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Objective: To explore the impact and mechanism of electro-acupuncture (EA) on olfactory ensheathing cells (OECs) transplantation of spinal cord injury (SCI) axonal regeneration.
Methods: In the experiment, 72 adult Sprague Dawley male rats weighted (220±20) g underwent contusion and transection method to cause the T9 model of spinal cord injury, were randomly divided into four groups involving model group, EA group,OECs group,and EA+OECs group. 5% fluorescein gold (FG) solution of 0.5 µl was injected into rats' spinal cord at 4 weeks and 8 weeks after SCI, a series of tests were performed including fluorescein gold(FG) retrograde tagging, BBB scores.
Results: (1)The BBB scores level among four groups had no differences from the 1st day to the 1st week after the SCI (P>0.05). From the 3rd week after the SCI, the BBB scores level in EA+ OECs group were obviously higher than that of other groups (P<0.05). (2)The result of the fluorescein gold (FG) retrograde tagging showed at 4 weeks and 8 weeks after treatment FG positive nerve fibers were observed in SCI region. In EA+OECs group the number of FG positive nerve fibers was more than other three groups, and the fibers were more regularly arranged than other three groups.
Conclusion: The combination of electro-acupuncture and OECs transplantation can recover the pathway of nerve conduction and promote nerve fibers regeneration and hind limb function recovery for SCI rat, and can guide the trend of the axonal regeneration.
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Hum Brain Mapp
September 2025
Department of Neurosurgery, Heidelberg University Hospital, Heidelberg, Germany.
Postoperative aphasia (POA) is a common complication in patients undergoing surgery for language-eloquent lesions. This study aimed to enhance the prediction of POA by leveraging preoperative navigated transcranial magnetic stimulation (nTMS) language mapping and diffusion tensor imaging (DTI)-based tractography, incorporating deep learning (DL) algorithms. One hundred patients with left-hemispheric lesions were retrospectively enrolled (43 developed postoperative aphasia, as the POA group; 57 did not, as the non-aphasia (NA) group).
View Article and Find Full Text PDFBrain Behav
September 2025
Department of Neurology, the Second Affiliated Hospital of Zhejiang University, School of Medicine, Hangzhou, China.
Background And Purpose: White matter hyperintensity (WMH) impairs cognitive function but is not evident in the early stage, raising the need to explore the underlying mechanism. We aimed to investigate the potential role of network structure-function coupling (SC-FC coupling) in cognitive performance of WMH patients.
Methods: A total of 617 participants with WMH (mean age = 61 [SD = 8]; 287 females [46.
Brain Behav
September 2025
Department of Anesthesiology, Fudan University Shanghai Cancer Center, Shanghai, China.
Purpose: Postoperative delirium (POD) remains poorly understood in terms of predictors and underlying mechanisms. This review summarized emerging evidence on the association between brain microstructural alterations and POD.
Method: This is a narrative review, describing the microstructural changes in aging brain, microstructural MRI findings, relationship among microstructural alterations, cognitive reserve and POD, and potential interventions targeting microstructure.
Eur Spine J
September 2025
Department of Spine Surgery, Third Affiliated Hospital of Sun Yat-sen University, Guangzhou, China.
Purpose: This study aimed to investigate the relationship between tissue bridges and bladder and bowel outcomes in chronic cervical spinal cord injury (SCI).
Methods: Between July 2020 and January 2024, 44 patients with chronic cervical SCI were retrospectively included in this cross-sectional study at a specialized SCI center. Lesion severity was assessed by tissue bridges, lesion length, lesion width, and lesion area.
Signal Transduct Target Ther
September 2025
Spine & Spinal Cord Institute, Department of Neurosurgery, College of Medicine, Yonsei University, Seoul, Republic of Korea.
Neuroregeneration and remyelination rarely occur in the adult mammalian brain and spinal cord following central nervous system (CNS) injury. The glial scar has been proposed as a major contributor to this failure in the regenerative process. However, its underlying molecular and cellular mechanisms remain unclear.
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