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勐腊分公司速生、高抗、高效二代胶园建设技术 被引量:1
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作者 叶德林 《热带农业科学》 2009年第2期21-24,共4页
勐腊橡胶分公司在植胶资源极为有限的条件下,为将二代胶园建设成速生、高抗、高效,集社会效益和经济效益为一体的生态环保型橡胶园。充分利用现有更新胶园的土地资源进行科学规划,采用宽行密株种植形式,合理密植、规范开垦,使土地资源... 勐腊橡胶分公司在植胶资源极为有限的条件下,为将二代胶园建设成速生、高抗、高效,集社会效益和经济效益为一体的生态环保型橡胶园。充分利用现有更新胶园的土地资源进行科学规划,采用宽行密株种植形式,合理密植、规范开垦,使土地资源利用率比更新前提高50.53%。并根据植胶小区环境,结合品种特性对口配置具有相应抗性的速生、高抗、高产优良品种,充分发挥地力和品种的潜力。积极推广应用高吸水树脂春季抗旱、节水、保肥、速生栽培技术,促进胶苗速生,可比新植胶园提前一年投产开割,增加经济效益480.73万元/年。 展开更多
关键词 天然橡胶 二代胶园建设 科技创新 植胶技术 勐腊
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关于我国天然橡胶产业供给侧改革的思考 被引量:1
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作者 张希财 林位夫 《中国热带农业》 2020年第3期28-31,共4页
针对我国植胶业存在的生产效益差、产胶潜力下降和产业后继乏人等问题,提出了我国植胶业供给侧改革的目标以及相关改革措施和建议。
关键词 天然橡胶 植胶 供给侧改革 植胶技术 生产模式
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Investigating design principles of micropatterned encapsulation systems containing high-density microtissue arrays
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作者 JIANG LiYang LIU JiaYing +2 位作者 WANG Kai GU Xi LUO Ying 《Science China(Life Sciences)》 SCIE CAS 2014年第2期221-231,共11页
Immunoisolation is an important strategy to protect transplanted cells from rejection by the host immune system.Recently,microfabrication techniques have been used to create hydrogel membranes to encapsulate microtiss... Immunoisolation is an important strategy to protect transplanted cells from rejection by the host immune system.Recently,microfabrication techniques have been used to create hydrogel membranes to encapsulate microtissue in an arrayed organization.The method illustrates a new macroencapsulation paradigm that may allow transplantation of a large number of cells with microscale spatial control,while maintaining an encapsulation device that is easily maneuverable and remaining integrated following transplantation.This study aims to investigate the design principles that relate to the translational application of micropatterned encapsulation membranes,namely,the control over the transplantation density/quantity of arrayed microtissues and the fidelity of pre-formed microtissues to micropatterns.Agarose hydrogel membranes with microwell patterns were used as a model encapsulation system to exemplify these principles.Our results show that high-density micropatterns can be generated in hydrogel membranes,which can potentially maximize the percentage volume of cellular content and thereby the transplantation efficiency of the encapsulation device.Direct seeding of microtissues demonstrates that microwell structures can efficiently position and organize pre-formed microtissues,suggesting the capability of micropatterned devices for manipulation of cellular transplants at multicellular or tissue levels.Detailed theoretical analysis was performed to provide insights into the relationship between micropatterns and the transplantation capacity of membrane-based encapsulation.Our study lays the ground for developing new macroencapsulation systems with microscale cellular/tissue patterns for regenerative transplantation. 展开更多
关键词 HYDROGEL MICROPATTERN array multi-cellular spheroids macroencapsulation
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