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21.
鳞木目小孢子叶球山西鳞孢穗(新种)的解剖特征   总被引:1,自引:0,他引:1  
描述了山西太原西山煤田太原组7号煤层煤核中一种鳞木目的小孢子叶球——山西鳞孢穗(新种)(Lepidostrobusshanxiense sp. nov.)。其主要特征是:孢子叶球较小,长3.5 cm 以上,直径1.6~1.8 cm 。轴具管状中柱,孢子叶螺旋状着生于轴上。孢子叶柄长6~7 m m ,远端叶片长1.2 cm 以上。孢子叶柄具翅,翅长2~2.5 m m 。小孢子囊可能呈袋形,长与孢子叶柄相近,宽约4.5 m m ,高2~3 m m ,以其长度的约2/3着生于孢子叶柄的腹面上。成熟的孢子囊壁仅由一层柱状细胞构成。小孢子直径68~77 μm ,具三缝,远极面具短刺  相似文献   
22.
In comparison to the vast literature on articular cartilage structure and function, relatively little is known about how articular cartilage forms during embryo-genesis and is endowed with unique phenotypic properties, most notably the ability to persist and function throughout postnatal life. In this minireview, we summarize recent studies from our laboratory suggesting that the extracellular matrix protein tenascin-C is involved in the genesis and function of articular chondrocytes. These and other data have led us to propose that tenascin-C may be part of in vivo mechanisms whereby articular chondrocytes develop at the epiphysis of long bone models, remain functional throughout postnatal life, and avoid the endochondral ossification process undertaken by the bulk of chondrocytes located in the metaphysis and diaphysis of skeletal models.  相似文献   
23.
Summary Fusiform cambial cells of the ash (Fraxinus excelsior L.), which are strongly elongated and vacuolated, contain a phragmosome which traverses the whole length of the cells during preprophase and karyokinesis and which remains present during cytokinesis until it is integrated in cell plate with adjacent cytoplasm.The phragmosome consists of a thin perforated cytoplasmic layer located in the plane of the future cell plate. Otherwise oriented transvacuolar cytoplasmic layers or strands are not present in these cells.The phragmosome contains cytoskeletal elements, namely microtubules and also microfilament bundles both of which are oriented mainly in longitudinal direction.The phragmosomal microtubules are a new category of microtubules associated with cell division; presumably they guide the centrifugally growing cell plate to the parental cell wall site previously marked by the preprophase band of microtubules.  相似文献   
24.
本文综述了外生菌根的形态学和解剖学特征,评价了这些特征用于外生菌根分类的价值,同时指出各种类型的形态学特征和解剖学特征与其营养吸收的关系。这些特征包括了菌根的颜色类型及变化、形状及分枝方式、外伸菌丝的多少及特征、根状菌索有无及分化、菌核有无及特征、菌套内外表面的菌丝排列及分化,菌套的切面特征,丹宁层厚度及分化、哈氏网的菌丝排列及厚度等。较详细阐述了100多年来,人们为外生菌根分类所作出的种种努力,并对各种分类方式作了简单的评价。  相似文献   
25.
Spatial patterns of the future elongation of cells exist in the early embroyo. In the newt, such a pattern of changers of cell shape contributes to the formation of the neural plate. Regardless of where neural plate. Regardless of where neural plte cells are transplanted, they change shape as prescribed by tge pattern. Embryonic induction has a role in establishing this pattern.  相似文献   
26.
A gular is reported in Pterothrissus belloci Cadenat and P. gissu Hilgendorf (Albuloidei, Pterothrissidae).  相似文献   
27.
目的:比较PauwelsⅢ型股骨颈骨折分别经单纯空心钉、空心钉加内侧支撑钢板治疗的临床疗效。方法:回顾性分析2016年3月~2019年2月期间收治的113例PauwelsⅢ型股骨颈骨折患者的临床资料,根据手术方式分为A组(n=55,单纯空心钉内固定治疗)和B组(n=58,空心钉加内侧支撑钢板治疗),比较两组患者围术期指标、髋关节功能、术后疼痛及复位质量,记录两组患者随访期间并发症发生情况。结果:B组术中出血量多于A组,手术时间长于A组(均P0.05);B组骨折愈合时间、完全负重时间短于A组(P0.05)。两组患者术后3个月、术后6个月髋关节Harrris评分呈升高趋势,视觉模拟评分量表(VAS)评分呈下降趋势(P0.05);B组术后3个月、术后6个月髋关节Harrris评分高于A组,VAS评分则低于A组(P0.05)。与术后3 d相比,A组患者术后6个月正位、侧位Garden指数降低(P0.05);B组术后6个月正位、侧位Garden指数评分高于A组(P0.05)。B组并发症发生率低于A组(P0.05)。结论:与单纯空心钉内固定治疗PauwelsⅢ型股骨颈骨折相比,空心钉加内侧支撑钢板虽然术中出血量多,手术时间略长,但其术后恢复效果更佳,且并发症发生率更低,临床应用价值较高。  相似文献   
28.
摘要 目的:探讨老年踝关节骨折患者的内固定方式的选择情况及不同内固定方式的疗效,进而指导临床医师根据患者的具体情况选择合适的内固定方式。方法:本研究为回顾性研究,选取我院2016年1月~2018年12月期间收治的老年踝关节骨折患者40例作为研究对象,统计患者一般情况,内容包括骨折块情况、骨折类型、骨质疏松情况、软组织情况与体质。术后随访12个月,评价所有患者末次随访时的踝关节跖屈度、踝关节背伸度、美国足踝外科协会(AOFAS)踝-后足功能评分,记录所有患者的骨折愈合时间。结果:40例研究对象中,使用克氏针张力带11例,Herbert螺钉10例,解剖锁定钢板7例,解剖复合钢板6例,1/3管型钢板6例。骨折块较小、外踝撕脱性骨折的患者主要应用克氏针张力带;伴有骨质疏松的患者主要应用解剖锁定钢板;软组织条件不佳或受损的患者主要应用Herbert螺钉或1/3管型钢板;超重或肥胖患者主要应用解剖复合钢板;瘦弱患者主要应用1/3管型钢板。末次随访时,5种内固定方式患者的踝关节背伸度、踝关节跖屈度、AOFAS踝-后足功能评分比较未见显著性差异(P>0.05)。5种内固定方式的骨折愈合时间对比差异存在统计学意义(P<0.05)。结论:老年踝关节骨折应根据患者具体情况选择合理的内固定方式,不同内固定方式患者的骨折愈合时间虽存在差异,但最终均可获得较为满意的疗效。  相似文献   
29.
In recent years, many fungal genomes have become publicly available. In combination with novel gene editing tools, this allows for accelerated strain construction, making filamentous fungi even more interesting for the production of valuable products. However, besides their extraordinary production and secretion capacities, fungi most often exhibit challenging morphologies, which need to be screened for the best operational window. Thereby, combining genetic diversity with various environmental parameters results in a large parameter space, creating a strong demand for time-efficient phenotyping technologies. Microbioreactor systems, which have been well established for bacterial organisms, enable an increased cultivation throughput via parallelization and miniaturization, as well as enhanced process insight via non-invasive online monitoring. Nevertheless, only few reports about microtiter plate cultivation for filamentous fungi in general and even less with online monitoring exist in literature. Moreover, screening under batch conditions in microscale, when a fed-batch process is performed in large-scale might even lead to the wrong identification of optimized parameters. Therefore, in this study a novel workflow for Aspergillus niger was developed, allowing for up to 48 parallel microbioreactor cultivations in batch as well as fed-batch mode. This workflow was validated against lab-scale bioreactor cultivations to proof scalability. With the optimized cultivation protocol, three different micro-scale fed-batch strategies were tested to identify the best protein production conditions for intracellular model product GFP. Subsequently, the best feeding strategy was again validated in a lab-scale bioreactor.  相似文献   
30.
Previous investigations into the optimisation of internal plates have mostly focused on the material properties of the implant. In this work, we optimise the shape, size and placement of the plate for successfully minimising bone remodelling around the implant. A design optimisation algorithm based on strain energy density criterion, combined with the finite element analysis, has been used in this study. The main optimisation goal was to reduce this change and keep it close to the conditions of an intact femur. The results suggest that the anterolateral side of the bone would be the optimum location for the plate, as for the geometry, the optimum moves towards having a thick, wide and short plate. These important results could be directly applicable to orthopaedic surgeons treating a femur fracture with internal plates. Since the optimisation algorithm remains the same for any patient, this advancement provides the surgeon with a tool to minimise the post surgery remodelling by trying to maintain the natural structure of the bone.  相似文献   
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