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Impact of Traumatic Brain Injury on Hemodynamic Instability in Patients With Blunt Bowel and Mesenteric Injuries

Impact of Traumatic Brain Injury on Concomitant Blunt Hollow Organ Injuries: A Retrospective Analysis of a Cohort of Blunt Bowel Mesenteric Injuries

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT06942091
Enrollment
169
Registered
2025-04-24
Start date
2009-01-01
Completion date
2023-12-31
Last updated
2025-04-24

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Blunt Abdominal Trauma, Hemodynamic Instability, Massive Transfusion, Shock, Traumatic Brain Injury

Brief summary

This retrospective cohort study aims to evaluate the impact of traumatic brain injury (TBI) on hemodynamic status in trauma patients with surgically confirmed blunt bowel and mesenteric injuries (BBMI). A total of 169 adult patients treated at a Level I trauma center between 2009 and 2023 were analyzed and stratified based on the presence or absence of concomitant TBI. Clinical parameters such as shock, massive transfusion, transfusion requirements, morbidity, and mortality were compared. The study investigates whether TBI is an independent risk factor for acute hemodynamic instability in BBMI patients, with the goal of improving trauma care strategies and understanding the systemic effects of TBI, particularly through the lens of the brain-gut axis.

Detailed description

Patients Population We retrospectively reviewed patients with BBMI admitted to emergency department (ED) of Kaohsiung Chang Gung Memorial Hospital during the 15-year period January 1, 2009 to December 31, 2023 from the electronic medical record. Adult patients (age \> 16 years of age) receiving therapeutic laparotomy for proven of BBMI were included in the study. Patient with isolated stomach, duodenal, or rectal injuries was excluded. Among these enrolled patients receiving brain computed tomography (CT) obtained at the ED, showing any type of intracerebral hemorrhage was defined as TBI (AIS ≥3). Patients were grouped according to the presence of intracerebral hemorrhage in the positive TBI versus negative TBI group. The two groups were compared, and associated injuries were assessed for their ability to predict the risk factors of presence of shock and receiving massive transfusion (MT), indicating of hemodynamic instability. Study settings All trauma patients were treated according to the Advanced Trauma Life Support upon arrival to ED. Injury severity was calculated as Injury Severity Score (ISS) and New Injury Severity Score (NISS) based on the Abbreviated Injury Score (AIS) score\[19\]. Trauma Score Injury Severity Score (TRISS) was used for prediction of prognosis. Laboratory data including leukocyte and hemoglobin were measured from samples obtained at ED. The demographic data, injury mechanism, vital signs, and Glasgow Coma Scores up on arrival to ED were recorded. Regarding the clinical presentation, the procedures including receiving endotracheal tube intubation, and tube thoracostomy at the ED, and presence of shock episode which was defined as systolic blood pressure \< 90 mmHg were recorded. The incidence of need of transfusion at ED and MT defined as receiving more than 10 units packed red blood cells (RBC) within 24 hours was recorded. The amount of transfused Pack RBC or fresh frozen plasma (FFP) at the ED, operative room (OR) or within the initial 24 hours was recorded as well. Operative findings including the incidence of isolated small bowel injury (defined as only small bowel injury including ischemia, rupture, serosa injury, or hematoma), isolated colon injury (defined as only colon injury), isolated mesentery injury (defined as only mesenteric injury), combined injury (defined as either small bowel or colon injury concomitant with mesenteric injury), and operative blood loss were recorded. The outcomes including morbidity, mortality regarding 24 hour mortality, bowel-related or exsanguinations related, and length of stay regarding intensive care unit (ICU) and hospitalization were recorded. The development of post injury complications including sepsis, pneumonia, septic shock, unplanned ventilator, intraabdominal abscess, postoperative leakage, coagulopathy, acute renal failure, acidosis, urinary tract infection, stroke, pulmonary embolism, acute respiratory distress syndrome, pleural effusion, enterocutaneous fistula, wound infection, abdomen compartment syndrome, tracheostomy, extracorporeal membrane oxygenation (ECMO), return to the operating room, and hemodialysis, intestinal obstruction was registered and defined as morbidity. Statistics The data were analyzed using IBM SPSS Statistics for Windows, version 20.0 (IBM Corp., Armonk, NY, USA). Continuous variables were reported as medians and interquartile ranges. Considering the potential impact of a small sample size on our statistical analysis, we treated the data as non-normally distributed. The Mann-Whitney U test was therefore employed to analyze these continuous variables. We used logistic regression to evaluate the independent impact of TBI on presence of shock and receiving MT in BBMI patients while controlling for age, sex and associated injuries. Given that patients had varying degrees and different associated injuries, we considered the associated injuries as the possible confounders instead of the ISS due to its nonspecific nature and inability to differentiate injury patterns. To analyze the temporal relationship of TBI between morbidity and mortality, Kaplan-Meier analysis was utilized, and the log-rank test was applied to compare the morbidity and mortality curves between the TBI(+) and TBI(-) groups. The threshold for statistical significance was set at p \< 0.05.

Interventions

OTHERTraumatic Brain Injury (TBI)

Presence of TBI identified by intracerebral hemorrhage on brain computed tomography (CT) at emergency department; not actively assigned by investigators but used to stratify comparison groups.

Sponsors

Chang Gung Memorial Hospital
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
RETROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
16 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Adults aged \>16 years * Patients with surgically confirmed blunt bowel and/or mesenteric injuries (BBMI) * Underwent therapeutic laparotomy * Complete emergency department and operative records available

Exclusion criteria

* Isolated gastric, duodenal, or rectal injuries * Pediatric patients (\<16 years) * Incomplete or missing clinical records * Penetrating trauma * Patients who did not undergo surgery

Design outcomes

Primary

MeasureTime frameDescription
Presence of ShockAt Emergency Department (initial presentation)Proportion of BBMI patients who experienced shock, defined as systolic blood pressure \< 90 mmHg at the emergency department.
Need for Massive TransfusionWithin 24 hours of hospital admissionProportion of BBMI patients who received more than 10 units of packed red blood cells within 24 hours after arrival.

Secondary

MeasureTime frameDescription
Amount of Transfusion AdministeredWithin 24 hours of hospital admissionTotal number of packed red blood cell (PRBC) and fresh frozen plasma (FFP) units transfused within 24 hours.
In-hospital MorbidityThrough hospital discharge, a median length of 17 daysProportion of patients developing at least one complication such as pneumonia, coagulopathy, acidosis, urinary tract infection, tracheostomy, etc.
In-hospital MortalityUp to hospital discharge, a median length of 17 daysAll-cause mortality occurring during the index hospitalization.
ICU Length of StayThrough ICU stay during index hospitalization, a median length of 3 daysDuration of stay in the intensive care unit (ICU) in days.

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026