1.Progress in application of adult endogenous neurogenesis in brain injury repair.
Tian-Yu BAI ; Jiao MU ; Peng HAO ; Hong-Mei DUAN ; Fei HAO ; Wen ZHAO ; Yu-Dan GAO ; Zi-Jue WANG ; Zhao-Yang YANG ; Xiao-Guang LI
Acta Physiologica Sinica 2023;75(2):231-240
Persistent neurogenesis exists in the subventricular zone (SVZ) of the ventricles and the subgranular zone (SGZ) of the dentate gyrus of the hippocampus in the adult mammalian brain. Adult endogenous neurogenesis not only plays an important role in the normal brain function, but also has important significance in the repair and treatment of brain injury or brain diseases. This article reviews the process of adult endogenous neurogenesis and its application in the repair of traumatic brain injury (TBI) or ischemic stroke, and discusses the strategies of activating adult endogenous neurogenesis to repair brain injury and its practical significance in promoting functional recovery after brain injury.
Adult
;
Animals
;
Humans
;
Brain/physiopathology*
;
Hippocampus/physiopathology*
;
Mammals/physiology*
;
Neurogenesis/physiology*
;
Brain Hemorrhage, Traumatic/therapy*
;
Ischemic Stroke/therapy*
;
Recovery of Function
;
Spinal Cord/physiopathology*
3.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*
4.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
5.Late-Onset Spinal Subdural Hematoma after Acupuncture
Hyo Sik PARK ; Jong Keun KIM ; Jin Seok BAE ; Yong Sung JEONG ; Jong Youb LIM
Clinical Pain 2019;18(2):130-132
Acupuncture is generally regarded as a safe procedure and as a popular treatment for patients with musculoskeletal disorders. We report a case of a 47-year-old male patient with late-onset tetraplegia, developed after acupuncture. He had no trauma, medical, and social history relevant to tetraplegia. Right after the acupuncture, he felt discomfort in his right arm. After 6 days, all 4 extremity weakness developed. Whole-spine magnetic resonance imaging revealed the presence of spinal subdural hematoma extending from the C5 vertebra to the coccyx level. Hand coordination dysfunction, neurogenic bladder, and neuropathic pain were other symptoms. After the management, he recovered muscle strength, but incomplete bladder control and neuralgia were sustained. It is important to be aware of the possibilities of severe complications after acupuncture.
Acupuncture
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Arm
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Coccyx
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Extremities
;
Hand
;
Hematoma, Subdural, Spinal
;
Humans
;
Magnetic Resonance Imaging
;
Male
;
Middle Aged
;
Muscle Strength
;
Neuralgia
;
Quadriplegia
;
Spine
;
Urinary Bladder
;
Urinary Bladder, Neurogenic
6.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
7.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
8.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
10.Spontaneous Intracranial and Spinal Subdural Hematoma: A Case Report
Dae Gyun KIM ; Yong Su CHO ; Hui Sun WANG ; Seok Won KIM
Korean Journal of Neurotrauma 2019;15(2):182-186
Spinal subdural hematoma (SDH) is rarely reported, and their simultaneous occurrence with intracranial SDH is even more rare. A 67-year-old male patient with a history of posterolateral fusion to treat an L2 burst fracture came to our outpatient clinic due to an inability to walk by himself over the previous 3 weeks. A neurological examination revealed that the patient was alert with occasional confusion and slight motor weakness in the lower extremities. Brain and lumbar spine magnetic resonance imaging (MRI) was then performed. A brain MRI revealed a large subacute SDH along the right cerebral convexity and falx cerebri with midline shifting, and a spine MRI revealed a right side-predominant subacute SDH extending from L4 to S1. For treatment, burr hole trephination of the intracranial SDH and fluoroscopy-guided lumbar puncture of the spinal SDH were performed and resulted in a favorable outcome. This is a report of a rare case of spontaneous intracranial and lumbar spine SDH. We include a review of the current literature and a discussion of the pathogenesis of this condition in this report.
Aged
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Ambulatory Care Facilities
;
Brain
;
Hematoma, Subdural
;
Hematoma, Subdural, Spinal
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Humans
;
Lower Extremity
;
Magnetic Resonance Imaging
;
Male
;
Neurologic Examination
;
Spinal Cord
;
Spinal Puncture
;
Spine
;
Trephining

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