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- Because of the loss of anterior horn cells, the anterior (ventral) spinal motor nerve roots demonstrate atrophy, as seen here in comparison with a normal spinal cord. 如圖示,與正常脊索相比,由于前角細胞喪失,前(腹側)脊髓運動(dòng)神經(jīng)根萎縮。
- Where are the anterior horn cells in this section of spinal cord? They are absent in a patient with amyotrophic lateral sclerosis (ALS). 脊髓切片上哪里是前角細胞?對于患肌萎縮側索硬化(ALS)病人來(lái)說(shuō),不可能看到前角細胞。
- There is loss of anterior horn cells, so that patients present with progressive weakness that proceeds to paralysis from neurogenic muscular atrophy. 存在前角細胞喪失,因此病人表現為漸進(jìn)性衰弱,這可能因神經(jīng)源性肌萎縮而出現癱瘓。
- Keywords cauda equina syndrome;anterior horn cell;apoptosis; 關(guān)鍵詞馬尾神經(jīng)綜合征;前角細胞;凋亡;
- Observation of anterior horn cell apoptosis of conus medullaris in rabbits with cauda equina syndrome 實(shí)驗性馬尾神經(jīng)綜合征家兔骶髓前角細胞凋亡的觀(guān)察
- anterior horn cell 前角細胞
- Anterior horn cell disease 前角細胞疾病
- anterior horn cell dysfunction 前角細胞功能障礙
- anterior horn cell syndrome 前角細胞綜合征
- Quantitative Study of the Ultrastructure of Spinal Cord Anterior Horn Cells after Endurance Training with Different Intensities in Rats 不同強度訓練后大鼠脊髓前角細胞線(xiàn)粒體的定量研究
- Objective To study the protective effects of Schwann cell derived neurotrophic factor (SDNF) on motoneurons of spinal anterior horn from spinal root avulsion induced cell death. 目的研究雪旺細胞源神經(jīng)營(yíng)養因子(SDNF)對臂叢神經(jīng)根性撕脫所致前角運動(dòng)神經(jīng)元死亡的保護作用。
- Effects of Physical Training on Morphology of Corticocerebral Pyramidal Cells and Spinal Anterior Horn Cells in Growing Mice 運動(dòng)對生長(cháng)發(fā)育期小鼠大腦皮質(zhì)錐體細胞與脊髓前角細胞形態(tài)學(xué)的影響
- On the 18th week, mild expression of Slit mRNA was found in anterior horn. 胚胎第18周時(shí)在脊髓前角Slit mRNA有較明顯表達,中央管和后角無(wú)明顯表達。
- Objective Investigate the effect of conditioning lesion on nitric oxide synthase (NOS) expression and cell death of spinal cord anterior horn motoneuron after spinal roots avulsion. 目的探索條件性損傷對脊神經(jīng)根撕脫后脊髓前角運動(dòng)神經(jīng)元一氧化氮合酶(NOS)表達及神經(jīng)細胞死亡的影響。
- anterior horn cells 前角細胞
- ELBE can protect the motor neurons in anterior horn of spinal cord through resisting the change of AchE and ACP. ? ELBE能通過(guò)緩沖神經(jīng)損傷后神經(jīng)元內酶學(xué)的變化,起到保護神經(jīng)元的作用,從而減輕神經(jīng)元損傷的程度,減少神經(jīng)元死亡的數量,有利于神經(jīng)再生。
- At4 weeks postoperatively, cholinesterase( CHE) and acidphosphatase( ACP) histochemical stain of neurons in C5 anterior horn and dorsal root ganglia( DRG) were detected. 術(shù)后4周取頸5脊髓前角和脊神經(jīng)節,行酶組織化學(xué)染色觀(guān)察膽堿酯酶和酸性磷酸酶活性的變化。
- In light microscope, degeneration and loss of motoneurons, satellitosis, neuronophagia and glial coffins were seen in the anterior horn of spinal cord. 脊髓前角運動(dòng)神經(jīng)元變性和丟失,有衛星、噬節及墓穴現象形成。
- Result: After BWSTT ultrastructure of neurons in lumbar cord anterior horn of transthoracic SCI rats appeared compensative changes. 結果:胸髓橫斷大鼠BWSTT后,腰髓前角神經(jīng)元超微結構出現代償性改變。
- Conclusion:BWSTT can improve locomotion of transthoracic SCI rats by promoting the neuronal plasticity of lumbar cord anterior horn. 結論:BWSTT后胸髓橫斷大鼠可通過(guò)增強脊髓損傷平面以下腰髓前角神經(jīng)元的可塑性,促進(jìn)其后肢運動(dòng)功能的恢復。