Forensic mTBI and Traumatic Brain Injury experts to give your case the edge.
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mTBI and Traumatic Brain Injury

Traumatic brain injury (TBI)-related legal matters frequently involve assessment of incidents and evaluation of the relationship between event circumstances and resulting neurological injury. These cases may encompass mild traumatic brain injury (mTBI), moderate to severe TBI, and involve assessment of injury causation and long-term effects. Resolution requires detailed forensic investigation to establish incident biomechanics, evaluate injury consistency with incident forces and circumstances, assess injury mechanisms including diffuse axonal injury (DAI) and microbleeds, and evaluate the relationship between identified injury mechanisms and reported symptoms. Comprehensive analysis demands expertise in biomechanics, physics-based modeling, neuropathology, neurotrauma mechanisms, and understanding of TBI pathophysiology. Our firm provides forensic biomechanical/biomedical engineering investigation specialized in traumatic brain injury causation analysis.

Cases involving traumatic brain injury require systematic evaluation of incident circumstances, force analysis, medical findings, diagnostic imaging, and TBI mechanisms. We conduct thorough review of relevant documentation including incident reports, medical records, neurological diagnostic imaging (MRI, CT scans), neuropsychological testing results, witness statements, and physical or video evidence. Our multidisciplinary team of biomedical engineers and biomechanical engineers reconstructs incident events using biomechanical analysis and physics-based modeling. Analysis evaluates whether forces and circumstances associated with the incident—including rotational acceleration, linear acceleration, impact magnitude, duration, and acceleration-deceleration profiles—are consistent with reported TBI patterns and evaluates the role of contributing factors including pre-existing conditions and alternative causation scenarios.

Forensic investigation of traumatic brain injury causation addresses incident biomechanics, force analysis, TBI mechanism evaluation, injury consistency assessment, and causation analysis. Analysis may examine kinematic reconstruction, acceleration-deceleration forces, impact mechanics, rotational and linear acceleration profiles, DAI threshold analysis and mechanism, microbleed formation and distribution patterns, intracranial pressure dynamics and brain pressure wave propagation, mTBI injury mechanisms and thresholds, neurological imaging report analysis, cognitive and functional outcomes, neuropsychological findings, pre-existing conditions and comorbidities, medical history, and alternative causation scenarios. We evaluate whether incident forces and circumstances are consistent with injury patterns and mechanisms, assess the plausibility of alternative causes, evaluate injury mechanisms including DAI and microbleed formation relative to incident forces, assess whether brain pressure waves and intracranial pressure changes are consistent with reported injury severity, and assess the relationship between identified injury mechanisms and reported symptoms. Our approach is systematic and evidence-based; findings derive from biomechanical analysis, physics-based modeling, neurotrauma literature, medical records review, diagnostic imaging interpretation, and engineering analysis.

We provide detailed forensic reports addressing incident-specific biomechanical factors, TBI mechanism analysis, injury consistency assessment, and causation determination. Our analysis presents biomechanical findings, TBI pathomechanics including DAI, microbleed analysis, brain pressure dynamics, and causation assessment in structured, accessible formats suitable for non-technical audiences. We offer expert testimony for depositions and court proceedings, communicating biomechanical findings, traumatic brain injury mechanisms, and causation conclusions clearly to judicial audiences.

Traumatic brain injury causation cases require rigorous forensic investigation and objective biomechanical assessment. We are available to discuss how our forensic engineering expertise in biomechanics and neurotrauma, including analysis of head impact mechanics, mTBI, DAI, and TBI may support your case evaluation.

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Paul D. Doyle

Mechanical Engineer

Paul D. Doyle is a Mechanical Engineer with a Bachelor of Science degree in Mechanical Engineering, a Master of Science in Management, and more than 30 years of engineering experience. He worked in the automotive industry designing, building…

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