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hyaline cartilage相关的网络例句

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Objective Cartilage can be divided into three types: hyaline cartilage, elastic cartilage and fibrocartilage,according to different proportion of extra-cellular matrix.

目的:根据软骨细胞外基质的成分不同,将软骨分为透明软骨、弹性软骨和纤维软骨三种类型。

Results The tissue engineered tissue from 1 week group is more like fibrocartilage. From 2 week group,the tissue gradually transfer into hyaline cartilage and form more mature hyaline like cartilage in 4 weeks group.

结果:经组织学染色发现:在诱导的初期组织更偏向于纤维软骨,而从第二周开始组织逐渐向透明软骨转化,至第4周逐渐形成成熟的透明软骨样组织。

Results Same as hyaline cartilage, the calcified cartilage was stained light flavo-green and weak double refraction by the Picrosirius-polarization method. In the immunohistochemistry analysis of collagen Ⅱ protein, the calcified cartilage was stained strong green fluorescence and the collagen protein parallelled in joint surface near the tidemark. The content of collagen Ⅱ protein was (20.16%±0.96%) of tissue dry weight by amino acid analysis, and that of the hydroxyapatite was (65.09%±2.31%) of the inorganic composition in calcified cartilage.

结果 天狼猩红染色见钙化软骨层与透明软骨层一样黄绿色淡染、弱双折光性;Ⅱ型胶原蛋白免疫组织化学分析,钙化软骨层呈强绿色荧光,潮线附近的胶原蛋白呈板层平行分布;氨基酸定量分析钙化软骨层Ⅱ型胶原蛋白含量占组织干质量的(20.16%〖KG-*4〗±0.96%);X-射线衍射定量分析钙化软骨层中的羟基磷灰石含量占无机成分的(65.09%±2.31%)。

Autologous MSC can be obtained easily, their source in human are plenty, own active proliferation and potential to difference into chondroblast. Now MSC become the chief seed-cell in cartilage tissue engineer, but the technology to stimulate MSC differentiate into chondroblast is not very successful, the standard technology is culture the cell-ball in centrifuge tube, the reconstructured cartilage-like tissue is not achieve the mechanics of hyaline cartilage.

自体骨髓基质干细胞来源丰富,取材容易,具有旺盛的增殖能力及向成软骨细胞分化的潜能,已成为软骨组织工程的首选种子细胞,但MSC诱导分化为成软骨细胞且应用于软骨组织工程的技术尚不十分完善,目前主要采用的技术为细胞团块离心管培养,其构建的软骨组织在力学性能上很难达到关节软骨的要求。

Autologous MSC can be obtained easily,their source in human are plenty , own active proliferationand potential to difference into chondroblast. Now MSC become the chief seed-cell in cartilage tissue engineer , but the technology to stimulate MSC differentiate into chondroblast is not very successful,,the standard technology is culture the cell-ball in centrifuge tube,the reconstructured cartilage-like tissue is not achieve the mechanics of hyaline cartilage.

自体骨髓基质干细胞来源丰富,取材容易,具有旺盛的增殖能力及向成软骨细胞分化的潜能,已成为软骨组织工程的首选种子细胞,但MSC诱导分化为成软骨细胞且应用于软骨组织工程的技术尚不十分完善,目前主要采用的技术为细胞团块离心管培养,其构建的软骨组织在力学性能上很难达到关节软骨的要求。

Now MSC become the chief seed-cell in cartilage tissue engineer, but the technology to stimulate MSC differentiate into chondroblast is not very successful,,the standard technology is culture the cell-ball in centrifuge tube,the reconstructured cartilage-like tissue is not achieve the mechanics of hyaline cartilage.

软骨组织工程的材料学研究主要体现在两类基质材料方面的进展,一类为天然基质材料,如胶原、壳聚糖、纤维素等;一类为人工合成可降解材料,如PGA、PLA等,但两者在来源、塑形能力及细胞识别信号等方面存在不足。

The human cartilages are composed of chondrocyte and extracellular matrix,the form of chondrocytes are hypertrophy and the quantity are less;the ECM of cartilage are compised of type II collagen and proteoglycan. Articular cartilages are all hyaline with little fibers. Trauma and arthritis are the main cause of cartilage injury,the ommilayer injury ofcartilage can be recovered by marrow,but because of without stimulation mechanism,the new tissues are merely fibrocartilages,they can not be coincide with hyaline cartilage in menchanics;the purely damage of articular cartilage can not stimulate chondrocyte to regenerate because of without blood circulation,thus,the plerosis of articular catilage can not depend on the proliferation of local chondrocyte.Ever since,people tried their best to find a way to reconstruct articular cartilage.

造成人体关节软骨损伤的原因主要为创伤和关节炎,关节软骨全层损伤可由于骨髓中间充质干细胞的高速增殖修复,但这种修复由于缺乏相应的刺激机制,只能形成纤维软骨,而不能形成符合关节生理、力学要求的透明软骨;单纯软骨部分损伤软骨组织内无血管,软骨细胞迁移迟缓,无法使损伤区域软骨细胞再生,因此,关节炎及关节创伤后的软骨修复不能依赖于软骨细胞的增殖和迁移。

The human cartilages are composed of chondrocyte and extracellular matrix , the form of chondrocytes are hypertrophy and the quantity are less; the ECM of cartilage are compised of type Ⅱ collagen and proteoglycan. Articular cartilages are all hyaline with little fibers. Trauma and arthritis are the main cause of cartilage injury, the ommilayer injury ofcartilage can be recovered by marrow, but because of without stimulation mechanism, the new tissues are merely fibrocartilages, they can not be coincide with hyaline cartilage in menchanics; the purely damage of articular cartilage can not stimulate chondrocyte to regenerate because of without blood circulation, thus, the plerosis of articular catilage can not depend on the proliferation of local chondrocyte.

造成人体关节软骨损伤的原因主要为创伤和关节炎,关节软骨全层损伤可由于骨髓中间充质干细胞的高速增殖修复,但这种修复由于缺乏相应的刺激机制,只能形成纤维软骨,而不能形成符合关节生理、力学要求的透明软骨;单纯软骨部分损伤软骨组织内无血管,软骨细胞迁移迟缓,无法使损伤区域软骨细胞再生,因此,关节炎及关节创伤后的软骨修复不能依赖于软骨细胞的增殖和迁移。

The human cartilages are composed of chondrocyte and extracellular matrix , the form of chondrocytes are hypertrophy and the quantity are less; the ECM of cartilage are compised of type Ⅱ collagen and proteoglycan. Articular cartilages are all hyaline with little fibers. Trauma and arthritis are the main cause of cartilage injury, the ommilayer injury ofcartilage can be recovered by marrow, but because of without stimulation mechanism, the new tissues are merely fibrocartilages, they can not be coincide with hyaline cartilage in menchanics; the purely damage of articular cartilage can not stimulate chondrocyte to regenerate because of without blood circulation, thus, the plerosis of articular catilage can not depend on the proliferation of local chondrocyte. Ever since, people tried their best to find a way to reconstruct articular cartilage.

中文题名人骨髓基质干细胞成软骨诱导及多孔复合材料作为细胞载体的体外实验研究副题名外文题名 Cartilage induction of human mesenchymal stem cells and experiment on compound porous materials as cells' scaffold in vitro 论文作者刘晓岚导师周江南学科专业外科学研究领域\研究方向学位级别博士学位授予单位中南大学学位授予日期2003 论文页码总数68页关键词骨组织工程软骨细胞骨髓基质干细胞壳聚糖高分子外消旋聚乳酸馆藏号BSLW /2003 /R68 /10 造成人体关节软骨损伤的原因主要为创伤和关节炎,关节软骨全层损伤可由于骨髓中间充质干细胞的高速增殖修复,但这种修复由于缺乏相应的刺激机制,只能形成纤维软骨,而不能形成符合关节生理、力学要求的透明软骨;单纯软骨部分损伤软骨组织内无血管,软骨细胞迁移迟缓,无法使损伤区域软骨细胞再生,因此,关节炎及关节创伤后的软骨修复不能依赖于软骨细胞的增殖和迁移。

The improved FS-3D-TrueFISP sequence has higher sensitivity for detecting hyaline cartilage defects in knee joint. Use of this technique may strengthen the role of MR imaging for detecting hyaline cartilage defects.

结论经过合理改良后的FS-3D-TrueFISP序列对于膝关节软骨缺损性病变具有较高的敏感性,应用这一技术有助于膝关节软骨缺损性病变的诊断。

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