首页> 外文会议>International Conference on Remote Sensing, Environment and Transportation Engineering >Biomechanical evaluation of FDS (flexor digitorum superficialis), 1/2FDS, and palmar fascia in the correction of claw fingers and the clinical exploration of 5 cases with 1/2FDS as tendon stiffness
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Biomechanical evaluation of FDS (flexor digitorum superficialis), 1/2FDS, and palmar fascia in the correction of claw fingers and the clinical exploration of 5 cases with 1/2FDS as tendon stiffness

机译:FDS(屈肌位数),1 / 2FDS和Palmar筋膜矫正爪手指的生物力学评估及5例肌腱刚度的5例临床勘探

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Purpose FDS (flexor digitorum superficialis), 1/2FDS, and palmar fascia are 3 surgical procedures commonly used to correct the deformities of claw fingers after ulnar nerve injury. FDS and palmar fascia traditionally are the more common procedures. The former requires the whole FDS, while the latter sometimes causes the recurrence of deformity because of its transfiguration. The of 1/2FDS spare the motor tendon and the recuremce rate is expected to be lower. A biomechanical study was performed to determine whether the biomechanical character of the three tissues is suit for surgery procedure; Another follow-up study was performed to determine the clinical outcome with the 1/2FDS loop tenodesis operation in treatment of patients with ulnar claw fingers. Methods Ten fresh symmetrical arms in adults were tested, whose palmar fascias and FDSs of each finger were cut down respectively. And then 5 of the 10 FDSs were split into two tails equally. All samples were tested by an Instron Universal Test Instrument (model AG-10TA; made in Japan), which would control the stress and strain exerted on the test sample automatically, and print out the data of each load, elongation, stress and strain, then the curve of stress compared with elongation 5 patients presented 5 affected 5 hands with ulnar claw fingers had the 1/2FDS loop tenodesis procedure from May 1990 to March 2010. Each hand was assessed before surgery and at follow-up evaluation by predetermined angle measurements, power grip, motion, mechanical function, and patients' satisfaction. Results Biomechanical study showed that FDS and that in half could endure large amount of stress exerted on it with less elongation in size. The difference between half FDS with palmar fascia group was statistically significant (P<0.05) in maximum stress and in maximum elongation in size. The maximum stress of half FDS was ten times larger than that of palmar fascia, while the maximum elongation in size of palmar fascia was two times bigger than that of half FDS. In the aspect of modulus of elasticity, there was no significant difference between the two groups of FDS integrated and that in half (P > 0.05)f, but it was significant weaker in half FDS than palmar fascia(P<0.05). After an average follow-up period of 34 months, Correctionsof deformity with the 1/2FDS loop tenodesis procedure was satisfactory in all patients without recurrence. Power grip remained static in most cases. Motion and function of the fingers were satisfactory. Conclusion The 1/2FDS provided us a better procedure for tenodesis than palmar fascia by biomechanical testing. It avoids the disadvantage to sacrifice large amount of FDSs that would result in new disorders of hand.
机译:目的FDS(屈肌Dietotorum Supervicallis),1 / 2FD和Palmar筋膜是3个外科手术,通常用于校正甲骨神经损伤后爪手指的畸形。 FDS和Palmar Fascia传统上是更常见的程序。前者需要整个FD,而后者有时会导致变形的复发因变形。 1 / 2FDS备用电机肌腱,预计速度将降低。进行生物力学研究以确定三种组织的生物力学性质是否适合外科手术;进行另一种后续研究以确定具有1 / 2FDS循环的临床结果,治疗尺爪手指的患者。方法测试成人中的十个新鲜对称臂,分别削减了每个手掌的棕榈粘性粘虫和FDS。然后将10个FDS中的5个平均分成两个尾部。所有样品通过Instron Universal Test仪器(型号AG-10TA;日本制造)进行测试,这将自动控制测试样品上施加的应力和应变,并打印出每个负载,伸长,应力和应变的数据,然后,应力曲线与伸长率5例患者呈现5例,乌尔没有杆爪手指的5只双手从1990年5月到2010年5月,每只手在手术前进行评估,并通过预定角度测量进行后续评估,动力握把,运动,机械功能和患者的满意度。结果生物力学研究表明,FDS和成本为一半可忍受大量的压力,较少的伸长率。具有棕榈岩筋膜组的半菌Fds之间的差异在最大应力和最大伸长率中具有统计学意义(P <0.05)。半FDS的最大应力比Palmar筋膜的最大应力为10倍,而Palmar Fascia的最大伸长率比半FD大的两倍大。在弹性模量的方面中,两组FDS集成的FD与一半(P> 0.05)F之间没有显着差异,但是在半FDS中的显着弱于Palmar筋膜(P <0.05)。在34个月的平均随访时间后,在所有患者中令人满意的情况下,所有患者都令人满意,没有复发。在大多数情况下,电力握持仍然是静态的。手指的运动和功能令人满意。结论1 / 2FDS通过生物力学检测为美国提供了比Palmar筋膜的成本更好的程序。它避免了牺牲大量FDS的缺点,这将导致手的新疾病。

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