sources

An assessment of recent pharmacy graduates' knowledge and competency, professional practice functions, and involvement in pharmacy teaching programs.

STUDY OBJECTIVES: To determine self-evaluated professional knowledge and competency, functions, demographic information, lifelong learning, degree and training status, practice sites, involvement in pharmacy teaching programs, and salary for recent pharmacy graduates. DESIGN: A survey of recent Bachelor of Science (B.S.) pharmacy graduates of the University of Wisconsin School of Pharmacy. MEASUREMENTS AND MAIN RESULTS: A total of 371 B.S. pharmacy graduates (55% response rate) provided information. Graduates who had an advanced degree or training (from many programs) after completing their B.S. pharmacy degree, and those who were teaching in pharmacy programs generally had higher self-rated levels of knowledge and competencies. Hospital pharmacists spent less of their work time in dispensing activities (33.82% +/- 30.39%) than community pharmacists (61.04% +/- 19.97%; t = 8.78, df = 288, p < 0.001); community pharmacists spent twice as much of their work time counseling and educating patients (16.65% +/- 10.47% vs 7.13% +/- 7.39%; t = 9.06, df = 288, p < 0.001). The amount of time pharmacists spent in dispensing functions had a negative association with knowledge and competencies in the sections on pharmacokinetic and disease process (r = -0.277, p < 0.01), patient communications (r = -0.272, p < 0.01), and administrative and economic aspects of practice (r = -0.210, p < 0.01) for all respondents. Pharmacists reported that they spent 13.78 +/- 14.06 hours per month outside work in professional lifelong learning. There was a negative association between the time pharmacists spent dispensing and the time they spent in professional lifelong learning (r = -0.239, p < 0.001), and a positive relationship between the time spent in such learning and the time providing information to prescribers and other health care professionals (r = 0.214, p < 0.001), monitoring patients (r = 0.216, p < 0.001), and performing primary care activities (r = 0.176, p < 0.001). Graduates reported a mean yearly salary of $46,879 +/- $8183. More hospital pharmacists were involved in teaching (48, 37%) than those practicing in a community setting (19, 12%). CONCLUSIONS: Practice site, advanced degree or training, lifelong learning, involvement in teaching programs, and time spent in various professional functions were associated with pharmacists' self-rated knowledge and competencies.

Community Pharmacy Services↗

1992 National Clinical Pharmacy Services Study.

STUDY OBJECTIVE: To determine the extent of hospital-based clinical pharmacy services in 1992. DESIGN: National survey with trend comparison to 1989. SETTING: All 1597 United States acute care, general medical-surgical and pediatric hospitals with 50 or more licensed beds and one or more full-time pharmacists (43% of all U.S. hospitals). MEASUREMENTS AND MAIN RESULTS: Fourteen clinical pharmacy services, carefully defined to indicate pharmacist proactive or concurrent patient care provision, were assessed to determine pharmacists' specific patient care responsibilities. The percentage of hospitals offering each of the services increased from 1989 to 1992, with greatest growth in management of adverse drug reactions (22% increase), pharmacokinetic consultations (14%), and drug therapy protocols (12%). The mean percentage of patients actually receiving clinical pharmacy services ranged from 0.2% for pharmacist participation on the cardiac arrest team to 36.1% for daily monitoring of drug therapy. Pharmacists conducted clinical research in 13% of all hospitals, averaging 3.9 +/- 4.3 protocols per year with a total budget of $79,765 +/- $128,641. CONCLUSIONS: Clinical pharmacy services continue to expand; however, even the most common direct patient care service is provided to a small number of inpatients.

Drug Utilization Review↗

Hospital and pharmacy characteristics associated with mortality rates in United States hospitals.

We attempted to determine hospital and pharmacy characteristics associated with mortality rates in 4864 United States hospitals. Data were obtained from the Health Care Financing Administration, the American Hospital Association, and the National Clinical Pharmacy Services survey. Univariate and multivariate regression models were used to determine which hospital characteristics were associated with mortality. A similar regression analysis was performed on 718 hospitals for which detailed pharmacy information was available. In a multivariate regression model, some characteristics of 4864 hospitals associated with reduced mortality rates were high-technology index (R2 = 0.09, p < 0.001), severity of illness (R2 = 0.048, p < 0.001), number of hospital beds (R2 = 0.016, p < 0.001), and medical personnel (R2 = 0.012, p < 0.001). This analysis accounted for 41% of the mortality rate variance. For the 718 hospitals and pharmacies, some of these characteristics were high-technology index (R2 = 0.157, p < 0.001), severity of illness (R2 = 0.07, p < 0.001), number of pharmacists/average daily census (R2 = 0.021, p < 0.001), and combined hospitalwide clinical pharmacy services (R2 = 0.016, p < 0.01). The results of this analysis were similar to those in the only other large study in this area, but that excluded pharmacy characteristics. This is the first study to show a statistically significant association between pharmacist and pharmacy variables and reduced hospital mortality rates.

Hospital Bed Capacity↗

Ambulatory pharmacy services affiliated with acute care hospitals.

The extent to which hospital-based pharmacists provide ambulatory clinical pharmacy services in the United States is unknown. We evaluated pharmacists' activities in hospital-affiliated ambulatory clinics and home health services. A questionnaire was mailed to directors of pharmacy in one-half of the United States acute care general medical-surgical hospitals with 50 or more licensed beds. The survey response rate was 56% (n = 1174). In 19% of hospitals, pharmacists provided patient care (nondispensing activities) in ambulatory clinics. The most common clinics with pharmacist involvement were diabetes (10% of hospitals), oncology (9%), cardiology (6%), and geriatrics, infectious disease, and pain (4% each). Nondispensing roles varied by clinic type; prescribing by protocol was performed in 57% of anticoagulation clinics and 7% of diabetes clinics. Home health care services, with pharmacists' activity extending beyond providing drugs, were offered by 28% of the hospitals. Thirty-six percent of the hospitals operated one or more outpatient pharmacies. A statistically significant association was observed between hospitals' inpatient clinical pharmacy services (as assessed by the pharmaceutical care index) and the involvement of pharmacists in both ambulatory clinics and home health care services.

Ambulatory Care↗

1995 National Clinical Pharmacy Services Study.

To determine the extent of hospital-based clinical pharmacy services in 1995, we surveyed 1109 United States acute care, general, medical-surgical, and pediatric hospitals with 50 or more licensed beds. Fifteen clinical pharmacy services were assessed to determine pharmacists' specific patient care responsibilities. The percentage of hospitals offering services grew between 1992 and 1995: pharmacokinetic consultations (16% increase), drug therapy protocol management (15%), drug therapy monitoring (8%), drug counseling (13%), and parenteral-enteral nutrition team (6%). All other services increased 0-5%. Pharmacists conducted clinical research in 14% of hospitals, averaging 6.3+/-22.1 protocols/department annually; total budget $96,219+/-$262,026. Patient-focused care predominated in 20% of hospitals, although most pharmacists reported to directors of pharmacy through traditional pharmacy department channels. Clinical pharmacy services continue to expand, with pharmacists providing higher-level direct patient care activities related to drug therapy management and monitoring.

Ambulatory Care↗

Clinical pharmacy services in hospitals educating pharmacy students.

In 1995 we conducted a national survey of 1102 acute care hospitals in the United States to determine types of clinical pharmacy services, patient-focused care, and pharmaceutical care used to educate and train pharmacy students, and compared outcomes with surveys in 1989 and 1992. Clinical pharmacy services offered in 50% or more of Pharm.D.-affiliated hospitals (core services) were drug-use evaluation, in-service education, pharmacokinetic consultations, adverse drug reaction management, drug therapy monitoring, protocol management (most common for aminoglycosides, nutrition, antibiotics, heparin, warfarin, theophylline), nutrition team, and drug counseling. Comprehensive pharmaceutical care programs were established in 64%, 42%, and 33% of Pharm.D., B.S., and nonteaching hospitals, respectively. Patient-focused care programs were beginning or established in 77%, 71%, and 60%, respectively. Pharmacists served as care team leaders in 23% of hospitals affiliated with a college of pharmacy. Most common ambulatory care clinics were oncology, anticoagulation, diabetes, geriatrics, refill, and infectious diseases/HIV. For-profit hospitals rarely provided education for pharmacy students. Thus patient-focused and comprehensive pharmaceutical care programs exist according to a hospital's academic program affiliation with Pharm.D. or B.S. degree program.

Data Collection↗