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DESCRIPTION (provided by applicant): Spinal cord injury patients, head injured patients, and stroke victims often benefit from surgical reconstruction using tendon transfers. While numerous transfer procedures exist, performing tendon transfers remains more of an art than a science. We believe that much of the uncertainty regarding the scientific rationale for tendon transfer procedures is based on either a misunderstanding or a complete lack of understanding of the biomechanical properties of muscles used in tendon transfers. Mathematical models have been created to design optimal tendon transfers, however, almost without exception these models are based on the use of "generic" muscle models whose properties are based on a multitude of scaling and physiological assumptions. We opine that current modeling efforts are almost predestined to failure because the passive biomechanical properties of human muscles are unknown and the normal operating range of almost all human upper extremity muscles has never been measured. In this grant, we present experiments that will define the basic passive biomechanical properties of muscle cells, muscle fiber bundles (cells plus extracellular matrix), and whole muscles in three of the most commonly transferred human muscles-brachioradialis, flexor carpi ulnaris, and pronator teres. These three muscles cover the range of complexity seen in transferred muscles. We will use these data to develop specific guidelines for tendon transfer of these muscles to the VA community. In addition, we will perform technology development of a user-friendly device to measure muscle sarcomere length precisely by reflected laser diffraction (RLD). This method has the advantage over our previous method of being faster and not requiring any tissue dissection. Taken together, these experiments will allow VA surgeons to set the standard in tendon transfer surgery both at the San Diego VA and other VA Medical Centers throughout the country.
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DOI: 10.1177/1753193413517327
发表时间: 2015-03
期刊: The Journal of hand surgery, European volume
影响因子: --
作者: [Fridén J, Tirrell TF, Bhola S, Lieber RL]
通讯作者: Lieber RL
The effect of intrinsic loading and reconstruction upon grip capacity and finger extension kinematics.
内在负载和重建对抓握能力和手指伸展运动学的影响。
DOI: 10.1016/j.jhsa.2014.09.031
发表时间: 2015
期刊: The Journal of hand surgery
影响因子: --
作者: [Muzykewicz,DavidA, Arnet,Ursina, Fridén,Jan, Lieber,RichardL]
通讯作者: Lieber,RichardL
Resonant reflection spectroscopy of biomolecular arrays in muscle.
肌肉中生物分子阵列的共振反射光谱。
DOI: 10.1016/j.bpj.2014.09.040
发表时间: 2014
期刊: Biophysical journal
影响因子: 3.4
作者: [Young,KevinW, Radic,Stojan, Myslivets,Evgeny, O'Connor,ShawnM, Lieber,RichardL]
通讯作者: Lieber,RichardL
Center for Smart Use of Technology to Assess Real-world Outcomes (C-STAR)
Pilot Studies Component
Center for Smart Use of Technology to Assess Real-world Outcomes (C-STAR)
Center for Smart Use of Technology to Assess Real-world Outcomes (C-STAR)
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