1.Logistic Regression Analysis of the Mechanism of Blunt Brain Injury Inference Based on CT Images.
Xue-Yang SUN ; Qi-Fan YANG ; Yun-Liang ZHU ; Yan-Bin WANG ; He-Wen DONG ; Ming-Zhen YANG ; Zhi-Ling TIAN ; Lei WAN ; Dong-Hua ZOU ; Xiao-Tian YU ; Ning-Guo LIU
Journal of Forensic Medicine 2022;38(2):217-222
OBJECTIVES:
To study the correlation between CT imaging features of acceleration and deceleration brain injury and injury degree.
METHODS:
A total of 299 cases with acceleration and deceleration brain injury were collected and divided into acceleration brain injury group and deceleration brain injury group according to the injury mechanism. Subarachnoid hemorrhage (SAH) and Glasgow coma scale (GCS), combined with skull fracture, epidural hematoma (EDH), subdural hematoma (SDH) and brain contusion on the same and opposite sides of the stress point were selected as the screening indexes. χ2 test was used for primary screening, and binary logistic regression analysis was used for secondary screening. The indexes with the strongest correlation in acceleration and deceleration injury mechanism were selected.
RESULTS:
χ2 test showed that skull fracture and EDH on the same side of the stress point; EDH, SDH and brain contusion on the opposite of the stress point; SAH, GCS were correlated with acceleration and deceleration injury (P<0.05). According to binary logistic regression analysis, the odds ratio (OR) of EDH on the same side of the stress point was 2.697, the OR of brain contusion on the opposite of the stress point was 0.043 and the OR of GCS was 0.238, suggesting there was statistically significant (P<0.05).
CONCLUSIONS
EDH on the same side of the stress point, brain contusion on the opposite of the stress point and GCS can be used as key indicators to distinguish acceleration and deceleration injury mechanism. In addition, skull fracture on the same side of the stress point, EDH and SDH on the opposite of the stress point and SAH were relatively weak indicators in distinguishing acceleration and deceleration injury mechanism.
Brain Contusion
;
Brain Injuries/diagnostic imaging*
;
Hematoma, Epidural, Cranial
;
Hematoma, Subdural/etiology*
;
Humans
;
Logistic Models
;
Skull Fractures/diagnostic imaging*
;
Tomography, X-Ray Computed
;
Wounds, Nonpenetrating/diagnostic imaging*
3.Not Available.
Feng ZHANG ; Yan yan FAN ; Guang hua YE ; Xing biao LI ; Lin sheng YU ; Zhong ZHANG
Journal of Forensic Medicine 2021;37(5):727-728
4.Sinking Skin Flap Syndrome or Syndrome of the Trephined: A Report of Two Cases
Hae Yeon PARK ; Sehee KIM ; Joon Sung KIM ; Seong Hoon LIM ; Young Il KIM ; Dong Hoon LEE ; Bo Young HONG
Annals of Rehabilitation Medicine 2019;43(1):111-114
Decompressive craniectomy (DC) is commonly performed in patients with intracranial hypertension or brain edema due to traumatic brain injury. Infrequently, neurologic deteriorations accompanied by sunken scalp may occur after DC. We report two patients with traumatic subdural hemorrhage who had neurologic deteriorations accompanied by sunken scalp after DC. Neurologic function improved dramatically in both patients after cranioplasty. Monitoring for neurologic deterioration after craniectomy is advised. For patients showing neurologic deficit with a sunken scalp, early cranioplasty should be considered.
Brain Edema
;
Brain Injuries
;
Decompressive Craniectomy
;
Hematoma, Subdural
;
Humans
;
Intracranial Hypertension
;
Neurologic Manifestations
;
Scalp
;
Skin
5.Evans syndrome diagnosed after traumatic subdural hemorrhage
Christopher S HONG ; Mark M LANDRENEAU ; Ryan A GRANT
Blood Research 2019;54(2):86-86
No abstract available.
Hematoma, Subdural
6.Delayed Extensive White Matter Injury Caused by a Subdural Hemorrhage and Role of Corticospinal Tract Integrity
Kyoung Bo LEE ; Sang Cheol YOON ; Joon Sung KIM ; Bo Young HONG ; Jung Geun PARK ; Won Jin SUNG ; Hye Jung PARK ; Seong Hoon LIM
Brain & Neurorehabilitation 2019;12(2):e15-
A subdural hemorrhage (SDH) is a common disorder with usually good prognosis. Most SDHs resolve with or without with minimal sequelae. We present a case report of a patient with SDH, who had delayed extensive white matter injury with disruptions of corticospinal tracts (CSTs) by diffusion tensor imaging (DTI) and showed abysmal prognosis, despite long-term rehabilitation. A 62-year-old man with an SDH underwent burr hole trephination for hematoma removal. Within 7 days, the hemorrhage diminished. At 12 weeks after the onset, the patient's weakness did not improve, and a follow-up magnetic resonance imaging revealed extensive leukomalacia, especially in the white matter. The DTI for CST revealed severe injury of CST integrity. He did not re-gain muscle strength and functional independence, despite 3 months of inpatient rehabilitation. This case describes SDH with delayed extensive white matter injury and exceptional poor prognosis and urges caution in that the SDH may induce very variable functional recovery. Besides, DTI for CST would be useful in predicting the long-term functional prognosis in extensive white matter injury.
Diffusion Tensor Imaging
;
Follow-Up Studies
;
Hematoma
;
Hematoma, Subdural
;
Hemorrhage
;
Humans
;
Inpatients
;
Magnetic Resonance Imaging
;
Middle Aged
;
Muscle Strength
;
Prognosis
;
Pyramidal Tracts
;
Rehabilitation
;
Trephining
;
White Matter
7.Evaluating traumatic brain injury using conventional magnetic resonance imaging and susceptibility-weighted imaging in dogs
Daji NOH ; Sooyoung CHOI ; Hojung CHOI ; Youngwon LEE ; Kija LEE
Journal of Veterinary Science 2019;20(2):e10-
Susceptibility-weighted imaging (SWI) is a magnetic resonance imaging (MRI) sequence used for evaluating traumatic brain injury (TBI). Although SWI is being increasingly used in veterinary medicine, there are no systematic studies regarding its use. We aimed to evaluate TBI lesions by using conventional MRI and SWI in 11 dogs and determine the correlation between clinical status and conventional MRI or SWI findings. The modified Glasgow coma scale (MGCS) at presentation and a previously used MRI grading system (MRGr; grades 1–6) were used to evaluate the brain lesions, and correlations between MGCS score and each MRGr were assessed. Conventional MRI revealed 23 lesions in 11 dogs with variable MGCS scores (range: 11–17). SWI showed comparable findings for all of the lesions except for subdural hemorrhage, and it revealed additional lesions in four dogs. The median MRGr was 2 on both conventional MRI and SWI. The MRGr of the conventional MRI assessments and the MGCS scores showed a significant negative correlation (r = −0.685). In conclusion, SWI had better TBI lesion-detection ability, but conventional MRI had a better correlation with early clinical status and subdural hemorrhage. Thus, a combination of conventional MRI and SWI examinations can improve TBI diagnosis in dogs.
Animals
;
Brain
;
Brain Injuries
;
Diagnosis
;
Dogs
;
Glasgow Coma Scale
;
Hematoma, Subdural
;
Magnetic Resonance Imaging
;
Veterinary Medicine
8.Spontaneous Spinal Subdural and Subarachnoid Hemorrhage with Concomitant Intracerebral Hemorrhage: A Case Report
Young LEE ; Jeongwook LIM ; Sanghyun HAN ; Seung Won CHOI ; Jin Young YOUM ; Hyeon Song KOH
Korean Journal of Neurotrauma 2019;15(1):34-37
Most cases of spinal subdural hematoma are very rare and result from iatrogenic causes, such as coagulopathy or a spinal puncture. Cases of non-traumatic spinal subdural hematoma accompanied by intracranial hemorrhage are even more rare. There are a few reports of spontaneous spinal subdural hematoma with concomitant intracranial subdural or subarachnoid hemorrhage, but not with intracerebral hemorrhage. Especially in our case, the evaluation and diagnosis were delayed because the spontaneous intracerebral hemorrhage accompanying the unilateral spinal subdural and subarachnoid hemorrhages caused hemiplegia. We report a case of spinal subdural and subarachnoid hemorrhage with concomitant intracerebral hemorrhage, for the first time, with a relevant literature review.
Cerebral Hemorrhage
;
Diagnosis
;
Hematoma
;
Hematoma, Subdural, Spinal
;
Hemiplegia
;
Intracranial Hemorrhages
;
Spinal Puncture
;
Subarachnoid Hemorrhage
9.Pseudo-Subarachnoid Hemorrhage; Chronic Subdural Hematoma with an Unruptured Aneurysm Mistaken for Subarachnoid Hemorrhage
Dookyung SON ; Youngha KIM ; Changhyeun KIM ; Sangweon LEE
Korean Journal of Neurotrauma 2019;15(1):28-33
Subarachnoid hemorrhage (SAH) usually occurs due to aneurysmal rupture of intracranial arteries and its typical computed tomography (CT) findings are increased attenuation of cisterns and subarachnoid spaces. However, several CT findings mimicking SAH are feasible in diverse conditions. They are so-called as pseudo-SAH, and this report is a case of pseudo-SAH which is misdiagnosed as aneurysm rupture accompanied by bilateral chronic subdural hematoma (cSDH). A 42-year-old male with severe headache visited our institute. Non-contrast brain CT images showed increased attenuation on basal cistern, and cSDH on both fronto-temporo-parietal convexity with midline shifting. Trans-femoral cerebral angiography was done and we confirmed small aneurysm at right M1 portion of middle cerebral artery. Under diagnosis of SAH, we planned an operation in order to clip aneurysmal neck and remove cSDH. cSDH was removed as planned, however, there was no SAH and we also couldn't find the rupture point of aneurysm. Serial follow-up CT showed mild cumulative cSDH recurrence, but the patient was tolerant and had no neurologic deficit during hospitalization. We have checked the patient via out-patient department for 6 months, there are no significant changes in volume and density of cSDH and the patient also have no neurologic complications.
Adult
;
Aneurysm
;
Arteries
;
Brain
;
Brain Edema
;
Cerebral Angiography
;
Diagnosis
;
Follow-Up Studies
;
Headache
;
Hematoma, Subdural, Chronic
;
Hemorrhage
;
Hospitalization
;
Humans
;
Intracranial Hypertension
;
Male
;
Middle Cerebral Artery
;
Neck
;
Neurologic Manifestations
;
Outpatients
;
Recurrence
;
Rupture
;
Subarachnoid Hemorrhage
;
Subarachnoid Space
10.Authors' Reply to Letter to the Editor: Influence of Gender on Occurrence of Chronic Subdural Hematoma; Is It an Effect of Cranial Asymmetry? (Korean J Neurotrauma 2014;10:82–85)
Jae Sang OH ; Jai Joon SHIM ; Seok Mann YOON ; Kyeong Seok LEE
Korean Journal of Neurotrauma 2019;15(2):241-241
No abstract available.
Hematoma, Subdural, Chronic

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