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Hemorrhagic Shock in Orthopedic Fractures

Incidence and Predictors of Hemorrhagic Shock in Patients With Long Bone Fractures Presenting to the Emergency Department

Status
Not yet recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT07695129
Enrollment
250
Registered
2026-07-10
Start date
2026-07-25
Completion date
2027-01-10
Last updated
2026-07-10

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

Conditions

Hemorrhagic Shock, Long Bone Fractures, Pelvic Fractures

Brief summary

The goal of this observational study is to learn about the incidence and predators of hemorrhagic shock in patients with Long bone and pelvic fractures .The main question it aims to answer is: In which bone fracture the prediction and detection of hemorrhagic shock should be in consideration for emergency management in polytrauma patients

Detailed description

Trauma remains a leading cause of mortality worldwide, particularly among young adults, with hemorrhage accounting for a significant proportion of early preventable deaths . Hemorrhagic shock is a form of hypovolemic shock resulting from acute blood loss leading to inadequate tissue perfusion and oxygen delivery to meet cellular metabolic demands. hemorrhagic shock occurs when systolic blood pressure (SBP) \< 90 mmHg , Shock index ≥ 0.9 , serum lactate level ≥ 2 mmol/L or need for massive transfusion . hemorrhagic shock is a critical complication of traumatic injuries associated with high morbidity and mortality if not promptly recognized and managed. Among traumatic injuries, fractures of long bones and the pelvis are particularly important due to their potential for substantial internal blood loss. The Shock Index is calculated as: Shock Index (SI) = Heart Rate (HR) ÷ Systolic Blood Pressure (SBP) Normal SI: 0.5 - 0.7 Early concern SI: ≥ 0.9 Indicative of hemorrhagic shock SI ≥ 1.0 . Long bone fractures, especially femoral fractures, can result in significant hemorrhage due to disruption of intramedullary vessels and surrounding soft tissues \[4\]. When multiple long bones are involved, the cumulative blood loss may be considerable and can contribute to the development of hypovolemic shock. Pelvic fractures, however, are even more concerning, as they are often associated with high-energy trauma and complex vascular injuries. The pelvis contains extensive venous plexuses and major arterial branches, making it a major source of life-threatening hemorrhage. It is estimated that venous bleeding accounts for approximately 80% of hemorrhage in pelvic fractures, primarily from the presacral and prevesical venous plexuses . Patients with pelvic fractures frequently present with hemodynamic instability and may rapidly deteriorate into hemorrhagic shock. These injuries are associated with significant mortality, particularly when shock is present. Studies have shown that pelvic fractures complicated by hemorrhagic shock carry mortality rates of up to 30%, highlighting their severity and the need for early recognition and intervention . Furthermore, pelvic injuries are strongly associated with trauma-induced coagulopathy, which further exacerbates bleeding and worsens outcomes . Early identification of patients at risk of hemorrhagic shock is crucial in the emergency department (ED) setting. Several clinical and laboratory parameters have been investigated as potential predictors. Variables such as shock index, lactate level, base deficit, and Glasgow Coma Scale (GCS) have been shown to correlate with severity and outcomes in trauma patients . In patients with pelvic fractures, factors such as elevated lactate, hypothermia, and unstable fracture patterns (e.g., type B and C injuries) have been identified as predictors of significant hemorrhage and the need for intervention . Additionally, parameters including shock index, mean arterial pressure, lactate, and fibrinogen levels have demonstrated strong predictive value for mortality in patients with pelvic fractures complicated by shock .

Interventions

None listed

Sponsors

Sohag University
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to 65 Years
Healthy volunteers
No

Inclusion criteria

* Patients aged between 18 and 65 years * Presentation with radiologically confirmed: * Long bone fractures (femur, tibia, fibula, humerus, radius, ulna) and/or * Pelvic fractures * Presentation within 24 hours of injury

Exclusion criteria

* Penetrating trauma to the abdomen and/or the chest. * Known bleeding disorders. * Patients on anticoagulants. * Major external hemorrhage requiring immediate surgical control * Isolated minor fractures (e.g., bones of hands or feet). * Dead on arrival

Design outcomes

Primary

MeasureTime frameDescription
Incidence of hemorrhagic shock1 hour ,2 hours , 4 hours and 6 hoursShock index ≥ .9 Systolic blood pressure measurement \< 90mmHg

Secondary

MeasureTime frame
Blood transfusion requirements1st hour

Countries

Egypt

Contacts

CONTACTYahia Z Elsayed, Emergency Medicine resident
Yehia.Hafez@med.sohag.edu.eg+20 01158658683
CONTACTMohamed Y Mohamed, MD in orthopedic sugery
mohamedyounis888@hotmail.com+20 01028900884
PRINCIPAL_INVESTIGATORYahia Z Elsayed, Emergency Medicine resident

Sohag University

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Jul 11, 2026