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1.
Am Surg ; 89(6): 2362-2367, 2023 Jun.
Article in English | MEDLINE | ID: mdl-35448932

ABSTRACT

INTRODUCTION: On any given day, there are >550,000 homeless persons in the United States. Little research has examined the relationship between the homeless population and traumatic injuries. We hypothesized that homeless trauma patients have a higher mortality compared to those who are not homeless. METHODS: The Pennsylvania Trauma Outcome Study database was retrospectively queried from 2003-2018 for all adult (age ≥15) patients admitted to trauma centers in Pennsylvania. Homelessness was defined as homeless on admission or homeless as their discharge status. Patient demographics, comorbidities, and clinical variables were compared between homeless and non-homeless patients. Logistic regression was used to control for age, gender, injury severity, injury type, admission Glasgow Coma Scale, and systolic blood pressure to assess morbidity and mortality. RESULTS: 773 patients were identified upon query. Homeless trauma patients were more likely to be male, younger, black, and of Hispanic ethnicity. Compared to non-homeless, they were more likely to have a positive drug screen or mental illness at the time of injury. They were not more significantly injured than their counterparts; however, in adjusted analysis, the homeless had significantly higher odds of both complications (Adjusted Odds Ratio [AOR]: 3.11; 95%CI: 2.64-3.66, P < .001) and mortality (AOR: 1.79; 95%CI: 1.29-2.50, P = .001). CONCLUSION: Although homeless patients were not more severely injured than the general trauma population, they had significantly higher odds of both complications and mortality. This population represents a very vulnerable community in need of medical intervention and injury prevention programs.


Subject(s)
Ill-Housed Persons , Refugees , Adult , Humans , Male , United States/epidemiology , Female , Retrospective Studies , Hospitalization , Trauma Centers , Injury Severity Score
2.
Am Surg ; 88(7): 1573-1575, 2022 Jul.
Article in English | MEDLINE | ID: mdl-35337207

ABSTRACT

Frail, geriatric patients with pelvic fractures can present differently than non-frail patients. Using the Clinical Frailty Scale(CFS), a retrospective analysis was conducted to determine the relationship between patients' CFS and outcomes after pelvic fractures. We hypothesized that frail, geriatric trauma patients defined as a CFS>4 with pelvic fractures have worse outcomes than non-frail patients with a CFS≤4 despite similar injuries. All geriatric patients with pelvic fractures and documented CFS were included. Seventy patients were included, with 59% (n = 41) frail. The groups were compared with no difference in mortality. The frail group was older and were most likely discharged to a skilled nursing facility (65.8%). Non-frail were most likely discharged to acute rehab (52%). Frail had lower functional status at discharge (median: 14.5v.16, P = .015). Frail patients had worse overall outcomes in this analysis of geriatric pelvic fracture patients. Special attention should focus on this vulnerable population to ensure optimal treatment and outcomes.


Subject(s)
Fractures, Bone , Frailty , Aged , Fractures, Bone/complications , Frail Elderly , Frailty/epidemiology , Geriatric Assessment , Humans , Length of Stay , Retrospective Studies
3.
J Surg Res ; 272: 184-189, 2022 04.
Article in English | MEDLINE | ID: mdl-35032820

ABSTRACT

INTRODUCTION: Hemodynamically normal pediatric trauma patients with solid organ injury receive nonoperative management. Prior research supports that pediatric patients have higher rates of nonoperative management at pediatric trauma centers (PTCs). We sought to evaluate differences in outcomes of pediatric trauma patients with liver injuries. We hypothesized that the type of trauma center (PTC versus adult trauma center [ATC]) would not be associated with any difference in mortality. METHODS: The Pennsylvania Trauma Outcome Study database was retrospectively queried from 2003 to 2018 for all patients (<15 y) with liver injuries by International Classification of Disease 9 and 10 codes. Patients were categorized based on admission to the PTC or ATC. The primary endpoint was mortality with secondary endpoints being operative intervention and length of stay. Multivariate logistic regressions assessed the adjusted impact on mortality and surgical intervention. RESULTS: Of the 1600 patients with liver trauma, 607 met inclusion criteria. A total of 78.4% were treated at PTCs. Patients underwent hepatobiliary surgery more frequently at ATCs (11.5% [n = 15] versus 2.74% [n = 13], P < 0.001). Adjusted analysis showed lower odds of surgical intervention for hepatobiliary injuries at PTCs (adjusted odds ratio: 0.17, P = 0.001). There was a decrease in mortality at PTCs versus ATCs (adjusted odds ratio: 0.38, P = 0.032). CONCLUSIONS: Our statewide analysis showed that pediatric trauma patients with liver injuries treated at ATCs were associated with having higher odds of mortality and higher incidence of operative management for hepatobiliary injuries than those treated at PTCs. In addition, between centers, patients had similar functional status at discharge.


Subject(s)
Trauma Centers , Wounds, Nonpenetrating , Adult , Child , Humans , Injury Severity Score , Liver/injuries , Liver/surgery , Odds Ratio , Retrospective Studies , Wounds, Nonpenetrating/diagnosis , Wounds, Nonpenetrating/surgery
4.
Am Surg ; 88(6): 1285-1292, 2022 Jun.
Article in English | MEDLINE | ID: mdl-33625868

ABSTRACT

INTRODUCTION: Diagnostic radiology interpretive errors in trauma patients can lead to missed diagnoses, compromising patient care. Due to this, our level II trauma center implemented a reread protocol of all radiographic imaging within 24 hours on our highest trauma activation level (Code T). We sought to determine the efficacy of this reread protocol in identifying missed diagnoses in Code T patients. We hypothesized that a few, but clinically relevant errors, would be identified upon reread. METHODS: All radiographic study findings (initial read and reread) performed for Code T admissions from July 2015 to May 2016 were queried. The reviewed radiological imaging was given one of four designations: agree with interpretation, minor (non-life threatening) nonclinically relevant error(s)-addendum/correction required or clinically relevant error(s) (major [life threatening] and minor)-addendum/correction required, and trauma surgeon notified. The results were compiled, and the number of each type of error was calculated. RESULTS: Of the 752 radiological imaging studies reviewed on the 121 Code T patients during this period, 3 (0.40%) contained minor clinically relevant errors, 11 (1.46%) contained errors that were not clinically relevant, and 738 (98.1%) agreed with the original interpretation. The three clinically relevant errors included a right mandibular fracture found on X-ray and a temporal bone fracture that crossed the clivus and bilateral rib fractures found on computerized tomography. DISCUSSION: Clinically relevant errors, although minimal, were discovered during rereads for Code T patients. Although the clinical errors were significant, none affected patient outcomes. We propose that the implementation of reread protocols should be based upon institution-specific practices.


Subject(s)
Rib Fractures , Trauma Centers , Diagnostic Errors , Humans , Retrospective Studies , Tomography, X-Ray Computed
5.
Am Surg ; 88(5): 866-872, 2022 May.
Article in English | MEDLINE | ID: mdl-34645332

ABSTRACT

BACKGROUND: Unplanned readmission/bounceback to the intensive care unit (ICUBB) is a prevalent issue in the medical community. The geriatric population is incompletely studied in regard to ICUBB. We sought to determine if ICUBB in older patients was associated with higher risk of mortality. We hypothesized that, of those who were older, those with ICUBB would have higher mortality compared to those with no ICUBB. Further, we hypothesized that of those with ICUBB, older age would lead to higher mortality. METHODS: The Pennsylvania Trauma Outcome Study database was retrospectively queried from 2003 to 2018 for all trauma patients of age ≥40 years. Those with advance directives were excluded. Adjusted analysis in the form of logistic regressions controlling for demographic and injury covariates and clustering by facility were used to assess the adjusted impact of ICUBB and age on mortality. RESULTS: 363,778 patients were aged ≥40 years. When comparing mortalities between the age 40 and 49 years group and those in older groups, a dramatic increase in mortality was observed between those in each respective age category with ICUBB vs non-ICUBB. This trend was most prominent in those in the 90+ years age group (ICUBB: AOR: 34.78, P < .001; non-ICUBB: AOR: 9.08, P < .001). A second model only including patients who had ICUBB found that patients of age ≥65 years had significantly higher odds of mortality (AOR: 4.10, P < .001) when compared to their younger counterparts (age <65 years). DISCUSSION: An ICUBB seems to exacerbate mortality rates as age increases. This profound increase in mortality calls for strategies to be developed, especially in the older population, to attempt to mitigate the factors leading to ICUBB.


Subject(s)
Patient Readmission , Wounds and Injuries , Adult , Aged , Aged, 80 and over , Humans , Injury Severity Score , Intensive Care Units , Middle Aged , Retrospective Studies , Trauma Centers , Wounds and Injuries/therapy
6.
Am Surg ; 88(3): 419-423, 2022 Mar.
Article in English | MEDLINE | ID: mdl-34732095

ABSTRACT

INTRODUCTION: It is well known that trampolines can be a particular source of danger, especially in children. We sought to examine the profile of those patients with trampoline injuries. We hypothesized there would be certain injury patterns predicative of trampoline injuries. METHODS: All patients submitted to Pennsylvania Trauma Outcome Study database from 2016 to 2018 were analyzed. Trampoline injury was determined by ICD-10 activity code. Injury patterns in the form of abbreviated injury scale body regions were examined. Patient demographics and clinical variables were compared between those with trampoline injury vs those without. RESULTS: There were 107 patients with a trampoline injury. All of these patients were discharged alive and had a blunt mechanism of injury. The most common injury type was injury to the extremities (n=90,[84.1%]) with 54(50.5%) upper extremity injuries and 36(33.6%) lower extremity injuries. Ten (9.35%) patients had injury to the spine and five (4.67%) had head injury. Those with trampoline injuries were significantly younger (13y vs. 48.6y) and more likely to be white or of Hispanic ethnicity. Almost half of the patients injured (49.5%) were under 10 years. Patients with trampoline injuries had significantly lower Injury Severity Scores and significantly higher shock index. DISCUSSION: The majority of patients with trampoline injuries had injury to an extremity. These results help better understand the demographic, physiologic, and anatomic patterns surrounding trampoline injuries. Current government standards recommend that no child under age six should use a full-sized trampoline; however, based of this study, we advise that this age be increased to ten.


Subject(s)
Play and Playthings/injuries , Sports Equipment/statistics & numerical data , Wounds and Injuries/epidemiology , Wounds, Nonpenetrating/epidemiology , Abbreviated Injury Scale , Adolescent , Adult , Age Distribution , Arm Injuries/epidemiology , Child , Craniocerebral Trauma/epidemiology , Facial Injuries/epidemiology , Female , Humans , Leg Injuries/epidemiology , Male , Middle Aged , Pennsylvania/epidemiology , Sex Distribution , Spinal Injuries/epidemiology , Wounds and Injuries/etiology , Young Adult
7.
J Trauma Acute Care Surg ; 91(1): 206-211, 2021 07 01.
Article in English | MEDLINE | ID: mdl-34144564

ABSTRACT

INTRODUCTION: Benzodiazepines (BZDs) modulate peripheral γ-amino-butyric acid type A on macrophages causing immunomodulation. They inhibit proinflammatory cytokines increasing infections. Prior studies have also shown that infections can increase thrombotic complications. We sought to examine this relationship in trauma patients. We hypothesized that the presence of BZDs on admission urine drug screen (UDS) would increase rates of both complications. METHODS: All patients submitted to the Pennsylvania Trauma Outcome Study database from 2003 to 2018 were queried. Those with a positive UDS for BZDs were analyzed. Infectious complications were defined as pneumonia, urinary tract infection, sepsis, wound, and soft tissue infection, and thrombotic complications were defined as presence of pulmonary embolism or deep vein thrombosis. Logistic regressions controlling for demographic and injury covariates assessed the adjusted impact of BZDs on infectious and thrombotic complications. RESULTS: A total of 3,393 patients (2.08%) had infectious complications, and 3,048 (1.87%) had thrombotic complications. Furthermore, 33,260 patients (20.4%) had a positive UDS for BZDs on admission. Univariate analysis showed that those positive for BZDs had higher rates of infectious (3.33% vs. 1.76%, p < 0.001) and thrombotic (2.84% vs. 1.62%, p < 0.001) complications. Multivariate analysis revealed that BZDs significantly increased the odds of infectious and thrombotic complications. Patients who tested positive for BZDs and subsequently developed infection had increased odds (adjusted odds ratio, 1.65; p < 0.001) of developing thrombotic complications. CONCLUSION: Trauma patients with a positive UDS for BZDs had higher odds of both infectious and thrombotic complications. Moreover, odds of thrombotic complications were higher in those with infections. LEVEL OF EVIDENCE: Epidemiological, level III.


Subject(s)
Benzodiazepines/adverse effects , Infections/epidemiology , Thrombosis/epidemiology , Wounds and Injuries/complications , Adult , Aged , Benzodiazepines/urine , Databases, Factual , Female , Humans , Infections/urine , Logistic Models , Male , Middle Aged , Multivariate Analysis , Patient Admission , Pennsylvania/epidemiology , Risk Factors , Thrombosis/urine , Young Adult
8.
J Surg Res ; 264: 368-374, 2021 08.
Article in English | MEDLINE | ID: mdl-33848835

ABSTRACT

BACKGROUND: We sought to determine the secondary overtriage rate of pediatric trauma patients admitted to pediatric trauma centers. We hypothesized that pediatric secondary overtriage (POT) would constitute a large percentage of admissions to PTC. MATERIALS AND METHODS: The Pennsylvania Trauma Outcome Study database was retrospectively queried from 2003 to 2017 for pediatric (age ≤ 18 y) trauma patients transferred to accredited pediatric trauma centers in Pennsylvania (n = 6). Patients were stratified based on discharge within (early) and beyond (late) 24 h following admission. POT was defined as patients transferred to a PTC with an early discharge. Multilevel mixed-effects logistic regression model controlling for demographic and injury severity covariates were utilized to determine the adjusted impact of injury patterns on early discharge. RESULTS: A total of 37,653 patients met inclusion criteria. For transfers, POT compromised 18,752 (49.8%) patients. Compared to POT, non-POT were more severely injured (ISS: 10 versus 6;P < 0.001) and spent less time in the ED (Min: 181 versus 207;P < 0.001). In adjusted analysis, concussion, closed skull vault fractures, supracondylar humerus fractures, and consults to neurosurgery were associated with increased odds of POT. Overall, femur fracture, child abuse evaluation, and consults to plastic surgery, orthopedics, and ophthalmology were all associated with a decreased risk of being POT. CONCLUSIONS: POT comprises 49.8% of PTC transfer admissions in Pennsylvania's trauma system. Improving community resources for management of pediatric concussion and mild TBI could result in decreased rates of POT to PTCs. Developing better inter-facility transfer guidelines and increased education of adult TC and nontrauma center hospitals is needed to decrease POT. LEVEL OF EVIDENCE: Epidemiologic study, level III.


Subject(s)
Medical Overuse/statistics & numerical data , Patient Admission/statistics & numerical data , Trauma Centers/statistics & numerical data , Triage/statistics & numerical data , Wounds and Injuries/diagnosis , Adolescent , Age Factors , Child , Child, Preschool , Female , Humans , Infant , Infant, Newborn , Injury Severity Score , Male , Medical Overuse/prevention & control , Patient Admission/standards , Patient Discharge/standards , Patient Discharge/statistics & numerical data , Patient Transfer/standards , Patient Transfer/statistics & numerical data , Pennsylvania , Practice Guidelines as Topic , Retrospective Studies , Time Factors , Trauma Centers/standards , Trauma Severity Indices , Triage/organization & administration , Triage/standards , Wounds and Injuries/surgery
9.
J Trauma Acute Care Surg ; 91(1): 77-83, 2021 07 01.
Article in English | MEDLINE | ID: mdl-33605697

ABSTRACT

INTRODUCTION: The correct triage of trauma patients to trauma centers (TCs) is essential. We sought to determine the percentage of patients who were undertriaged within the Pennsylvania (PA) trauma system and spatially analyze areas of undertriage (UTR) in PA for all age groups: pediatric, adult, and geriatric. We hypothesized that there would be certain areas that had high UTR for all age groups. METHODS: From 2003 to 2015, all admissions from the Pennsylvania Trauma Systems Foundation registry and those meeting trauma criteria (International Classification of Diseases, Ninth Diseases: 800-959) from the Pennsylvania Health Care Cost Containment Council (PHC4) database were included. Admissions were divided into age groups: pediatric (<15 years), adult (15-64 years), and geriatric (≥65 years). All pediatric trauma cases were included from the Pennsylvania Trauma Systems Foundation and PHC4 registry, while only cases with Injury Severity Score of >9 were included in adult and geriatric age groups. Undertriage was defined as patients not admitted to level I/II adult TCs (n = 24), pediatric (n = 3), or adult and pediatric combined facility (n = 3) divided by the total number of patients from the PHC4 database. ArcGIS Desktop (version 10.7; ESRI, Redlands, CA) and GeoDa (version 1.14.0; CSDS, Chicago, IL) open source license were used for geospatial mapping of UTR with a spatial empirical Bayesian smoothed UTR by zip code tabulation area (ZCTA) and Stata (version 16.1; Stata Corp., College Station, TX) for statistical analyses. RESULTS: There were significant percentages of UTR for all age groups. One area of high UTR for all age groups had TCs and large nontrauma centers in close proximity. There were high rates of UTR for all ages in rural areas, specifically in the upper central regions of PA, with limited access to TCs. CONCLUSION: It appears there are two patterns leading to UTR. The first is in areas where TCs are in close proximity to large competing nontrauma centers, which may lead to inappropriate triage. The second has to do with lack of access to TCs. Geospatial mapping is a valuable tool that can be used to ascertain where trauma systems should focus scarce resources to decrease UTR. LEVEL OF EVIDENCE: Epidemiological, level III; Care management, level III.


Subject(s)
Registries , Trauma Centers/statistics & numerical data , Triage/organization & administration , Wounds and Injuries/diagnosis , Adolescent , Adult , Age Factors , Aged , Aged, 80 and over , Bayes Theorem , Child , Child, Preschool , Female , Geographic Mapping , Humans , Infant , Infant, Newborn , Injury Severity Score , Male , Middle Aged , Pennsylvania/epidemiology , Retrospective Studies , Wounds and Injuries/epidemiology , Young Adult
10.
J Trauma Acute Care Surg ; 90(3): 544-549, 2021 03 01.
Article in English | MEDLINE | ID: mdl-33492108

ABSTRACT

BACKGROUND: The beneficial effects of acute rehabilitation for trauma patients are well documented but can be limited because of insurance coverage. The Patient Protection and Affordable Care Act (ACA) went into effect on March 23, 2010. The ACA allowed patients who previously did not have insurance to be fully incorporated into the health system. We sought to analyze the likelihood of discharge to rehab for trauma patients before and after the implementation of the ACA. We hypothesized that there would be a higher rate of inpatient rehabilitation hospital (IRH) admission after the ACA was put into effect. METHODS: The Pennsylvania Trauma Outcome Study (PTOS) database was retrospectively queried from 2003 to 2017 for all trauma patients admitted to accredited trauma centers in Pennsylvania, who also had a functional status at discharge (FSD). Admission to an IRH was determined using discharge destination. Two categories were created to represent periods before and after ACA was implemented, 2003 to 2009 (pre-ACA) and 2010-2017 (post-ACA). A multilevel mixed-effects logistic regression model controlling for demographics, injury severity, and FSD assessed the adjusted impact of ACA implementation on IRH admissions. RESULTS: From the Pennsylvania Trauma Outcome Study query, 341,252 patients had FSD scores and of these patients, 47,522 (13.9%) were admitted to IRH. Patients who were severely injured were more likely to be admitted to IRH. Compared with FSD scores signifying complete independence at discharge, those with lower FSD had significantly increased odds of IRH admission. The odds of IRH admission post-ACA implementation significantly increased when compared with pre-ACA years (adjusted odds ratio, 1.14; 95% confidence interval, 1.12-1.17; p < 0.001; area under the receiver operating curve, 0.818). CONCLUSION: The implementation of the ACA significantly increased the likelihood of discharge to IRH for trauma patients. LEVEL OF EVIDENCE: Care management, level III.


Subject(s)
Hospitalization/statistics & numerical data , Insurance Coverage/statistics & numerical data , Patient Protection and Affordable Care Act , Rehabilitation Centers/statistics & numerical data , Wounds and Injuries/rehabilitation , Adult , Aged , Female , Humans , Male , Middle Aged , Outcome Assessment, Health Care , Pennsylvania , Young Adult
11.
Am Surg ; 87(12): 1965-1971, 2021 Dec.
Article in English | MEDLINE | ID: mdl-33382347

ABSTRACT

BACKGROUND: Given their mostly rural/suburban locations, level II trauma centers (TCs) may offer greater exposure to and experience in managing geriatric trauma patients. We hypothesized that geriatric patients would have improved outcomes at level II TCs compared to level I TCs. METHODS: The Pennsylvania Trauma Outcome Study (PTOS) database was retrospectively queried from 2003 to 2017 for geriatric (age ≥65 years) trauma patients admitted to level I and II TCs in Pennsylvania. Patient demographics, injury severity, and clinical outcomes were compared to assess differences in care between level I and II TCs. A multivariate logistic regression model assessed the adjusted impact of care at level I vs II TCs on mortality, complications, and functional status at discharge (FSD). The National Trauma Data Bank (NTDB) was retrospectively queried for geriatric (age ≥65 years) trauma admissions to state-accredited level I or level II TCs in 2013. RESULTS: 112 648 patients met inclusion criteria. The proportion of geriatric trauma patients across level I and level II TCs were determined to be 29.1% and 36.2% (P <.001), respectively. In adjusted analysis, there was no difference in mortality (adjusted odds ratio [AOR]: 1.13; P = .375), complications (AOR: 1.25; P = .080) or FSD (AOR: 1.09; P = .493) when comparing level I to level II TCs. Adjusted analysis from the NTDB (n = 144 622) also found that mortality was not associated with TC level (AOR: 1.04; P = .182). DISCUSSION: Level I and level II TCs had similar rates of mortality, complications, and functional outcomes despite a higher proportion (but lower absolute number) of geriatric patients being admitted to level II TCs. Future consideration for location of centers of excellence in geriatric trauma should include both level I and II TCs.


Subject(s)
Outcome Assessment, Health Care , Trauma Centers/standards , Wounds and Injuries/mortality , Aged , Humans , Injury Severity Score , Logistic Models , Pennsylvania/epidemiology , Retrospective Studies , Rural Population , Suburban Population , Wounds and Injuries/complications , Wounds and Injuries/therapy
12.
Am Surg ; 87(1): 15-20, 2021 Jan.
Article in English | MEDLINE | ID: mdl-32902331

ABSTRACT

BACKGROUND: Massive transfusion protocols (MTP) are a routine component of any major trauma center's armamentarium in the management of exsanguinating hemorrhages. Little is known about the potential complications of those that survive a MTP. We sought to determine the incidence of venous thromboembolism (VTE) following MTP. We hypothesized that MTP would be associated with a higher risk of VTE when compared with a risk-adjusted control population without MTP. METHODS: The Pennsylvania Trauma Outcome Study database was retrospectively queried from 2015 to 2018 for trauma patients who developed VTE and survived until discharge at accredited trauma centers in Pennsylvania. Patient demographics, injury severity, and clinical outcomes were compared to assess differences in VTE development between MTP and non-MTP patients. A multivariate logistic regression model assessed the adjusted impact of MTP on VTE development. RESULTS: 176 010 patients survived until discharge, meeting inclusion criteria. Of those, 1667 developed a VTE (pulmonary embolism [PE]: 662 [0.4%]; deep vein thrombosis [DVT]: 1142 [0.6%]; PE and DVT: 137 [0.1%]). 1268 patients (0.7%) received MTP and, of this subset of patients, 171 (13.5%) developed a VTE during admission. In adjusted analysis, patients who had a MTP and survived until discharge had a higher odds of developing a VTE (adjusted odds ratio: 2.62; 95% CI: 2.13-3.24; P < .001). DISCUSSION: MTP is a harbinger for higher risk of VTE in those patients who survive. This may, in part, be related to the overcorrection of coagulation deficits encountered in the hemorrhagic event. A high index of suspicion for the development of VTE as well as aggressive VTE prophylaxis is warranted in those patients who survive MTP.


Subject(s)
Blood Transfusion , Exsanguination/therapy , Venous Thromboembolism/epidemiology , Wounds and Injuries/therapy , Adult , Clinical Protocols , Exsanguination/mortality , Female , Humans , Incidence , Logistic Models , Male , Middle Aged , Pennsylvania , Retrospective Studies , Trauma Centers , Wounds and Injuries/complications , Wounds and Injuries/mortality
13.
Am Surg ; 86(7): 837-840, 2020 Jul.
Article in English | MEDLINE | ID: mdl-32705882

ABSTRACT

BACKGROUND: Acute care surgery patients are often unfasted at the time of surgery, presenting a unique opportunity to study the effects of fasting on the risk of pulmonary aspiration. We aimed to determine the relative risk of aspiration in patients who were fasted at the time of surgery according to guidelines versus those in an unfasted state. METHODS: A retrospective chart review of 100 patients who underwent appendectomy (n = 76) or exploratory laparotomy (n = 24) was conducted at a single institution in 2016-2017. Using the American Society of Anesthesiologists (ASA) Practice Guidelines for Preoperative Fasting, patients were stratified into study and control groups according to whether they were unfasted (nothing by mouth for <8 hours prior to surgery) or fasted (nothing by mouth for >8 hours prior to surgery). Data controlled for patients' age, sex, body mass index (BMI), most recent hemoglobin A1c, presence of gastroesophageal reflux disease (GERD), and presence of hiatal hernia. RESULTS: Of the 76 patients who underwent appendectomy, 15% were unfasted with a total of 0 aspiration events (P < .001). Of the 24 patients who underwent exploratory laparotomy, 42% were unfasted with a total of 0 aspiration events (P < .001). This yields a relative risk of pulmonary aspiration of 1.0 (absolute risk of 0) in both the study and control groups. DISCUSSION: In an acute care surgery population including patients who were not fasted according to guidelines, there was no increase in the risk of pulmonary aspiration. LEVEL OF EVIDENCE: Epidemiological study; Level III.


Subject(s)
Appendectomy/adverse effects , Critical Care , Fasting , Laparotomy/adverse effects , Pneumonia, Aspiration/epidemiology , Postoperative Complications/epidemiology , Female , Humans , Male , Preoperative Care , Retrospective Studies , Risk
14.
Am Surg ; 86(5): 486-492, 2020 May.
Article in English | MEDLINE | ID: mdl-32684040

ABSTRACT

BACKGROUND: Extended hospital length of stay (LOS) is widely associated with significant healthcare costs. Since LOS is a known surrogate for cost, we sought to evaluate outliers. We hypothesized that particular characteristics are likely predictive of trauma high resource consumers (THRC) and can be used to more effectively manage care of this population. METHODS: The Pennsylvania Trauma Outcome Study database was retrospectively queried from 2003-2017 for all adult (age ≥15) trauma patients admitted to accredited trauma centers in Pennsylvania. THRC were defined as patients with hospital LOS two standard deviations above the population mean or ≥22 days (p<0.05). Patient demographics, comorbid conditions and clinical variables were compared between THRC and non-THRC to identify potential predictor variables. A multilevel mixed-effects logistic regression model controlling for age, gender, injury severity, admission Glasgow coma score, systolic blood pressure, and injury year assessed the adjusted impact of clinical factors in predicting THRC status. The National Trauma Data Bank (NTDB) was retrospectively queried from 2014-2016 for all adult (age ≥15) trauma patients admitted to state-accredited trauma centers and likewise were assessed for factors associated with THRC. RESULTS: A total of 465,601 patients met inclusion criteria [THRC: 16,818 (3.6%); non-THRC 448,783 (96.4%)]. Compared to non-THRC counterparts, THRC patients were significantly more severely injured (median ISS: 9 vs. 22, p<0.001). In adjusted analysis, gunshot wound (GSW) to the abdomen, undergoing major surgery and reintubation along with injury to the spine, upper or lower extremities were significantly associated with THRC. From the NTDB, 2 323 945 patients met inclusion criteria. In adjusted analysis, GSW to the abdomen was significantly associated with THRC. Penetrating injury overall was associated with decreased risk of being a THRC in the NTDB dataset. Those who had either GSW to abdomen, surgery, or reintubation required significantly longer LOS (p<0.001). CONCLUSIONS: Reintubation, major surgery, gunshot wound to abdomen, along with injury to the spine, upper or lower extremities are all strongly predictive of THRC. Understanding the profile of the THRC will allow clinicians and case management to proactively put processes in place to streamline care and potentially reduce costs and LOS.


Subject(s)
Length of Stay/statistics & numerical data , Wounds and Injuries , Adolescent , Adult , Aged , Aged, 80 and over , Female , Forecasting , Health Resources/statistics & numerical data , Humans , Male , Middle Aged , Retrospective Studies , Trauma Centers , Wounds and Injuries/therapy , Young Adult
15.
J Pediatr Surg ; 55(12): 2746-2751, 2020 Dec.
Article in English | MEDLINE | ID: mdl-32595036

ABSTRACT

BACKGROUND: The social vulnerability index (SVI) is used to assess resilience to external influences that may affect human health. Social vulnerability has been noted to be a barrier to healthcare access for pediatric patients. We hypothesized that Pennsylvania (PA) pediatric trauma patients high on the social vulnerability index would have significantly lower rates of rehab admission following admission to a hospital for traumatic injury. METHODS: The SVI was determined for each PA zip code area utilizing the census tract based 2014 SVI provided by the CDC along with a weighted crosswalk between census tracts and zip code areas using the Housing and Urban Development zip code crosswalk files. The rate of the uninsured population was extracted from the CDC SVI files in addition to other US Census variables based upon estimates from the 2014 American Community Survey (ACS). We also included the individual primary payer status of each subject. Pediatric (age <15 years) trauma admissions with in-hospital mortality excluded, were extracted from the PA Healthcare Cost Containment Council (PHC4) for all hospital admissions for the period of 2003-2015 (n = 63,545). Complete case analysis was conducted based upon the final model providing a sample of 52,794. Cases were coded as rehab patients based upon discharge status (n = 603; 1.1%). A multi-level logistic model was used to determine if subjects had a higher odds of being discharged to rehab based on SVI, undertriage rates of their zip code area of residence and their own primary payer status; this was adjusted for age, multi-system injury and a head, chest or abdomen injury with abbreviate injury scale (AIS) severity > = 3. RESULTS: SVI and undertriage rates of the zip code areas of residence were not significantly associated with admission to rehab. The individual primary payer status of the subject was significantly associated with admission to rehab (OR 95%CI vs. self/uninsured; Medicaid 3.65 1.84-7.24; Commercial = 3.09 1.56-6.11; other/unknown = 2.85 1.02-7.93). Admission to rehab was also significantly associated with age, injury severity (ISS), head or chest injury with AIS scores > = 3, year of admission and hospital type. CONCLUSION: Individual patient level factors (primary payer of patient) may be associated with the odds of rehab admission rather than neighborhood factors. LEVEL OF EVIDENCE: Epidemiologic: Level III.


Subject(s)
Multiple Trauma , Trauma Centers , Adolescent , Child , Humans , Injury Severity Score , Medically Uninsured , Pennsylvania/epidemiology , Residence Characteristics , United States
16.
J Trauma Acute Care Surg ; 88(5): 704-709, 2020 05.
Article in English | MEDLINE | ID: mdl-32320177

ABSTRACT

BACKGROUND: While issues regarding triage of severely injured trauma patients are well publicized, little information exists concerning the difference between triage rates for patients transported by advanced life support (ALS) and basic life support (BLS). We sought to analyze statewide trends in undertriage (UT) and overtriage (OT) to address this question, hypothesizing that there would be a difference between the UT and OT rates for ALS compared with BLS over a 13-year period. METHODS: All patients submitted to Pennsylvania Trauma Outcomes Study database from 2003 to 2015 were analyzed. Undertriage was defined as not calling a trauma alert for patients with an Injury Severity Score (ISS) of 16 or greater. Overtriage was defined as calling a trauma alert for patients with an ISS of 9 or less. A logistic regression was used to assess mortality between triage groups in ALS and BLS. A multinomial logistic regression assessed the adjusted impact of ALS versus BLS transport on UT and OT versus normal triage while controlling for age, sex, Glasgow Coma Scale, systolic blood pressure (SBP), pulse, Shock Index and injury year. RESULTS: A total of 462,830 patients met inclusion criteria, of which 115,825 had an ISS of 16 or greater and 257,855 had an ISS of 9 or less. Both ALS and BLS had significantly increased mortality when patients were undertriaged compared with the reference group. Multivariate analysis in the form of a multinomial logistic regression revealed that patients transported by ALS had a decreased adjusted rate of undertriage (relative risk ratio, 0.92; 95% confidence interval, 0.87-0.97; p = 0.003) and an increased adjusted rate of OT (relative risk ratio, 1.59; 95% confidence interval, 1.54-1.64; p < 0.001) compared with patients transported by BLS. CONCLUSION: Compared with their BLS counterparts, while UT is significantly lower, OT is substantially higher in ALS-further increasing the high levels of resource (over)utilization in trauma patients. Undertriage in both ALS and BLS are associated with increased mortality rates. Additional education, especially in the BLS provider, on identifying the major trauma victim may be warranted based on the results of this study. LEVEL OF EVIDENCE: Epidemiological, Level III.


Subject(s)
Advanced Trauma Life Support Care/statistics & numerical data , Health Services Misuse/statistics & numerical data , Transportation of Patients/statistics & numerical data , Triage/statistics & numerical data , Wounds and Injuries/diagnosis , Adult , Aged , Aged, 80 and over , Female , Humans , Injury Severity Score , Male , Middle Aged , Pennsylvania/epidemiology , Registries/statistics & numerical data , Retrospective Studies , Trauma Centers/statistics & numerical data , Wounds and Injuries/mortality
17.
J Trauma Acute Care Surg ; 88(4): 486-490, 2020 04.
Article in English | MEDLINE | ID: mdl-32213787

ABSTRACT

BACKGROUND: With the recent birth of the Pennsylvania TQIP Collaborative, statewide data identified unplanned admissions to the intensive care unit (ICU) as an overarching issue plaguing the state trauma community. To better understand the impact of this unique population, we sought to determine the effect of unplanned ICU admission/readmission on mortality to identify potential predictors of this population. We hypothesized that ICU bounceback (ICUBB) patients would experience increased mortality compared with non-ICUBB controls and would likely be associated with specific patterns of complications. METHODS: The Pennsylvania Trauma Outcome Study database was retrospectively queried from 2012 to 2015 for all ICU admissions. Unadjusted mortality rates were compared between ICUBB and non-ICUBB counterparts. Multilevel mixed-effects logistic regression models assessed the adjusted impact of ICUBB on mortality and the adjusted predictive impact of 8 complications on ICUBB. RESULTS: A total of 58,013 ICU admissions were identified from 2012 to 2015. From these, 53,715 survived their ICU index admission. The ICUBB rate was determined to be 3.82% (2,054/53,715). Compared with the non-ICUBB population, ICUBB patients had a significantly higher mortality rate (12% vs. 8%; p < 0.001). In adjusted analysis, ICUBB was associated with a 70% increased odds ratio for mortality (adjusted odds ratio, 1.70; 95% confidence interval, 1.44-2.00; p < 0.001). Adjusted analysis of predictive variables revealed unplanned intubation, sepsis, and pulmonary embolism as the strongest predictors of ICUBB. CONCLUSION: Intensive care unit bouncebacks are associated with worse outcomes and are disproportionately burdened by respiratory complications. These findings emphasize the importance of the TQIP Collaborative in identifying statewide issues in need of performance improvement within mature trauma systems. LEVEL OF EVIDENCE: Epidemiological study, level III.


Subject(s)
Intensive Care Units/statistics & numerical data , Outcome Assessment, Health Care/statistics & numerical data , Respiratory Tract Diseases/epidemiology , Trauma Centers/statistics & numerical data , Wounds and Injuries/therapy , Adult , Aged , Aged, 80 and over , Female , Hospital Mortality , Humans , Injury Severity Score , Male , Middle Aged , Patient Readmission/statistics & numerical data , Pennsylvania/epidemiology , Respiratory Tract Diseases/etiology , Respiratory Tract Diseases/therapy , Retrospective Studies , Risk Factors , Wounds and Injuries/complications , Wounds and Injuries/diagnosis , Wounds and Injuries/mortality
18.
J Trauma Acute Care Surg ; 89(1): 192-198, 2020 07.
Article in English | MEDLINE | ID: mdl-32118822

ABSTRACT

BACKGROUND: Those older than 65 years represent the fastest growing demographic in the United States. As such, their care has been emphasized by trauma entities such as the American College of Surgeons Committee on Trauma. Unfortunately, much of that focus has been of their care once they reach the hospital with little attention on the access of geriatric trauma patients to trauma centers (TCs). We sought to determine the rate of geriatric undertriage (UT) to TCs within a mature trauma system and hypothesized that there would be variation and clustering of the geriatric undertriage rate (UTR) within a mature trauma system because of the admission of geriatric trauma patient to nontrauma centers (NTCs). METHODS: From 2003 to 2015, all geriatric (age >65 years) admissions with an Injury Severity Score of greater than 9 from the Pennsylvania Trauma Systems Foundation (PTSF) registry and those meeting trauma criteria (International Classification of Diseases, Ninth Revision: 800-959) from the Pennsylvania Health Care Cost Containment Council (PHC4) database were included. Undertriage rate was defined as patients not admitted to TCs (n = 27) divided by the total number of patients as from the PHC4 database. The PHC4 contains all inpatient admissions within Pennsylvania (PA), while PTSF reports admissions to PA TCs. The zip code of residence was used to aggregate calculations of UTR as well as other aggregate patient and census demographics, and UTR was categorized into lower, middle box, and upper quartiles. ArcGIS Desktop: Version 10.7, ESRI, Redlands, CA and GeoDa: Version 1.14.0, Open source license were used for geospatial mapping of UT with a spatial empirical Bayesian smoothed UTR, and Stata: Version 16.1, Stata Corp., College Station TX was used for statistical analyses. RESULTS: Pennsylvania Trauma Systems Foundation had 58,336 cases, while PHC4 had 111,626 that met the inclusion criteria, resulting in a median (Q1-Q3) smoothed UTR of 50.5% (38.2-60.1%) across PA zip code tabulation areas. Geospatial mapping reveals significant clusters of UT regions with high UTR in some of the rural regions with limited access to a TC. The lowest quartile UTR regions tended to have higher population density relative to the middle or upper quartile UTR regions. At the patient level, the lowest UTR regions had more racial and ethnic diversity, a higher injury severity, and higher rates of treatment at a TC. Undertriage rate regions that were closer to NTCs had a higher odds of being in the upper UTR quartile; 4.48 (2.52-7.99) for NTC with less than 200 beds and 8.53 (4.70-15.47) for NTC with 200 beds or greater compared with zip code tabulation areas with a TC as the closest hospital. CONCLUSION: There are significant clusters of geriatric UT within a mature trauma system. Increased emphasis needs to focus prehospital on identifying the severely injured geriatric patient including specific geriatric triage protocols. LEVEL OF EVIDENCE: Epidemiological, Level III.


Subject(s)
Healthcare Disparities/statistics & numerical data , Trauma Centers/standards , Triage/standards , Aged , Databases, Factual , Female , Humans , Injury Severity Score , Male , Pennsylvania , Registries , Retrospective Studies , United States , Wounds and Injuries/mortality , Wounds and Injuries/therapy
19.
J Trauma Acute Care Surg ; 88(6): 725-733, 2020 06.
Article in English | MEDLINE | ID: mdl-32102042

ABSTRACT

BACKGROUND: While there is little debate that pediatric trauma centers (PTC) are uniquely equipped to manage pediatric trauma patients, the extent to which adolescents benefit from treatment there remains controversial. We sought to elucidate differences in management approach and outcome between PTC and adult trauma centers (ATC) for the adolescent penetrating trauma population. We hypothesized that improved mortality would be observed at ATC for this subset of patients. METHODS: Adolescent patients (age, 15-18 years), presenting to Pennsylvania-accredited trauma centers between 2003 and 2017 with penetrating injury, were queried from the Pennsylvania Trauma Outcome Study database. Dead on arrival, transfer patients, and those admitted to a Level III or Level IV trauma center were excluded from analysis. Patient length of stay, number of complications, surgical intervention, and mortality were compared between ATC and PTC. Multilevel mixed effects logistic regression models with trauma center as the clustering variable were used to assess the impact of center type (ATC/PTC) on management approach and mortality adjusted for appropriate covariates. RESULTS: A total of 2,630 adolescent patients met inclusion criteria (PTC: n = 428 [16.3%]; ATC: n = 2,202 [83.7%]). Pediatric trauma centers had a lower adjusted odds of mortality (adjusted odds ratio [AOR], 0.35; 95% confidence interval [CI], 0.17-0.74; p = 0.006) and a lower adjusted odds of surgery (AOR, 0.67; 95% CI, 0.0.48-0.93; p = 0.016) than their ATC counterparts. There were no differences in complication rates (AOR, 0.94; 95% CI, 0.57-1.55; p = 0.793) or length of stay longer than 4 days (AOR, 0.95; 95% CI, 0.61-1.48; p = 0.812) between the PTCs and ATCs. There were also differences in penetrating injury type between PTC and ATC. CONCLUSION: The adolescent penetrating trauma patient population treated at PTC had less surgery performed with improved mortality compared with ATC. LEVEL OF EVIDENCE: Therapeutic, Level IV.


Subject(s)
Hospitals, Pediatric/statistics & numerical data , Outcome and Process Assessment, Health Care/statistics & numerical data , Surgical Procedures, Operative/statistics & numerical data , Trauma Centers/statistics & numerical data , Wounds, Penetrating/surgery , Adolescent , Databases, Factual/statistics & numerical data , Female , Humans , Injury Severity Score , Length of Stay , Male , Pennsylvania/epidemiology , Retrospective Studies , Surgical Procedures, Operative/methods , Survival Analysis , Wounds, Penetrating/complications , Wounds, Penetrating/diagnosis , Wounds, Penetrating/mortality
20.
J Intensive Care Med ; 35(10): 936-942, 2020 Oct.
Article in English | MEDLINE | ID: mdl-31916876

ABSTRACT

In recent years, there has been an emphasis on evaluating the outcomes of patients who have experienced an intensive care unit (ICU) readmission. This may in part be due to the Patient Protection and Affordable Care Act's Hospital Readmission Reduction Program which imposes financial sanctions on hospitals who have excessive readmission rates, informally known as bounceback rates. The financial cost associated with avoidable bounceback combined with the potentially preventable expenses can result in unnecessary financial strain. Within the hospital readmissions, there is a subset pertaining to unplanned readmission to the ICU. Although there have been studies regarding ICU bounceback, there are limited studies regarding ICU bounceback of trauma patients and even fewer proven strategies. Although many studies have concluded that respiratory complications were the most common factor influencing ICU readmissions, there is inconclusive evidence in terms of a broadly applicable strategy that would facilitate management of these patients. The purpose of this review is to highlight the outcomes of patients readmitted to the ICU and to provide an overview of possible strategies to aid in decreasing ICU readmission rates.


Subject(s)
Critical Care Outcomes , Intensive Care Units/statistics & numerical data , Patient Readmission/statistics & numerical data , Respiratory Insufficiency/therapy , Wounds and Injuries/therapy , Age Factors , Health Care Costs/statistics & numerical data , Humans , Patient Protection and Affordable Care Act , Program Evaluation , Recurrence , Respiratory Insufficiency/etiology , Risk Factors , United States/epidemiology , Wounds and Injuries/complications
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