Post-traumatic cervical spine epidural hematoma: Incidence and risk factors

Injury ◽  
2017 ◽  
Vol 48 (11) ◽  
pp. 2529-2533 ◽  
Author(s):  
Pedro A. Ricart ◽  
Ravi Verma ◽  
Steven J. Fineberg ◽  
Kyle Y. Fink ◽  
Paul A. Lucas ◽  
...  
2014 ◽  
Vol 31 (16) ◽  
pp. 1444-1450 ◽  
Author(s):  
Wen-hao Wang ◽  
Lian-shui Hu ◽  
Hong Lin ◽  
Jun Li ◽  
Fei Luo ◽  
...  

Author(s):  
Sam Sedaghat ◽  
Patrick Langguth ◽  
Naomi Larsen ◽  
Graeme Campbell ◽  
Marcus Both ◽  
...  

Purpose To investigate the diagnostic value of dual-layer spectral detector computed tomography (SDCT) in detecting posttraumatic prevertebral hematoma of the cervical spine by including electron density images. Methods 38 patients with post-traumatic imaging of the cervical spine were included in this study and received both SDCT and MRI examinations. MRI was set as the reference and combined conventional/electron density (C + ED) images were compared to conventional CT (CCT) images alone. Results A total of 18 prevertebral hematomas were identified. Reader 1 identified 14 of 18 and reader 2 15 of 18 prevertebral hematomas by using C + ED reconstructions. Readers 1 and 2 detected 6 and 9 of 18 hematomas on CCT, respectively. CCT showed a sensitivity of 33–50 % and a specificity of 75–80 %, while for C + ED reconstructed images the sensitivity was 77–83 % and the specificity was 85–90 %. Accuracy increased from 55–66 % to 84 % by using C + ED images. The minimum thickness for detecting hematoma on C + ED images was 3 mm. The sizes of prevertebral hematoma on CCT/C + ED were not significantly under- or overestimated compared to the MRI reference. There was a significant difference between the two readers for measuring hematoma sizes on CCT (p = 0.04). Readers showed an excellent inter-rater reliability (kappa = 0.82) for C + ED images and a moderative inter-rater reliability (kappa = 0.44) for CCT. Conclusion With SDCT, the diagnostic accuracy for detecting post-traumatic prevertebral hematoma is improved by using combined conventional and electron density reconstructions compared to conventional images alone. Key Points:  Citation Format


2021 ◽  
pp. 2100857
Author(s):  
Alexandre Tran ◽  
Shannon M. Fernando ◽  
Laurent J. Brochard ◽  
Eddy Fan ◽  
Kenji Inaba ◽  
...  

PurposeTo summarise the prognostic associations between various clinical risk factors and the development of the acute respiratory distress syndrome (ARDS) following traumatic injury.MethodsWe conducted this review in accordance with the PRISMA and CHARMS guidelines. We searched six databases from inception through December 2020. We included English language studies describing the clinical risk factors associated with the development of post-traumatic ARDS, as defined by either the American-European Consensus Conference or the Berlin definition. We pooled adjusted odds ratios for prognostic factors using the random effects method. We assessed risk of bias using the QUIPS tool and certainty of findings using GRADE methodology.ResultsWe included 39 studies involving 5 350 927 patients. We identified the amount of crystalloid resuscitation as a potentially modifiable prognostic factor associated with the development of post-traumatic ARDS (adjusted odds ratio [aOR] 1.19 for each additional liter of crystalloid administered within first 6 h after injury, 95% CI 1.15 to 1.24, high certainty). Non-modifiable prognostic factors with a moderate or high certainty of association with post-traumatic ARDS included increasing age, non-Hispanic white race, blunt mechanism of injury, presence of head injury, pulmonary contusion, or rib fracture; and increasing chest injury severity.ConclusionWe identified one important modifiable factor, the amount of crystalloid resuscitation within the first 24 h of injury, and several non-modifiable factors associated with development of post-traumatic ARDS. This information should support the judicious use of crystalloid resuscitation in trauma patients and may inform the development of a risk-stratification tools.


Author(s):  
Shawn M. Robbins ◽  
Jean-Pierre Pelletier ◽  
François Abram ◽  
Mathieu Boily ◽  
John Antoniou ◽  
...  

Author(s):  
Marie-Helene Beausejour ◽  
Eric Wagnac ◽  
Pierre-Jean Arnoux ◽  
Jean-Marc Mac-Thiong ◽  
Yvan Petit

Abstract Flexion-distraction injuries frequently cause traumatic cervical spinal cord injury (SCI). Post-traumatic instability can cause aggravation of the secondary SCI during patient's care. However, there is little information on how the pattern of disco-ligamentous injury affects the SCI severity and mechanism. This study objective was to analyze how different flexion-distraction disco-ligamentous injuries affect the SCI mechanisms during post-traumatic flexion and extension. A cervical spine finite element model including the spinal cord was used and different combinations of partial or complete intervertebral disc (IVD) rupture and disruption of various posterior ligaments were modeled at C4-C5, C5-C6 or C6-C7. In flexion, complete IVD rupture combined with posterior ligamentous complex rupture was the most severe injury leading to the most extreme von Mises stress (47 to 66 kPa), principal strains p1 (0.32 to 0.41 in white matter) and p3 (-0.78 to -0.96 in white matter) in the spinal cord and to the most important spinal cord compression (35 to 48 %). The main post-trauma SCI mechanism was identified as compression of the anterior white matter at the injured level combined with distraction of the posterior spinal cord during flexion. There was also a concentration of the maximum stresses in the gray matter after injury. Finally, in extension, the injuries tested had little impact on the spinal cord. The capsular ligament was the most important structure in protecting the spinal cord. Its status should be carefully examined during patient's management.


2017 ◽  
Vol 26 (19-20) ◽  
pp. 3137-3143 ◽  
Author(s):  
Yu-Hua Lin ◽  
Chia-Chan Kao ◽  
Shu-Fen Wu ◽  
Shu-Ling Hung ◽  
Hsing-Yu Yang ◽  
...  

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