Hospital Quality Indicators in Iowa Rural Hospitals Pengxiang (Alex) Li, Marcia M. Ward, Paul James, John E. Schneider 2008 AHRQ Annual Meeting Bethesda,

Slides:



Advertisements
Similar presentations
Surgery volume and operative mortality: A re-examination using fixed-effects regression Amresh Hanchate, PhD Section of General Internal Medicine Boston.
Advertisements

Exploring efficiency and quality of care among hospitals of the US Veteran Health Administration and Germany Jonas Schreyögg, PhD Commonwealth Harkness.
Comparator Selection in Observational Comparative Effectiveness Research Prepared for: Agency for Healthcare Research and Quality (AHRQ)
Preventable Hospitalizations: Assessing Access and the Performance of Local Safety Net Presented by Yu Fang (Frances) Lee Feb. 9 th, 2007.
Connie N. Hess, MD, Bimal R. Shah, MD, MBA, S. Andrew Peng, MS, Laine Thomas, PhD, Matthew T. Roe, MD, MHS, Eric D. Peterson, MD, MPH Relationship of Early.
V.: 9/7/2007 AC Submit1 Statistical Review of the Observational Studies of Aprotinin Safety Part I: Methods, Mangano and Karkouti Studies CRDAC and DSaRM.
Increasing Health Care Costs: the Price of Innovation? AcademyHealth Annual Research Meeting June 7, 2004 Claudia A. Steiner, MD, MPH Bernard Friedman,
Laura L. McDermott, PhD, FNP, RN Gale A. Spencer, PhD, RN Binghamton University Decker School of Nursing THE RELATIONSHIP AMONG BARRIERS AND FACILITATORS.
1 Lauren E. Finn, 2 Seth Sheffler-Collins, MPH, 2 Marcelo Fernandez-Viña, MPH, 2 Claire Newbern, PhD, 1 Dr. Alison Evans, ScD., 1 Drexel University School.
Centre for Health Economics Modelling the impact of being obese on hospital costs Katharina Hauck Bruce Hollingsworth.
Comparing the Use of Diagnostic Tests in Canadian and US Hospitals Steven J Katz, Laurence F McMahon and Willard G Manning Medical Care. 34(2): ,
The Medical Hospice Benefit: The Effectiveness of Price Incentives in Health Care Policy Written By Vivian Hamilton, McGill University RAND Journal of.
Clustered or Multilevel Data
RACIAL DISPARITIES IN PRESCRIPTION DRUG UTILIZATION AN ANALYSIS OF BETA-BLOCKER AND STATIN USE FOLLOWING HOSPITALIZATION FOR ACUTE MYOCARDIAL INFARCTION.
Analysis of the rationale for, and consequences of, nonprofit and for-profit ownership conversions by Tami Mark Health Services Research, April 1999 Presentation.
The Redesigned National Hospital Discharge Survey National Center for Health Statistics Division of Health Care Statistics Hospital Care Team Last Updated:
Safety and effectiveness of bivalirudin in routine care of patients undergoing percutaneous coronary intervention JA Rassen, MA Mittleman, RJ Glynn, A.
Research and analysis by Avalere Health The Opportunities and Challenges for Rural Hospitals in an Era of Health Reform April, 2011.
As noted by Gary H. Lyman (JCO, 2012) “CER is an important framework for systematically identifying and summarizing the totality of evidence on the effectiveness,
Impact of Hospital Provider Payment Mechanism on Household Health Service Utilization in Vietnam (preliminary results) Sarah Bales Public Policy in Asia,
DOES MEDICARE SAVE LIVES?
Recommendations on Minimum Data Recording Requirements in Hospitals from the Directorate of Health in Iceland: Is it possible to use Hospital Patient Registry.
Neeraj Sood, Schaeffer Center and School of Pharmacy, USC RAND Corporation 1 Competition, Prospective Payment, and Outcomes in Post-Acute Care Markets.
David Card, Carlos Dobkin, Nicole Maestas
CARDIOVASCULAR DISEASE National Healthcare Quality and Disparities Report Chartbook on Effective Treatment.
Preventive Health Care Use in Elderly Uterine Cancer Survivors Division of Health Policy and Management School of Public Health University of Minnesota.
The Effects of Critical Access Hospital Conversion on Patient Safety Pengxiang Li, PhD, University of Pennsylvania University of Iowa John E. Schneider,
1 Is Managed Care Superior to Traditional Fee-For-Service among HIV-Infected Beneficiaries of Medicaid? David Zingmond, MD, PhD UCLA Division of General.
The Impact of Air Pollution on Infant Mortality: Evidence from Geographic Variation in Pollution Shocks Induced by a Recession Kenneth Y. Chay and Michael.
Introduction to Medical Management – PPS and DRGs ISE 468 ETM 568 Spring 2015 Prospective Payment System Diagnosis-Related Groups.
Preventable Hospitalization Costs and Mapping Tool John Bott Center for Delivery, Organization, and Markets July 21, 2010.
Evidence-Based Medicine 3 More Knowledge and Skills for Critical Reading Karen E. Schetzina, MD, MPH.
Paracentesis and Mortality in U.S. Hospitals José L. González, MD Wednesday, June 25 th, 2014Journal Club.
Why are White Nursing Home Residents Twice as Likely as African Americans to Have an Advance Directive? Understanding Ethnic Differences in Advance Care.
Has Public Health Insurance for Older Children Reduced Disparities in Access to Care and Health Outcomes? Janet Currie, Sandra Decker, and Wanchuan Lin.
S outh C arolina Rural Health Research Center At the Heart of Public Health Policy Mediators of Race Effects on Risk of Potentially Avoidable Maternity.
Gender Differences in Critical Care Resource Utilization and Health Outcomes Among the Elderly Diane M. Dewar, PhD University at Albany, State University.
Various topics Petter Mostad Overview Epidemiology Study types / data types Econometrics Time series data More about sampling –Estimation.
Studying Injuries Using the National Hospital Discharge Survey Marni Hall, Ph.D. Hospital Care Statistics Branch, Division of Health Care Statistics.
Office of Statewide Health Planning and Development Day for Night: Hospital Admissions for Day Surgery Patients in California, 2005 Mary Tran, PhD, MPH.
THE URBAN INSTITUTE Examining Long-Term Care Episodes and Care History for Medicare Beneficiaries: A Longitudinal Analysis of Elderly Individuals with.
Using Willingness to Pay to Evaluate Hospital Mergers: Results from 16 Mergers Presented by Rich Lindrooth Co-authors: David Dranove Mark Satterthwaite.
Obesity, Medication Use and Expenditures among Nonelderly Adults with Asthma Eric M. Sarpong AHRQ Conference September 10, 2012.
Rates of Patient Safety Indicators (PSIs) Rates of Patient Safety Indicators (PSIs) among VA Patients in the First Two Years among VA Patients in the First.
Appendices. Appendix 1: Supplementary Data Tables Trends in the Overall Health Care Market.
Hospitalizations Among Nursing Home Residents with Pneumonia R. Tamara Hodlewsky, MA, MS William Spector, PhD Tom Shaffer, MHS.
Acute and Chronic Disability Among US Farmers and Pesticide Applicators: The National Health Interview Survey O Gómez-Marín, D Zheng, W LeBlanc, D Lee,
Volume-Outcome Relationship: An Econometric Approach to CABG Surgery Hsueh-Fen Chen (VCU) Gloria J. Bazzoli (VCU) Askar Chukmaitov (FSU) Funded by the.
Hospital Utilization by Fee-for-Service and Medicare Advantage Enrollees Lauren Hersch Nicholas University of Michigan September 15, 2009.
Evaluating Risk Adjustment Models Andy Bindman MD Department of Medicine, Epidemiology and Biostatistics.
Medicare Advantage Payment Extra Payments, Enrollment & Quality of Care Lauren Hersch Nicholas Columbia University AcademyHealth June 3, 2007 Research.
Term 4, 2006BIO656--Multilevel Models 1 PART 07 Evaluating Hospital Performance.
Hospital racial segregation and racial disparity in mortality after injury Melanie Arthur University of Alaska Fairbanks.
Rural Health Research Center S outh C arolina Greater Rurality Increases Barriers to Primary Health Care: Evidence of a Gradient in Access or Quality Janice.
IMPORTANCE OF STATISTICS MR.CHITHRAVEL.V ASST.PROFESSOR ACN.
BlueCross BlueShield of Illinois a Division of Health Care Service Corporation (HCSC), a Mutual Legal Reserve Company Blue Cross Blue Shield of Illinois.
Teaching Intensity, Race and Surgical Outcomes Jeffrey H. Silber The University of Pennsylvania The Children’s Hospital of Philadelphia.
A Profile of Patient Care and Safety in Hospitals with Differing Case-Mix and Financial Condition Sema K. Aydede, PhD Institute for Child Health Policy,
Appendices. Appendix 1: Supplementary Data Tables Trends in the Overall Health Care Market.
Health Care Market Structure, Safety Net Hospitals, and the Quality of Hospital Care José J. Escarce, MD, PhD David Geffen School of Medicine at UCLA and.
Children’s Emotional and Behavioral Problems and Their Parents’ Labor Supply Patrick Richard, Ph.D., M.A. Nicholas C. Petris Center on Health Markets and.
Medical Technology and Practice Patterns Institute 4733 Bethesda Ave., Suite #510 Bethesda, MD Phone: Fax: Comparison of.
Supply and Cost of “Treat and Release” Visits to Hospital EDs Bernard Friedman PhD Pamela Owens PhD Agency for Healthcare Research and Quality.
D EPARTMENT of F AMILY M EDICINE Comparing Myocardial Infarction Mortality Rates in Rural and Urban Hospitals : Rethinking Measures of Quality of Care.
Hospital Use of Supplemental Nurses and Patient Mortality and Failure to Rescue Jingjing Shang, PhD, RN Columbia University School of Nursing Ying Xue,
Acute Renal Failure in Aneurysmal Subarachnoid Hemorrhage: Nationwide Analysis of Hospitalizations in the United States Kavelin Rumalla 1, Adithi Y. Reddy.
1 Predicting Dementia From Vascular Conditions Among Tennessee Medicare Elderly Baqar A. Husaini, PhD Professor & Director, Center for Health Research.
Do Rural and Urban Women Experience Different Maternal Re-Hospitalizations? 2011 California Healthcare Cost and Utilization Project (HCUP) Wei-Chen Lee,
Evaluating Policies in Cardiovascular Medicine
Improving Overlap Farrokh Alemi, Ph.D.
Presentation transcript:

Hospital Quality Indicators in Iowa Rural Hospitals Pengxiang (Alex) Li, Marcia M. Ward, Paul James, John E. Schneider 2008 AHRQ Annual Meeting Bethesda, Maryland Support grant: Agency for Healthcare Research and Quality Grant # HS015009

Background  Hospital quality indicators were used to provide a perspective on hospital quality of care  AHRQ Inpatient Quality Indicators (IQIs)  AHRQ Patient Safety Indicators (PSIs)  Our analyses focus on  Acute Myocardial Infarction (AMI) in-hospital mortality (IQI-15)  Four PSIs (PSI-5, PSI-6, PSI-7, and PSI-15)

Outline  Comparison of Iowa urban and rural hospitals on AMI in-hospital mortality  James PA, Li P, Ward MM. Myocardial infarction mortality in rural and urban hospitals: Rethinking measures of quality of care. Annals of Family Medicine, 5: , 2007  Association between Critical Access Hospital (CAH) conversion and patient safety indicator performance  Li, P., Schneider, J. E. & Ward, M. M., (2007) Effect of Critical Access Hospital Conversion on Patient Safety. Health Services Research, 42 (6):  Exploration of a potential reason of patient safety change associated with CAH conversion  Li, P., Schneider, J. E. & Ward, M. M., Effects of Critical Access Hospital Conversion on the Financial Performance of Rural Hospitals Inquiry (in press)

How do Iowa urban and rural hospitals compare on AMI in- hospital mortality? James PA, Li P, Ward MM. Myocardial infarction mortality in rural and urban hospitals: Rethinking measures of quality of care. Annals of Family Medicine, 5: , 2007

Introduction  Observational studies find that the quality of care for myocardial infarction (MI) patients admitted to rural hospitals is substandard (Sheikh 2001, Baldwin 2004)  Lower volumes of MI patients in rural hospitals  Lacking cardiologists  Lacking support services

Introduction  Validity of these observational studies has been questioned  Unbalanced comparison groups  Patients admitted to rural hospitals tend to be older, poorer, in poorer health, and have greater number of comorbidities (Baldwin 2004, Chen 2000, Frances 2000)  Referral patterns of rural provider  Empirical study showed that less severe patients were referred to urban hospitals (Metha 1999)  Unmeasured confounding may account for differences in patient outcomes

Objectives of the study  To compare characteristics of MI patients admitted to rural and urban hospitals  To examine in-hospital mortality between rural and urban hospitals among MI patients  Using traditional risk adjustment techniques (Logistic regression)  Using instrumental variable methods (IV)

Methods: Data  Discharge data from Iowa State Inpatient Dataset (2002 & 2003)  Inclusion criteria  A principal diagnosis of MI (ICD-9-CM: )  Eighteen years or older  Exclusion criteria  The hospital identification number was missing (n=9)  Patient’s whose home county was not in Iowa (n=1,248)  Patients’ zip code was missing (n=14)  Patients’ sex was missing (n=1)  Our primary analyses also excluded patients discharged or transferred to another short term general hospital for inpatient care (n=1,618)  Most of our analyses are based on 12,191 MI patients

Methods: Variables  Dependent variable  In-hospital mortality  Independent variables  Urban vs Rural hospitals that patients admitted to  Urban: 27 hospitals  Rural: 89 hospitals  Payer: e.g. Medicare, private insurance, self-pay  Admission type: e.g. emergency  Race  Risk adjustment index  Charlson comorbidity index  All Patient Refined DRGs (APR-DRGs) risk index

Methods: Traditional Analytic Approach (Logistic Regression)  Univariate analyses of group comparisons  Chi-square tests for dichotomous data  ANOVAs for continuous data  Logistic regressions for multiple regression analyses

Methods: Pitfalls with Logistic Regression  Using administrative inpatient data, one cannot control all patients’ risk factors (e.g. severity of illness)  If unmeasured variables are related to selection of the hospital, the estimates of the hospital-specific contribution to mortality will be biased.  For example, elderly MI patients with severe comorbid conditions, which are unmeasured in administrative data, might prefer to remain in the rural hospitals.  As a result, a higher risk-adjusted mortality rate in rural hospitals might simply be due to more severe patients in rural hospitals.

Approaches to Minimize Bias  Collect all the relevant patient-level variables: very costly  Randomized controlled trial  Not feasible to this study  Instrumental variable (IV) estimation  An econometric technique which enables us to obtain unbiased estimates of treatment effects in observational studies  An example: Wehby (2006) found that using the logistic regression model, early initiation of prenatal care is associated with a higher probability of low birth weight (LBW)  Unmeasured confounders: women at a higher risk demand more (or early) prenatal care compared to those at lower risk.  IV estimations showed that early time to prenatal care initiation is associated with a lower probability of LBW.

The Instrumental Variable (IV) estimation  IVs are used to achieve a “pseudo-randomization”  The instrumental variable technique can extract variation in the focal variable (rural hospital selection) that is unrelated to unmeasured confounders, and employ this variation to estimate the causal effect on an outcome  Assumptions for IV(s) 1. IV(s) should correlate with treatment variable (choice of rural hospital) 2. IV(s) should not be correlated with the unmeasured confounders

Methods: Instrumental Variable Technique  Instrumental Variable = Patients’ distance to the nearest urban hospital  The distances between each patient’s home and all urban hospitals in Iowa were obtained by calculating the distances between the centroids of each patient’s resident zip code and all urban hospitals’ zip codes.  Similar to Brooks (2003) approach, instrumental variables in the study are dummy variables that group patients based on the their distance to the nearest urban hospital.

Methods: IV Technique: First assumption  Patients who live closer to an urban hospital are more likely to choose an urban hospital than those who live farther away.  Partial F-statistics for the IVs in the first stage regression  Small values of first-stage F-statistics imply failure of assumption 1  Rule of thumb: F>10 indicates good association (Staiger 1997)

Methods: IV Technique Second Assumption:  Distance to the nearest urban hospital is not associated with the severity or pre-morbid risks of patients with MI  Descriptive comparison between two groups of patients classified by IV  If the instrument is independent of the unmeasured confounders, it should also be independent of observed risk factors (e.g. age, and comorbidity index).  Over-identifying restrictions tests  The null hypothesis is that the IV is not correlated with unmeasured confounders

Methods: IV Technique  To examine the robustness of our findings:  We used a range of patients’ groups for the instrumental variable (2, 4, 8, and 12 groups).  We varied the independent variables.  The syslin two-stage least squares (2SLS) procedure in SAS 9.1 was used to do IV estimation.

Results: Table 1: Baseline characteristics of MI patients* admitted to rural and urban hospitals VariablesRural (N= 1,426) Urban (N= 10,765) p-value Age <.0001 Male (%) <.0001 Black (%) Number of secondary diagnoses Charlson comorbidity index <.0001 APR-DRG risk index <.0001 In-hospital Mortality <.0001 * Excluding patients discharged or transferred to another short term general hospital for inpatient care.

Results: Table 2: Baseline characteristics of MI patients transferred out of rural hospitals or staying in rural hospitals VariablesStay in rural hospitals (N=1,426) Transfer out* of rural hospitals (N=730) p-value Age <.0001 Male (%) <.0001 Black (%) Number of secondary diagnoses <.0001 Charlson comorbidity index <.0001 APR-DRG risk index <.0001 * Patients discharged or transferred to another acute care hospital for inpatient care

Results: Table 3: Odds ratios of in-hospital mortality* among MI patients admitted to urban hospitals or to rural hospitals, using logistic regression models (n=12,191) Model componentsOdds ratio (Urban vs Rural) 95% CI p-valuec-statistic Unadjusted < Adjusted for demographic variables (age, sex, race, admission type and source of payment) < Adjusted for demographic variables and Charlson comorbidity index Adjusted for demographic variables and APR-DRG risk index < * Excluding patients discharged or transferred to another short term general hospital for inpatient care

Results: Table 4: Characteristics among MI patients grouped by distance to the nearest urban hospital VariablesDistance to nearest urban hospital <=14.08 miles* (N= 6,097) Distance to nearest urban hospital >14.08 miles (N= 6,104) p-value Mean Distance to the nearest urban hospital (miles) < Percent of patients admitted to urban hospitals (%) < Age < Male (%) Black (%) < Number of secondary diagnoses < Charlson comorbidity index APR-DRG risk index In-hospital mortality rate (%) *14.08 miles is the median distance from patient’s home to the nearest urban hospital

Results: Table 5: Instrumental variable estimates of the difference of in-patient mortality between urban and rural hospitals * If a F-statistic is less than 10, the instrumental variables are weak. ** If p-value is less than 0.05, one of the instrumental variables correlated with unmeasured confounders IV models (n=12,191) Number of groups for instrumental variable Tests for instrumental variables IV estimates of mortality difference Instrument P-value for overidentifying restrictions tests**CoefficientsP-value F-statistic* Unadjusted Adjusted for demographic variables Adjusted for demographic variables and Charlson comorbidity index Adjusted for demographic variables and APR-DRG risk index

Results: Sensitivity analyses  Repeat analyses in different samples  Excluding transferred in MI patients  Three-year state inpatient datasets (2001 to 2003)  Different IV estimation method  Two-stage residual inclusion method to account for the endogeneity in nonlinear (logistic) model  Bivariate Probit model (using Stata 9.0)  The results are consistent with IV estimation in Table 5

Discussion  This study confirms earlier studies  MI patients admitted to rural hospitals were older and sicker than their urban counterparts  Traditional models all indicate significantly higher in-hospital mortality for those admitted to rural hospitals

Discussion  Our findings suggest that the traditional logistic regression models are biased  Admissions to rural or urban hospitals are likely to be confounded by unmeasured patient variables  Referral patterns in rural hospitals  Younger and less sick patients are transferred to urban hospitals  The clinical judgment about transfer of rural senior patients with MI may rely on different criteria

Discussion  Patient preferences are likely to play a significant role in transfer decisions for older MI patients  May reflect personal choice or existing serious comorbidities  Serious cases may choose to remain close to home  The transfer patterns may reflect rural doctors respecting their patients’ wishes  Using in-hospital MI mortality to measure quality of care in rural hospitals is problematic.

Limitations of the study  The results of the IV estimation can only be generalized to patients for whom distance affects their choice  The conclusion cannot be applied to MI patients bypassing rural hospitals and seeking care in urban hospitals  The findings for hospitals in one state may not generalize to other states.  Analyses of in-hospital mortality rates may not generalize to mortality rates after hospitalization.

Conclusions  Mortality from MI in rural Iowa hospitals is not higher when controlled for unmeasured confounders.  Current risk-adjustment models may not be sufficient when assessing hospitals that perform different functions within the healthcare system.  Unmeasured confounding is a significant concern when comparing heterogeneous and undifferentiated populations.

Did conversion to Critical Access Hospital (CAH) status affect patient safety indicator performance? Li, P., Schneider, J. E. & Ward, M. M., (2007) Effect of Critical Access Hospital Conversion on Patient Safety. Health Services Research, 42 (6):

Background  In order to protect small, financially vulnerable rural hospitals, the Medicare Rural Hospital Flexibility Program of the 1997 Balanced Budget Act allowed hospitals meeting certain criteria to convert to critical access hospitals (CAH)  This changed their Medicare reimbursement mechanism from prospective (PPS) to cost-based  One objective of the policy was to increase the quality of care in these hospitals

Timeframe for Conversion to CAH

Patient Safety

4 PSIs and Composite  AHRQ recommends suppressing the estimates if fewer than 30 cases are in the denominator  Only five patient safety indicators are able to provide PSI measures for all rural Iowa hospitals  PSI-5: foreign body left during procedure  PSI-6: iatrogenic pneumothorax  PSI-7: selected infections due to medical care  PSI-15: accidental puncture or laceration  PSI-16: transfusion reaction  Too rare to provide variability to differentiate hospitals in Iowa  A composite patient safety variable was created by summing the four PSIs (PSI-5, PSI-6, PSI-7, and PSI-15).

Number of Hospitals Having Better or Worse Performance after CAH Conversion

Cross-sectional Analyses  Cross-sectional comparisons showed that CAHs had better performance than rural PPS hospitals on 4 of the 5 PSI measures.  However, the difference in patient safety indicators might be due to differences in patient mix, hospital characteristics besides CAH conversion, and differences in markets and environment.

Multivariable Analyses  We used multivariable Generalized Estimating Equations (GEE) models and sensitivity analyses to control for the impact of patient case mix, market variables, and time trend.  GEE models showed that CAH conversion was associated with significant better performance in PSI-6, PSI-7, PSI-15 and composite PSI.  Findings were robust among sensitivity analyses using different samples and different methods

Conclusions  CAH conversion in rural hospitals resulted in enhanced performance in PSIs  We speculate that the likely mechanism involved an increase in financial resources following CAH conversion to cost-based reimbursement for Medicare patients

How did Critical Access Hospital conversion affect rural hospital financial condition? Li, P., Schneider, J. E. & Ward, M. M., Effects of Critical Access Hospital Conversion on the Financial Performance of Rural Hospitals Inquiry (in press)

Objectives  To study the effects of CAH conversion on Iowa rural hospitals’ operating revenue, cost, and profit margin

Study Sample and Study design  Sample  Eight year ( ) panel data for 89 Iowa rural hospitals (rural PPS hospitals and CAHs)  Unit of analysis is hospital-year  Study design  Quasi-experimental designs that use both control groups and pretests  Panel data regression with fixed hospital effects

Models  Ad hoc models:  Revenue it =f(CAH it,P jt,Y it,X it )  Cost it =f(CAH it,W jt,Y it,X it )  Margin it =f(CAH it,W jt, P jt,Y it, X it )  Variables:  CAH it : hospital status (CAH or rural PPS) for i th hospital in year t  P it : output prices for i th hospital in year t  W it : input prices for i th hospital in year t  Y it : output volume for i th hospital in year t  X it : other variables for i th hospital in year t that empirically affect dependent variables

CAH variables  One dummy variable  CAH=1, if the hospital is in CAH status  Three dummy variables  CAH1 it =1, if the hospital is in the first year of CAH status, otherwise CAH1 it =0  CAH2 it =1, if the hospital is in the second year of CAH status, otherwise CAH2 it =0  CAH3 it =1, if the hospital is in CAH status for more than 2 years, otherwise CAH3 it =0  Comparison group: Rural PPS

Other covariates  P it : output prices for i th hospital in year t  Medicare Part A (hospital) adjusted average per capita cost (AAPCC) as proxy of hospital output price (county level)  W it : input prices for i th hospital in year t  Hourly wages for registered nurses (county level)  Y it : output volume for i th hospital in year t  Total number of acute discharges, total number of outpatient visits, and average length of stay of acute discharges  The squared and cubed output measures and interaction terms will be included

Others  X it : other variables for i th hospital in year t that empirically affect dependent variables  Hospital size (number of beds)  Hospital case-mix  Hospital mean DRG weight, percent of emergency visits, and percent of Medicare and Medicaid days among acute inpatient days  Variables reflecting the hospital market (we assumed the county to be the relevant geographic market of hospital services.)  Herfindahl-Hirschman Index (HHI), per capita income, and population density in the county in which the hospital is located  Year dummy variables which will adjust the effects of unmeasured, time- specific factors  Revenue and expense functions were log transformed

Data Sources  Iowa Hospital Association Profiles  Iowa State Inpatient datasets  Area Resource File  Centers for Medicare and Medicaid Services  American Hospital Association Annual Survey Database  Bureau of Labor Statistics

Result: Table 1: Changes in rural hospital patient care revenue, expense, and operating margin associated with CAH conversion, * P-value< 0.1 ** P-value< 0.05

Table 2: Changes in rural hospital patient care revenue, expense, and operating margin during the first, second and third plus years of CAH conversion, * P-value< 0.1 ** P-value< 0.05

Results  Operating revenue  No change in the first year of conversion (paid an interim rate)  Significant increases since the second year of CAH conversion  Operating expenses  CAH conversion is associated with significant increase in hospital operating expenses  Hospitals increase expenses in the first year of conversion  Operating Margin  Significant drop in the first year of conversion  Significant increase since the second year of conversion  Sensitivity analyses showed similar results

Conclusions  CAH conversion in rural hospitals resulted in better patient safety.  Rural hospital CAH conversion was associated with significant increases in hospital operating revenues, expenses and margins

Summary: Limitations of measures  In-hospital mortality  Substantial unmeasured confounders  Patient Safety Indicators  Only small number of indicators can be applied to rural hospitals  Changes of indicators might reflect changes in coding or reporting in administrative data  We need hospital quality indicators specifically for rural hospitals

 Thank you  Questions?  Contact information  Pengxiang (Alex) Li  University of Pennsylvania 