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The longitudinal epineural incision and complete nerve transection method for modeling sciatic nerve injury 被引量:5
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作者 Xing-long Cheng Pei Wang +4 位作者 Bo Sun shi-bo liu Yun-feng Gao Xin-ze He Chang-yu Yu 《Neural Regeneration Research》 SCIE CAS CSCD 2015年第10期1663-1668,共6页
Injury severity, operative technique and nerve regeneration are important factors to consider when constructing a model of peripheral nerve injury. Here, we present a novel peripheral nerve injury model and compare it... Injury severity, operative technique and nerve regeneration are important factors to consider when constructing a model of peripheral nerve injury. Here, we present a novel peripheral nerve injury model and compare it with the complete sciatic nerve transection method. In the experimental group, under a microscope, a 3-mm longitudinal incision was made in the epineurium of the sciatic nerve to reveal the nerve fibers, which were then transected. The small, longitudinal incision in the epineurium was then sutured closed, requiring no stump anastomosis. In the control group, the sciatic nerve was completely transected, and the epineurium was repaired by anastomosis. At 2 and 4 weeks after surgery, Wallerian degeneration was observed in both groups. In the experimental group, at 8 and 12 weeks after surgery, distinct medullary nerve fibers and axons were observed in the injured sciatic nerve. Regular, dense myelin sheaths were visible, as well as some scarring. By 12 weeks, the myelin sheaths were normal and intact, and a tight lamellar structure was observed. Functionally, limb movement and nerve conduction recovered in the injured region between 4 and 12 weeks. The present results demonstrate that longitudinal epineural incision with nerve transection can stably replicate a model of Sunderland grade IV peripheral nerve injury. Compared with the complete sciatic nerve transection model, our method reduced the difficulties of micromanipulation and surgery time, and resulted in good stump restoration, nerve regeneration, and functional recovery. 展开更多
关键词 nerve regeneration peripheral nerve sciatic nerve injury animal models longitudinal epineural incision Sunderland IV nerve regeneration and repair rats neural regeneration
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Brain injury in combination with tacrolimus promotes the regeneration of injured peripheral nerves 被引量:5
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作者 Xin-ze He Jian-jun Ma +6 位作者 Hao-qi Wang Tie-min Hu Bo Sun Yun-feng Gao shi-bo liu Wei Wang Pei Wang 《Neural Regeneration Research》 SCIE CAS CSCD 2017年第6期987-994,共8页
Both brain injury and tacrolimus have been reported to promote the regeneration of injured peripheral nerves. In this study, before transection of rat sciatic nerve, moderate brain contusion was(or was not) induced.... Both brain injury and tacrolimus have been reported to promote the regeneration of injured peripheral nerves. In this study, before transection of rat sciatic nerve, moderate brain contusion was(or was not) induced. After sciatic nerve injury, tacrolimus, an immunosuppressant, was(or was not) intraperitoneally administered. At 4, 8 and 12 weeks after surgery, Masson's trichrome, hematoxylin-eosin, and toluidine blue staining results revealed that brain injury or tacrolimus alone or their combination alleviated gastrocnemius muscle atrophy and sciatic nerve fiber impairment on the experimental side, simultaneously improved sciatic nerve function, and increased gastrocnemius muscle wet weight on the experimental side. At 8 and 12 weeks after surgery, brain injury induction and/or tacrolimus treatment increased action potential amplitude in the sciatic nerve trunk. Horseradish peroxidase retrograde tracing revealed that the number of horseradish peroxidase-positive neurons in the anterior horn of the spinal cord was greatly increased. Brain injury in combination with tacrolimus exhibited better effects on repair of injured peripheral nerves than brain injury or tacrolimus alone. This result suggests that brain injury in combination with tacrolimus promotes repair of peripheral nerve injury. 展开更多
关键词 tacrolimus injured nerves regeneration alone axonal hematoxylin peroxidase tracing Schwann
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可循环回收利用的本征导热聚六氢三嗪树脂研究 被引量:4
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作者 麻乐 袁彦超 +4 位作者 刘诗博 王振汉 井长友 刘述梅 赵建青 《高分子学报》 SCIE CAS CSCD 北大核心 2021年第9期1156-1164,共9页
采用多聚甲醛(PFA)和含有芳香酰胺特殊结构的4,4’-二氨基苯酰替苯胺(DABA)为原料,通过利用分子链间氢键强相互作用向树脂固化网络中引入局域微观有序结构增大声子传播自由程,合成一种新型本征导热聚六氢三嗪热固性树脂(DABA-PHT).通过... 采用多聚甲醛(PFA)和含有芳香酰胺特殊结构的4,4’-二氨基苯酰替苯胺(DABA)为原料,通过利用分子链间氢键强相互作用向树脂固化网络中引入局域微观有序结构增大声子传播自由程,合成一种新型本征导热聚六氢三嗪热固性树脂(DABA-PHT).通过对树脂预聚过程和机理、固化工艺、导热性能、降解性能及循环回收利用性能的研究表明:水能够作为催化剂有效加速预聚反应、大幅缩短预聚时间,且酰胺N-H键未参与交联反应;DABA-PHT树脂易于合成和加工,且具有良好的力学、耐热、降解和循环回收利用性能,热导率达到0.38 W·m^(-1)·K^(-1),接近普通环氧树脂的2倍,有望用来制备可循环回收利用的高热导率热固性树脂基复合材料. 展开更多
关键词 聚六氢三嗪 可循环回收利用 本征导热 氢键相互作用
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Effects of cisplatin in combination with hyperthermia on biological characteristics of retroperitoneal liposarcoma
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作者 Gheng-Li Miao Shahbaz Hanif +4 位作者 Lin Zhang Xiao-Bing Chen Mei Huang shi-bo liu Cheng-Hua Luo 《Chinese Medical Journal》 SCIE CAS CSCD 2021年第9期1110-1112,共3页
Pathologically,retroperitoneal liposarcoma(RPLS)is a group of malignant tumors,which originates from adipose tissue in retroperitoneal space,accounting for almost 70%of all retroperitoneal tumors.RPLS has no optimal t... Pathologically,retroperitoneal liposarcoma(RPLS)is a group of malignant tumors,which originates from adipose tissue in retroperitoneal space,accounting for almost 70%of all retroperitoneal tumors.RPLS has no optimal treatment.Surgical resection(R_(0)/R_(1))is the most effective therapy;however,recurrence rate is very high.Grossly incomplete surgical resection(R_(2))is an important risk factor for early recurrence of RPLS. 展开更多
关键词 RETROPERITONEAL SARCOMA CISPLATIN
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