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After the biomechanical finite element analysis for the three-dimensional reconstruction model, we find the structure of the deformed nose showes the following characteristics: 1, Nasal septum, nasal columella, lateral feet of nasal alar, lateral nasal dorsum are stress concentrated regions, that is the key mechanical positions of deformed nose; 2, Under the static state, nasal deformation has a very small value of stress distribution, under displacement load status, the deformed nasal has a large value of the stress distribution; 3, Ipsilateral nasal columella are the the key mechanical parts of deformed nasal rectify. And lateral nasal alar is also the most stress concentrated areas.

对于重建后的单侧唇裂鼻畸形鼻部模型进行有限元生物力学研究,发现畸形鼻的力学结构呈现以下特点:1、鼻中隔、鼻小柱、鼻翼外侧脚、鼻背外侧是单侧唇裂鼻畸形应力分布的集中部位,也就是畸形鼻部的力学关键部位;2、在静态状态下,畸形鼻部拥有的应力分布值很小,在位移载荷状态下,形变后的畸形鼻部拥有的较大的应力分布值;3、单侧唇裂鼻畸形整复中,鼻小柱患侧部是畸形整复的力学关键部位,其次就是患侧鼻翼部。

Firstly, full factorial experiment method is implemented to achieve an optimization of longitudinal microstructure design in the incidence plane of a LGP for LED BLUs. There are three control factors involving in the optimization process: the pitch and depth of both V-cut and U-cut, and angle and radius for V-cut and U-cut, respectively. Each individual control factor has three levels. It leads to a total of 27 sets of experiments.

本实验先行讨论全因子实验求取发光二极体背光模组之导光板入光侧纵沟微结构最佳化设计,选定入光侧V-cut纵沟微结构控制因子:V-cut角、V-cut间距、V-cut深及入光侧U-cut纵沟微结构控制因子:U-cut半径、U-cut间距、U-cut深等项目,其中各一因子分别有三个水准变化,依控制因子及其水准的目各进行27组实验。

From 136 to 138, the expres- sion retrieved ventrally and expressed at the ventral half of the central tube (137) and the ventral horn especially in motor neurons (E7 and E8). Thus, the dorsal terminating axons relating to nociception and thermore?

到民至 Es麻Sema 3A的mRN的表达向腹侧撤退,主要在脊髓中央管周围的腹侧和前角运动神经元,这样使背侧投射性的痛温觉神经元轴突仅进入脊髓后角第 I、11层而不进一步向腹侧投射。

The CGRP-positive fibers in the MrD of the striatum connected dorsally with the bed nucleus of the stria terminals through the stria terminals, ventrally with the amygdaloid nucleus, and caudally with the CGRP-positive cell bodies in the lateral part of the substantia nigra and its dorsolateral area.(4) The CGRP-positive fibers connected mainly with the central amygdaloid nucleus, and less with the medial amygdaloid nucleus; the CGRP-positive fibers in the lateral border of the caudate putamen connected mainly with the central amygdaloid nucleus as well.

并与边缘区的CGRP阳性纤维带之间存在较多的横向联系纤维;(3)纹状体边缘区的CGRP阳性纤维向背侧通过终纹与吻侧的终纹床核联系,向腹侧与杏仁核的CGRP阳性纤维相连,向尾侧和中脑黑质外侧部及其背外侧区的CGRP阳性胞体相连;(4)边缘区的CGRP阳性纤维主要与杏仁中央核相联系,少量与杏仁内侧核相联系;尾壳核外侧缘的CGRP阳性纤维也主要与杏仁中央核相联系。

Treatment is conducted with a single posterior spinal field abutting two lateral cranial fields. The opposed lateral fields are half-blocked and the inferior line is perpendicular. The posterior field uses some fixed field parameters so that the cephalad edge of the posterior field is coplanar with the caudal edges of the lateral fields and it is independent of the height of the couch.

治疗采用2个侧向全颅野加一个背侧的全脊髓野,2侧全颅野采用半野技术,下界共面并垂直于地面;固定全脊髓野一些参数以方便设计及摆位,并且上界与全颅野下界共面。

The descending one is the continuing of dorsal branch, it crosses the ulnar edge of the fifth metecarpal bone and anastomizes with the digital artery of little finger or hypothenar branch of deep palmar (accounted for 70%).

降支为腕背支的延续,经第5掌骨尺侧缘直达掌骨头颈处与小指动脉尺侧支或掌深弓小鱼际支相吻合占70%;降支至豌豆骨附近变为纤细,由小指动脉尺侧支或掌深弓小鱼际支上行与之吻合占30%;吻合外径(0.5±0.1) mm。

Methods 30 cases of nasal soft tissue de fects were reconstructed by different kinds of local flaps according to modified Burget′s nasal subunit. The Rintala flaps were used above the lowest level of low eyelids; at the area between low eyelids and the alar groove, the dorsal def ects were covered by ax-like local flaps and defects on side wall were reconstru cted by flaps rotated from the contralateral wall covered by skin graft; when it was below the highest level of alar groove, nasolabial flaps with subdermal ped ical were applied to nasal tip defection, and nasolabial local flaps to alar def ects, axial nasodorsum flaps supplied by the lateral nasal artery to defects inv olving columellae.

结合Burget鼻部美学分区,将其再分为三个区域,根据分区选用局部或邻位皮瓣修复鼻部各区软组织缺损30例(鼻根部以Rintala鼻额部局部皮瓣推进3例;鼻中段的鼻背部行双侧斧状局部皮瓣旋转3例;鼻侧壁行对侧壁局部皮瓣转移,供区植皮4例;鼻端部以鼻唇沟皮下蒂岛状瓣转移修复鼻尖部7例;鼻唇沟局部皮瓣旋转修复鼻翼部7例;鼻背轴型皮瓣旋转修复鼻小柱6例)。

In case of a total en bloc resection of one or more high thoracic vertebrae, we start with a dorsal approach by exposing the affected spinal segments, cut and remove rib ends bilaterally, perform one or multilevel laminectomies and bilateral foraminectomies and facetectomies, followed by an incision and reaming of the intervertebral discs at the appropriate levels.

假设要做一个或多个高位胸椎椎体的整块切除,我们采用背侧入路显露病变节段,切除双侧肋骨末端,行一节或多节段椎板切除,双侧椎间孔及小关节切除,继以相应节段椎间盘切除和刮除。

When the bottom plate side syndiospecific lower than a sizzling, drawing pressure ball left, paper will go on there which would in turn low-speed machines brace will receive the same fault because plate following fulcrun is the eccentric shaft, corrected, you can add the eccentric shaft, convex to reverse some of the panels to fan-shaped with a sizzling plane are equal to the maximum State, low-speed machines la along two concave iron support, you can set the concave iron spare, Planer to some, is equal to the thickness to brace the distance below the iron plate plane, the installation at a later time.

当侧规底部扇形不活矮于铁不活立体时,不推纸压球压下去此后,纸弛不离会出不隐凹下下去不隐象,矮速机的不推条也会出不隐同样的障碍,因为扇形不活底下的支点是公道小轴,在校侧时,可以不兵公道小轴的凸背回旋一些,调度到扇形不活背同铁不活立体不等为最好状况,矮速机的不推条是由二块凹形铁撑持,可以不兵凹形铁拆上去,用刨床刨去一些,刨去的厚度即是不推条矮于铁不活立体的间隔,安设此后再举不静调度。

The marginal division was a flat fan-shaped structure with a volume of (0.48±0.02) mm3, a maximum rostral-caudate axis of 1.6 mm, a maximum dorsal-ventral axis of 2.158 mm, and a widest axis (the diameter at lateral-medial coronal brain section) of 0.17 mm. The marginal division also moved progressively externally from the rostral section to the caudate section, but its scope was larger than that of others. The whole marginal division changed evenly from the rostral section to the caudate one. Its flat structure widened progressively and its dorsal-ventral diameter narrowed gradually and became plate-shaped.

边缘区呈现一个片状扇形结构,体积为(0.48±0.02) mm3,最大嘴尾径为1.6 mm,最大背腹径为2.158 mm,最大内外径为0.17 mm;同尾壳核和苍白球一样从嘴侧到尾侧随着脑平面的增宽边缘区亦逐渐向外侧移位,其移位的幅度亦明显大于脑平面增宽的幅度;整个边缘区从嘴侧到尾侧呈均匀变化,其片状逐渐变宽,长度逐渐变小,从而形成一个盘状结构。

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