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1.
植物的很多重要经济性状均属于复杂性状。基于连锁分析的QTL作图是研究复杂性状的有效手段,但其尚存在一定的局限性。随着现代生物学的发展,一种基于连锁不平衡的新剖分复杂性状方法——关联分析法,开始应用于植物遗传学研究。与QTL作图法相比,应用关联分析法具有不需要构建特殊的群体,可同时对多个等位基因进行分析,定位QTL精度可达到单基因水平等优势。该文介绍了关联分析方法学的基础和特性,简述了其在植物遗传学研究中的进展情况,并对其未来发展和在植物遗传学研究中的应用进行了展望。  相似文献   

2.
关联分析及其在植物遗传学研究中的应用   总被引:4,自引:0,他引:4  
植物的很多重要经济性状均属于复杂性状。基于连锁分析的QTL作图是研究复杂性状的有效手段, 但其尚存在一定的局限性。随着现代生物学的发展, 一种基于连锁不平衡的新剖分复杂性状方法--关联分析法, 开始应用于植物遗传学研究。与QTL作图法相比, 应用关联分析法具有不需要构建特殊的群体, 可同时对多个等位基因进行分析, 定位QTL精度可达到单基因水平等优势。该文介绍了关联分析方法学的基础和特性, 简述了其在植物遗传学研究中的进展情况, 并对其未来发展和在植物遗传学研究中的应用进行了展望。  相似文献   

3.
同心圆变量分析法在整体低温生理研究中的应用   总被引:3,自引:0,他引:3  
为了探寻适合于整体研究特点——多系统、多功能及大量生理信息的分析研究方法,我们曾在浸泡性体温过低动物实验中,利用微机等技术手段获取了大量生理参数,并用同心圆变量分析法及相关分析进行处理,揭示了进行性体温过低症某些较复杂的病理生理改变。本研究以该动物模型为例,侧重从方法学角度介绍同心圆变量分析法及其在整体低温生理研究中的应用。 1 材料和方法 健康成年狗22只,雄性,体重13~20kg,戊巴  相似文献   

4.
胸腰椎活动节段三维有限元模型及临床意义   总被引:6,自引:0,他引:6  
本文采用三维有限元法建立胸腰椎脊柱活动节段的三维有限元模型,模型了377个节点,共组成449个单元,包括椎体,椎间盘,后部结构以及韧带等部分,并对模型有效性进行了考核,结果基本一致,作者认为该模型对研究在不同载荷下胸腰椎脊柱应力分布及力学特性具有一定的临床意义。  相似文献   

5.
曹旭栋  黄浩  张文俊  张亚俊  徐东来 《蛇志》2009,21(3):202-203
目的为了探讨AF系统手术在治疗胸腰椎骨折脱位中的效果及中医药在促进胸腰椎骨折脱位康复中的作用。方法选取46例胸腰椎骨折脱位患者.随机分成两组(手术组和手术加中药组),手术组切开复位采用AF系统内固定,手术加中药组在手术前后辨证给予中药治疗,平均随访2.5年,并分别于装、取内固定物时取标本行组织切片,观察患者症状改善及组织学改变情况。结果两组胸腰椎骨折脱位均达良好的复位固定(P〉0.01);两组症状恢复比较,手术加中药组优于手术组(P〈0.01);组织学观察发现取出内固定时手术组组织较致密。结论AF系统手术能使胸腰椎骨折脱位达到满意的复位及固定.中药的使用促进了病人康复。  相似文献   

6.
分析基因表达图式的新方法   总被引:5,自引:0,他引:5  
随着基因组研究的深入进行,基因的分子生物学除了要寻找在生物学上重要的个别基因并研究其结构与功能外,更重要的应是了解整个基因组的功能活动,即细胞全部基因的表达图式.要解决如此复杂的问题就必须在研究方法上有所创新,基因表达系列分析法、cDNA微阵列分析法、DNA微芯片分析法等正是近几年发展起来的分析基因表达图式的新方法.  相似文献   

7.
目的:探究骨密度与老年髋部骨折股骨近端三维有限元模型密度的关系。方法:选取8 例老年髋部骨折,其中4 例股骨颈骨 折,4 例股骨转子间骨折;左侧肢体3 例,右侧肢体5 例。分别测定腰椎骨密度和双侧髋关节CT 资料,运用Mimics软件和abaqus 软件对健侧股骨近端进行重建和计算出该模型的密度。结果:股骨转子间骨折组腰椎骨密度为(-4.05± 0.24) g/cm2,三维有限元模 型密度为[(1.15± 0.02)× 106],均低于股骨颈骨折组的(-3.15± 0.54) g/cm2,[(1.34± 0.06)× 106],两组比较差异均有统计学意义(均 P<0.05)。腰椎的骨密度与三维有限元模型密度成线性正相关(r=0.881,P=0.004)。结论:骨密度与老年髋部骨折股骨近端三维有限 元模型密度成线性正相关的关系,可为进一步用有限元分析法探讨老年髋部骨折部位与骨密度的关系提供理论依据。  相似文献   

8.
土壤动物食物网研究方法   总被引:1,自引:0,他引:1  
长期以来关于陆地生态系统的研究都集中在地上部分,而对于地下部分知之甚少。地下生态系统营养关系是生态系统中各生物成员之间最重要的联系,是物质循环、能量流动的重要载体。研究土壤动物食物网已成为现代地下/土壤生态学研究的热点与前沿。由于土壤动物的个体小、食性复杂、栖息环境隐蔽等原因,使得对土壤动物食物网的研究困难重重,所以选择合适的研究方法尤为重要。本文总结了国际上近几十年来土壤动物食物网研究方法,将其分为传统方法(野外直接观察法、室内培养实验观察法、显微镜下肠容物分析法)、常用方法(消化酶分析法、脂肪酸分析法、稳定同位素技术、特定化合物分子的稳定同位素分析技术)和现代分子方法(DNA分子跟踪食物链网络技术、单克隆抗体技术)3大类,具体介绍了每一种方法的发展历史和应用现状。根据土壤动物自身特性及对各方法的优势与劣势的比较,脂肪酸分析法和稳定同位素分析法是当前土壤动物食物网研究的常用方法;随着未来物种分子鉴定技术的改进和数据库的积累,DNA分子跟踪食物链网络技术将会成为未来的主流发展方向。  相似文献   

9.
目的:建立人工半骨盆假体置换与联合腰椎椎弓根螺钉固定后的三维有限元模型,评价腰骶段生物力学改变后半骨盆假体力学结构的特点。方法:采用CT薄层扫描采集原始数据,分别建立正常骨盆、半骨盆假体置换术后以及半骨盆假体置换联合腰椎椎弓根螺钉固定术后骨盆的三维有限元模型,分别在第4腰椎上终板平面施以500 N的垂直纵向载荷,分析不同骨盆模型的应力分布特点。结果:与正常骨盆有限元模型相比,半骨盆假体置换术后健侧骨盆应力分布以骶髂关节、髋臼窝及耻骨为主,置换侧半骨盆假体以耻骨连接棒、髋臼杯及髂骨座为主,最大应力出现在耻骨连接棒,应力峰值为65.62 MPa。联合腰椎椎弓根螺钉固定后健侧应力相对减小,置换侧髂骨固定座与骶骨固定处应力相对减小,应力分布以腰椎椎弓根钉棒、耻骨连接棒及髋臼杯为主,最大应力出现在椎弓根螺钉,应力峰值为107 MPa。结论:半骨盆假体置换联合腰椎椎弓根螺钉固定后钉棒分担了半骨盆置换后健侧骨盆及置换侧髂骨固定座与骶骨固定处附近的部分应力,缓解应力集中现象,降低术后骨盆破坏风险,一定程度上增加了半骨盆置换后骨盆的稳定性。  相似文献   

10.
目的:探讨在胸腰椎后路内固定手术术后早期伤口感染后使用负压封闭引流技术在保留内固定治疗中的应用。方法:回顾性分析我院2008年1月~2013年6月胸腰椎后路内固定术后感染的14例患者,应用敏感抗生素,保留内固定、彻底清创并结合负压封闭引流治疗伤口感染。结果:14例病人经过采用负压引流术,感染得到控制,内固定得以保留。随访9~36个月,患者感染均未再复发。结论:对于胸腰椎后路内固定术后早期感染,应用负压封闭引流可以有效控制感染,利于伤口的早期愈合,治疗腰椎后路内固定术后感染保留内固定装置治疗行之有效。  相似文献   

11.
目的研究LISS-DF治疗股骨远端骨折近端螺钉不同固定方式对应力分布规律的影响,寻找符合生物力学原理的固定方式,为临床应用提供理论依据。方法在ANSYS9.0软件中建立LISS-DF钢板固定股骨远端骨折(AO/OTA33-A3型)的实体模型和有限元模型。在近端螺钉不同单、双皮质固定方式下,通过模拟生理应力做轴向加载实验并进行有限元计算和分析。结果1、3孔单2、4孔双皮质固定时,近端螺钉最大应力值在不同固定方式中最小为24.21975Mpa,位移值为0.131424um与其它固定方式相当且均较小,说明该固定方式可以取得较好的力学效果。结论近端螺钉靠近骨折端处双皮质固定,其余螺钉间隔单双皮质固定时,可以减少应力集中现象,得到更好的把持力,使固定更牢固,从而降低固定失败的风险性。  相似文献   

12.
The Finite Element Method (FEM) can be used to analyze very complex geometries, such as the pelvis, and complicated constitutive behaviors, such as the heterogeneous, nonlinear, and anisotropic behavior of bone tissue or the noncompression, nonbending character of ligaments. Here, FEM was used to simulate the mechanical ability of several external and internal fixations that stabilize pelvic ring disruptions. A customized pelvic fracture analysis was performed by computer simulation to determine the best fixation method for each individual treatment. The stability of open-book fractures with external fixations at either the iliac crests or the pelvic equator was similar, and increased greatly when they were used in combination. However, external fixations did not effectively stabilize rotationally and vertically unstable fractures. Adequate stabilization was only achieved using an internal pubis fixation with two sacroiliac screws.  相似文献   

13.
利用有限元分析软件Ansys对离体心血管循环系统中的层流装置(矩形腔)内的流体进行分析,显示流体的速度向量图、压力分布图,用于研究血动力学因素对人工培养的内皮细胞生物学特征性影响。  相似文献   

14.
This paper is written to honor Professor Y. C. Fung, the applied mechanician who has made seminal contributions in biomechanics. His work has generated great spin-off utility in the field of musculoskeletal biomechanics. Following the concept of the Rigid Body-Spring Model theory by T. Kawai (1978) for non-linear analysis of beam, plate, and shell structures and the soil-gravel mixture foundation, we have derived a generalized Discrete Element Analysis (DEA) method to determine human articular joint contact pressure, constraining ligament tension and bone-implant interface stresses. The basic formulation of DEA to solve linear problems is reviewed. The derivation of non-linear springs for the cartilage in normal diarthrodial joint contact problem was briefly summarized. Numerical implementation of the DEA method for both linear and non-linear springs is presented. This method was able to generate comparable results to the classic contact stress problem (the Hertzian solution) and the use of Finite Element Modeling (FEM) technique on selected models. Selected applications in human knee and hip joints are demonstrated. In addition, the femoral joint prosthesis stem/bone interface stresses in a non-cemented fixation were analyzed using a 2D plane-strain approach. The DEA method has the advantages of ease in creating the model and reducing computational time for joints of irregular geometry. However, for the analysis of joint tissue stresses, the FEA technique remains the method of choice.  相似文献   

15.
16.
The study aimed to develop efficient techniques with different novel graft structures to enhance the treatment of acetabular bone deficiency.The inhomogeneous material properties Finite Element Analysis(FEA)model was reconstructed according to computed tomography images based on a healthy patient without any peri-acetabular bony defect according to the Ameri-can Academy of Orthopedic Surgeons(AAOS).The FEA model of acetabular bone deficiency was performed to simulate and evaluate the mechanical performances of the grafts in different geometric structures,with the use of fixation implants(screws),along with the stress distribution and the relative micromotion of graft models.The stress distribution mainly con-centrated on the region of contact of the screws and superolateral bone.Among the different structures,the mortise-tenone structure provided better relative micromotion,with suitable biomechanical property even without the use of screws.The novel grafting structures could provide sufficient biomechanical stability and bone remodeling,and the mortise-tenone structure is the optimal treatment option for acetabulum reconstruction.  相似文献   

17.
In order to optimize defibrillation electrode systems for ventricular defibrillation thresholds (DFTs), a Finite Element Torso model was built from fast CT scans of a patient who had large cardiac dimensions (upper bound of normal) but no heart disease. Clinically used defibrillation electrode configurations, i.e. Superior Vena Cava (SVC) to Right Ventricle (RV) (SVC-RV), left pectoral Can to RV (Can-RV) and Can + SVC-RV, were analyzed. The DFTs were calculated based on 95% ventricular mass having voltage gradient> 5 V/cm and these results were also compared with clinical data. The low voltage gradient regions with voltage gradient < 5 V/cm were identified and the effect of electrode dimension and location on DFTs were also investigated for each system. A good correlation between the model results and the clinical data supports the use of Finite Element Analysis of a human torso model for optimization of defibrillation electrode systems. This correlation also indicates that the critical mass hypothesis is the primary mechanism of defibrillation. Both the FEA results and the clinical data show that Can + SVC-RV system offers the lowest voltage DFTs when compared with SVC-RV and Can-RV systems. Analysis of the effect of RV, SVC and Can electrode dimensions and locations can have an important impact on defibrillation lead designs.  相似文献   

18.
Dinosaurs had a wide variety of feeding mechanisms that strongly impacted on their ecology and evolution. Here, we show how novel application of technologies borrowed from medicine and engineering, such as CT scanning and Finite Element Analysis, have recently been combined with traditional approaches to result in significant advances in our understanding of dinosaur palaeobiology. Taxon-specific studies are providing quantitative data that can be used to generate and test functional hypotheses relating to jaw mechanics and feeding behaviour. In turn, these data form a basis for investigating larger scale patterns of ecological and macroevolutionary change, such as possible coevolutionary interactions and the influence of feeding adaptations on species richness, which are of more general interest to ecologists and evolutionary biologists.  相似文献   

19.
<正> Ceramics are good alternative to metal as bearing couple materials because of their better wear resistance. A Finite Element(FE) study was performed to investigate the contact mechanics and stress distribution of Ceramic-on-Ceramic (COC) hip resurfacingprostheses. It was focused in particular on a parametric study to examine the effects of radial clearance, loading,alumina coating on the implants, bone quality, and fixation of cup-bone interface. It was found that a reduction in the radialclearance had the most significant effect on the predicted contact pressure distribution among all of the parameters considered inthis study. It was determined that there was a significant influence of non-metallic materials, such as the bone underneath thebearing components, on the predicted contact mechanics. Stress shielding within the bone tissue was found to be a major concernwhen regarding the use of ceramic as an alternative to metallic resurfacing prostheses. Therefore, using alumina implantswith a metal backing was found to be the best design for ceramic resurfacing prostheses in this study. The loading, bone quality,and acetabular cup fixation conditions were found to have only minor effects on the predicted contact pressure distribution alongthe bearing surfaces.  相似文献   

20.
The occurrence and management of Pressure Ulcers remain a major issue for patients with reduced mobility and neurosensory loss despite significant improvement in the prevention methods. These injuries are caused by biological cascades leading from a given mechanical loading state in tissues to irreversible tissue damage. Estimating the internal mechanical conditions within loaded soft tissues has the potential of improving the management and prevention of PU. Several Finite Element models of the buttock have therefore been proposed based on either MRI or CT-Scan data. However, because of the limited availability of MRI or CT-Scan systems and of the long segmentation time, all studies in the literature include the data of only one individual. Yet the inter-individual variability can’t be overlooked when dealing with patient specific estimation of internal tissue loading. As an alternative, this contribution focuses on the combined use of low-dose biplanar X-ray images, B-mode ultrasound images and optical scanner acquisitions in a non-weight-bearing sitting posture for the fast generation of patient-specific FE models of the buttock. Model calibration was performed based on Ischial Tuberosity sagging. Model evaluation was performed by comparing the simulated contact pressure with experimental observations on a population of 6 healthy subjects. Analysis of the models confirmed the high inter-individual variability of soft tissue response (maximum Green Lagrange shear strains of 213 ± 101% in the muscle). This methodology opens the way for investigating inter-individual factors influencing the soft tissue response during sitting and for providing tools to assess PU risk.  相似文献   

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