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101.
关节镜清理术治疗前踝撞击征的疗效 总被引:3,自引:0,他引:3
目的:探讨踝关节镜对前踝撞击征的诊疗价值。方法:采用关节镜清理术治疗前踝撞击综合征33例,其中男23例,女10例。年龄平均39岁(18~72岁)。左踝16例,右踝17例。病史6个月至20年,有运动损伤史13例,踝关节扭伤病史17例,踝关节骨折史3例。临床表现为踝关节肿胀、疼痛和下蹲活动受限。X线片显示胫骨前唇和距骨骨质增生,MRI显示距骨软骨损伤,踝关节腔内积液。采用局麻关节镜下骨赘磨削,滑膜切除,踝关节清理术。结果:随访33例,平均时间35个月(4个月-6年)。术后踝关节背伸活动功能正常,按照McGuire踝关节评分系统对术前、术后踝关节功能进行评估,术前平均55分,术后平均80分,术后提高了25分。优13例,良15例,可3例,差2例,优良率84.8%。结论:局麻下踝关节镜骨赘切除、滑膜刨削和软骨修整可有效解除踝关节撞击症状,手术创伤小、功能恢复快,效果满意。 相似文献
102.
Role of cartilage collagen fibrils networks in knee joint biomechanics under compression 总被引:1,自引:0,他引:1
Collagen fibrils networks in knee cartilage and menisci change in content and structure from a region to another. While resisting tension, they influence global joint response as well as local strains particularly at short-term periods. To investigate the role of fibrils networks in knee joint mechanics and in particular cartilage response, a novel model of the knee joint is developed that incorporates the cartilage and meniscus fibrils networks as well as depth-dependent properties in cartilage. The joint response under up to 2000 N compression is investigated for conditions simulating the absence in cartilage of deep fibrils normal to subchondral bone or superficial fibrils parallel to surface as well as localized split of cartilage at subchondral junction or localized damage to superficial fibrils at loaded areas. Deep vertical fibrils network in cartilage play a crucial role in stiffening (by 10%) global response and protecting cartilage by reducing large strains (from maximum of 102% to 38%), in particular at subchondral junction. Superficial horizontal fibrils protect the tissue mainly from excessive strains at superficial layers (from 27% to 8%). Local cartilage split at base disrupts the normal function of vertical fibrils at the affected areas resulting in higher strains.Deep fibrils, and to a lesser extent superficial fibrils, play dominant mechanical roles in cartilage response under transient compression. Any treatment modality attempting to repair or regenerate cartilage defects involving partial or full thickness osteochondral grafts should account for the crucial role of collagen fibrils networks and the demanding mechanical environment of the tissue. 相似文献
103.
Beimers L Tuijthof GJ Blankevoort L Jonges R Maas M van Dijk CN 《Journal of biomechanics》2008,41(7):1390-1397
Understanding in vivo subtalar joint kinematics is important for evaluation of subtalar joint instability, the design of a subtalar prosthesis and for analysing surgical procedures of the ankle and hindfoot. No accurate data are available on the normal range of subtalar joint motion. The purpose of this study was to introduce a method that enables the quantification of the extremes of the range of motion of the subtalar joint in a loaded state using multidetector computed tomography (CT) imaging. In 20 subjects, an external load was applied to a footplate and forced the otherwise unconstrained foot in eight extreme positions. These extreme positions were foot dorsiflexion, plantarflexion, eversion, inversion and four extreme positions in between the before mentioned positions. CT images were acquired in a neutral foot position and each extreme position separately. After bone segmentation and contour matching of the CT data sets, the helical axes were determined for the motion of the calcaneus relative to the talus between four pairs of opposite extreme foot positions. The helical axis was represented in a coordinate system based on the geometric principal axes of the subjects’ talus. The greatest relative motion between the calcaneus and the talus was calculated for foot motion from extreme eversion to extreme inversion (mean rotation about the helical axis of 37.3±5.9°, mean translation of 2.3±1.1 mm). A consistent pattern of range of subtalar joint motion was found for motion of the foot with a considerable eversion and inversion component. 相似文献
104.
Fuller RC 《Evolution; international journal of organic evolution》2008,62(12):3056-3068
Measuring reproductive isolation across multiple generations and environments is a key endeavor in speciation research because it indicates which isolating barriers currently prevent introgression and the extent to which they are intrinsic versus environmentally dependent. Here, I present data from several crosses (parental crosses, F1s, F2s, back-crosses) between two species of killifish (Lucania goodei and L. parva) that have diverged along a salinity gradient (L. goodei--freshwater, L. parva--euryhaline). Offspring were raised under high and low salinity to test for (1) extrinsic isolation, (2) intrinsic isolation manifested through genetic incompatibilities, and (3) environmentally dependent genetic incompatibilities. I found evidence for both intrinsic and extrinsic isolation, but no evidence for environmentally dependent genetic incompatibilities. The presence of extrinsic and intrinsic isolation varied among fitness measures, and all forms of reproductive isolation were asymmetric. Early egg survival was independent of salinity, but demonstrated pronounced intrinsic isolation. Both extrinsic and intrinsic isolation existed for egg hatching and survival of fry to the eating stage. Unfortunately, the order in which extrinsic and intrinsic isolation arose is unresolved. Understanding the extent to which adaptation to salinity creates multiple forms of reproductive isolation is critical for understanding diversification in many fish taxa. 相似文献
105.
Tissue-engineered fibrocartilage could become a feasible option for replacing tissues such as the knee meniscus or temporomandibular joint disc. This study employed five growth factors (insulin-like growth factor-I, transforming growth factor-beta1, epidermal growth factor, platelet-derived growth factor-BB, and basic fibroblast growth factor) in a scaffoldless approach with costal chondrocytes, attempting to improve biochemical and mechanical properties of engineered constructs. Samples were quantitatively assessed for total collagen, glycosaminoglycans, collagen type I, collagen type II, cells, compressive properties, and tensile properties at two time points. Most treated constructs had lower biomechanical and biochemical properties than the controls with no growth factors, suggesting a detrimental effect, but the treatment with insulin-like growth factor-I tended to improve the constructs. Additionally, the 6-week time point was consistently better than that at 3 weeks, with total collagen, glycosaminoglycans, and aggregate modulus doubling during this time. Further optimization of the time in culture and exogenous stimuli will be important in making a more functional replacement tissue. 相似文献
106.
The temporomandibular joint (TMJ) is a unique synovial joint whose development differs from the formation of other synovial joints. Mutations have been associated with the developmental defects of the TMJ only in a few genes. In this study, we report the expression of the homeobox gene Shox2 in the cranial neural crest derived mesenchymal cells of the maxilla-mandibular junction and later in the progenitor cells and undifferentiated chondrocytes of the condyle as well as the glenoid fossa of the developing TMJ. A conditional inactivation of Shox2 in the cranial neural crest-derived cells causes developmental abnormalities in the TMJ, including dysplasia of the condyle and glenoid fossa. The articulating disc forms but fuses with the fibrous layers of the condyle and glenoid fossa, clinically known as TMJ ankylosis. Histological examination indicates a delay in development in the mutant TMJ, accompanied by a significantly reduced rate of cell proliferation. In situ hybridization further demonstrates an altered expression of several key osteogenic genes and a delayed expression of the osteogenic differentiation markers. Shox2 appears to regulate the expression of osteogenic genes and is essential for the development and function of the TMJ. The Shox2 conditional mutant thus provides a unique animal model of TMJ ankylosis. 相似文献
107.
Motion control of musculoskeletal systems with redundancy 总被引:1,自引:0,他引:1
Motion control of musculoskeletal systems for functional electrical stimulation (FES) is a challenging problem due to the
inherent complexity of the systems. These include being highly nonlinear, strongly coupled, time-varying, time-delayed, and
redundant. The redundancy in particular makes it difficult to find an inverse model of the system for control purposes. We
have developed a control system for multiple input multiple output (MIMO) redundant musculoskeletal systems with little prior
information. The proposed method separates the steady-state properties from the dynamic properties. The dynamic control uses
a steady-state inverse model and is implemented with both a PID controller for disturbance rejection and an artificial neural
network (ANN) feedforward controller for fast trajectory tracking. A mechanism to control the sum of the muscle excitation
levels is also included. To test the performance of the proposed control system, a two degree of freedom ankle–subtalar joint
model with eight muscles was used. The simulation results show that separation of steady-state and dynamic control allow small
output tracking errors for different reference trajectories such as pseudo-step, sinusoidal and filtered random signals. The
proposed control method also demonstrated robustness against system parameter and controller parameter variations. A possible
application of this control algorithm is FES control using multiple contact cuff electrodes where mathematical modeling is
not feasible and the redundancy makes the control of dynamic movement difficult. 相似文献
108.
109.
大豆对斜纹夜蛾幼虫抗性遗传的发展表达过程 总被引:11,自引:1,他引:10
采用植物数量性状遗传体系分离分析方法,通过4个感抗杂交组合研究了在网室人工接入斜纹夜蛾幼虫的条件下大豆抗斜纹夜蛾植株反应发育过程的遗传。不论P1、P2、F1、F2、F2:3多世代联合分析或单个分离世代分析,结果均表明大豆对斜纹夜蛾幼虫的抗性为两对主基因 多基因遗传模式。但在大豆生长发育的不同时期,随害虫数量的变化,其抗虫性遗传呈动态变化过程。在两对主基因充分表达日期,主基因的遗传率较高,达70.40%-99.21%,环境影响较小;多基因遗遗传率较低,为0.00%-22.29%。 相似文献
110.
Robert D. Jurmain 《American journal of physical anthropology》1980,53(1):143-150
Patterns of degenerative joint disease are investigated in the shoulder, elbow, hip, and knee joints of the macerated remains of approximately 800 individuals from 20th century American and two prehistoric populations. Age is an important contributory factor in all joints, but its effects are seen most directly in the shoulder and hip. Patterns of right-left involvement also indicate the elbow is the most susceptible area to local factors. Multiple joint involvement is seen more often in females from contemporary populations but more often in males from archeological groups. No significant association is found between degenerative involvement and osteometric measurements, and cause of death is probably only incidentally associated with degenerative disease. 相似文献