Related Experiment Video
Updated: Jan 20, 2026

Systems Analysis of the Neuroinflammatory and Hemodynamic Response to Traumatic Brain Injury
Published on: May 27, 2022
Early cardiovascular function and associated hemodynamics in adults with isolated moderate-severe traumatic brain
Nophanan Chaikittisilpa1, Monica S Vavilala2, Abhijit V Lele2
1Department of Anesthesiology, Siriraj Hospital, Mahidol University, Bangkok, Thailand; Harborview Injury Prevention and Research Center, University of Washington, Seattle, WA, United States.
Background:
While cardiac dysfunction has been described following traumatic brain injury (TBI), its association with systemic and cerebral hemodynamics is not known. We examined the contemporaneous relationship between early cardiac function with systemic and cerebral hemodynamic parameters after moderate-severe TBI.
Methods:
Bedside transthoracic echocardiography (TTE) and transcranial Doppler (TCD) ultrasonography were performed within 24 h in patients > 18 years with isolated moderate-severe TBI. Systemic hemodynamic parameters were quantified using routine monitoring [heart rate and mean arterial pressures (MAP)] and calculation from echocardiographic data [stroke volume index (SVI), cardiac index (CI), and systemic vascular resistance index (SVRI)]. Systolic dysfunction was defined using TTE as global longitudinal strain (GLS) > -16%. Mean middle cerebral artery velocity (FVm) was the measure of cerebral hemodynamics and quantified using TCD.
Results:
Among 15 patients [mean age 43 ± 13 years, GCS 5 ± 3, 73% male], 15 TTE and 15 TCD exams were performed simultaneously. Five (33%) patients had systolic dysfunction, with significantly worse GLS (median [IQR] -12.1% [-14.1, -12] vs. -19.1% [-19.9, -17.7], p = 0.004). Median (IQR) MAP was 97 (89, 107) mmHg, SVI (29.0 [20.5, 31.0] mL m-2), and CI (2.83 [2.05, 3.10] L/min m-2) were low to normal, while SVRI (2704 dyne sec/cm5 m-2 [2210, 4084]) was normal to high. None of the patients had abnormal TCDs. Higher GLS (reduced systolic function) was associated with lower SVI (r2 = 0.274, p = 0.03) but not other parameters.
Conclusion:
Systemic hemodynamic parameters were consistent with an early catecholamine-excess state. While reduced systolic function was associated with lower SVI, there was no relationship with reduced cerebral perfusion, possibly due to normal MAP.
Related Concept Videos
07:21Systems Analysis of the Neuroinflammatory and Hemodynamic Response to Traumatic Brain Injury
03:56Assessing Dominant-Submissive Behavior in Adult Rats Following Traumatic Brain Injury
05:30Controlled Cortical Impact Model for Traumatic Brain Injury
Using Diffusion Tensor Imaging in Traumatic Brain Injury
Traditional brain imaging techniques using MRI are very good at visualizing the gross structures of the brain. A structural brain image made with MRI provides high contrast of the borders between gray and white matter, and information about the size and shape of brain structures. However, these images do not detail the underlying structure and integrity of white matter networks in the brain, which...
05:53A Metric Test for Assessing Spatial Working Memory in Adult Rats Following Traumatic Brain Injury
03:30Inducing Penetrating Traumatic Brain Injury in Adult Drosophila Flies

