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In vivo imaging of the neuronal response to spinal cord injury:a narrative review
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作者 junhao deng Chang Sun +5 位作者 Ying Zheng Jianpeng Gao Xiang Cui Yu Wang Licheng Zhang Peifu Tang 《Neural Regeneration Research》 SCIE CAS CSCD 2024年第4期811-817,共7页
Deciphering the neuronal response to injury in the spinal cord is essential for exploring treatment strategies for spinal cord injury(SCI).However,this subject has been neglected in part because appropriate tools are ... Deciphering the neuronal response to injury in the spinal cord is essential for exploring treatment strategies for spinal cord injury(SCI).However,this subject has been neglected in part because appropriate tools are lacking.Emerging in vivo imaging and labeling methods offer great potential for observing dynamic neural processes in the central nervous system in conditions of health and disease.This review first discusses in vivo imaging of the mouse spinal cord with a focus on the latest imaging techniques,and then analyzes the dynamic biological response of spinal cord sensory and motor neurons to SCI.We then summarize and compare the techniques behind these studies and clarify the advantages of in vivo imaging compared with traditional neuroscience examinations.Finally,we identify the challenges and possible solutions for spinal cord neuron imaging. 展开更多
关键词 anterior horn neurons calcium imaging central nervous system dorsal horn neurons dorsal root ganglion in vivo imaging neuronal response spinal cord injury spinal cord two-photon microscopy
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有机硅改性苯丙乳液的制备及增强空滤纸的应用 被引量:6
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作者 洪浩源 杨进 +2 位作者 邓钧豪 王涛 徐桂龙 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2019年第6期130-135,共6页
苯丙乳液增强空滤纸的不足之处是抗水性和耐候性差,热黏冷脆,使用寿命短,通常采用有机硅树脂进行改性。以甲基丙烯酸甲酯接枝改性硅油,并进一步采用梯度水解,制备不同羧基含量的接枝改性硅油,改善有机硅树脂与苯丙树脂之间由于极性相差... 苯丙乳液增强空滤纸的不足之处是抗水性和耐候性差,热黏冷脆,使用寿命短,通常采用有机硅树脂进行改性。以甲基丙烯酸甲酯接枝改性硅油,并进一步采用梯度水解,制备不同羧基含量的接枝改性硅油,改善有机硅树脂与苯丙树脂之间由于极性相差大而导致的不相容性,并采用红外吸收光谱、核磁共振氢谱表征其结构,采用差示扫描量热法表征其共混物相容性。结果表明,由于丙烯酸类结构的引入,改性硅油的添加量可达到30%,充分体现了有机硅树脂的优异性能。另一方面,低表面能的有机硅油能改善共混物树脂的抗水性能,与纯苯丙乳液浸渍滤纸相比,其性能均得到保持甚至略有提高,尤其是滤纸的湿强度获得明显改善,其耐破度保持率为33.7%。 展开更多
关键词 硅油 硅氢加成 滤清器滤纸 苯丙乳液
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Simultaneous dual-region two-photon imaging of biological dynamics spanning over 9 mm in vivo
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作者 CHI LIU CHENG JIN +3 位作者 junhao deng junhao LIANG LICHENG ZHANG LINGJIE KONG 《Photonics Research》 SCIE EI CAS CSCD 2024年第3期456-464,共9页
Biodynamical processes,especially in system biology,that occur far apart in space may be highly correlated.To study such biodynamics,simultaneous imaging over a large span at high spatio-temporal resolutions is highly... Biodynamical processes,especially in system biology,that occur far apart in space may be highly correlated.To study such biodynamics,simultaneous imaging over a large span at high spatio-temporal resolutions is highly desired.For example,large-scale recording of neural network activities over various brain regions is indispensable in neuroscience.However,limited by the field-of-view(FoV)of conventional microscopes,simultaneous recording of laterally distant regions at high spatio-temporal resolutions is highly challenging.Here,we propose to extend the distance of simultaneous recording regions with a custom micro-mirror unit,taking advantage of the long working distance of the objective and spatio-temporal multiplexing.We demonstrate simultaneous dual-region two-photon imaging,spanning as large as 9 mm,which is 4 times larger than the nominal FoV of the objective.We verify the system performance in in vivo imaging of neural activities and vascular dilations,simultaneously,at two regions in mouse brains as well as in spinal cords,respectively.The adoption of our proposed scheme will promote the study of systematic biology,such as system neuroscience and system immunology. 展开更多
关键词 RECORDING VIVO DYNAMICS
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Application of photocrosslinkable hydrogels based on photolithography 3D bioprinting technology in bone tissue engineering 被引量:3
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作者 Jianpeng Gao Xiao Liu +6 位作者 Junyao Cheng junhao deng Zhenchuan Han Ming Li Xiumei Wang Jianheng Liu Licheng Zhang 《Regenerative Biomaterials》 SCIE EI CSCD 2023年第1期904-918,共15页
Bone tissue engineering(BTE)has been proven to be an effective method for the treatment of bone defects caused by different musculoskeletal disorders.Photocrosslinkable hydrogels(PCHs)with good biocompatibility and bi... Bone tissue engineering(BTE)has been proven to be an effective method for the treatment of bone defects caused by different musculoskeletal disorders.Photocrosslinkable hydrogels(PCHs)with good biocompatibility and biodegradability can significantly promote the migration,proliferation and differentiation of cells and have been widely used in BTE.Moreover,photolithography 3D bioprinting technology can notably help PCHs-based scaffolds possess a biomimetic structure of natural bone,meeting the structural requirements of bone regeneration.Nanomaterials,cells,drugs and cytokines added into bioinks can enable different functionalization strategies for scaffolds to achieve the desired properties required for BTE.In this review,we demonstrate a brief introduction of the advantages of PCHs and photolithography-based 3D bioprinting technology and summarize their applications in BTE.Finally,the challenges and potential future approaches for bone defects are outlined. 展开更多
关键词 photocrosslinkable hydrogels photolithography 3D bioprinting bone tissue engineering bone regeneration bone defect
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