Modeling the mechanical consequences of vibratory loading in the vertebral body: microscale effects.

نویسندگان

  • D A Dickerson
  • E A Sander
  • E A Nauman
چکیده

Osteoporosis affects nearly 10 million individuals in the United States. Conventional treatments include anti-resorptive drug therapies, but recently, it has been demonstrated that delivering a low magnitude, dynamic stimulus via whole body vibration can have an osteogenic effect without the need for large magnitude strain stimulus. Vibration of the vertebral body induces a range of stimuli that may account for the anabolic response including low magnitude strains, interfacial shear stress due to marrow movement, and blood transport. In order to evaluate the relative importance of these stimuli, we integrated a microstructural model of vertebral cancellous bone with a mixture theory model of the vertebral body. The predicted shear stresses on the surfaces of the trabeculae during vibratory loading are in the range of values considered to be stimulatory and increase with increasing solid volume fraction. Peak volumetric blood flow rates also varied with strain amplitude and frequency, but exhibited little dependence on solid volume fraction. These results suggest that fluid shear stress governs the response of the vertebrae to whole body vibration and that the marrow viscosity is a critical parameter which modulates the shear stress.

برای دانلود رایگان متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

اثر مکمل سازی بورون و کلسیم بر خواص مکانیکی استخوان در موش صحرایی

Background: The objective of this study was to consider the effects of boron (B) and calcium (Ca) supplementation on mechanical properties of bone tissues and mineral content of selected bones in rats. Materials and methods: Adult male Sprague Dawley rats underwent three different ...

متن کامل

An investigation of the effects of osteoporosis, impact intensity and orientation on human femur injuries: a parametric finite element study

Objective: Femur is the strongest, longest and heaviest bone in the human body. Due to the great importance of femur in human body, its injury may cause large numbers of disabilities and mortality. Considering various effective parameters such as mechanical properties, geometry, loading configuration, etc. can propel the study to the trustable results.. Methods: A 3D finite element model of the...

متن کامل

Prediction of Human Vertebral Compressive Strength Using Quantitative Computed Tomography Based Nonlinear Finite Element Method

Introduction: Because of the importance of vertebral compressive fracture (VCF) role in increasing the patients’ death rate and reducing their quality of life, many studies have been conducted for a noninvasive prediction of vertebral compressive strength based on bone mineral density (BMD) determination and recently finite element analysis. In this study, QCT-voxel based nonlinear finite eleme...

متن کامل

Effects of Fatty Acids, Nutrients and Vibration on Bone Mechanical Properties and its Metabolic Parameters in Rat

Purpose: The aim of this survey was to evaluate the effects of fatty acids, nutrients and vibration on bone mechanical properties and its metabolic parametr’s in rat.Materials and Methods: 56 male wistar rats weighting 150±30 were used. Rats divided into control and six experimental groups as below: Vibration, Vibration+nutrients, Vibration+nutrients+ Canola oil, Sunflower oil, Canola oil+Sunfl...

متن کامل

Thermo-mechanical behavior of shape memory alloy made stent- graft by multi-plane model

Constitutive law for shape-memory alloys subjected to multi-axial loading, which is based on a semi-micromechanical integrated multi-plane model capable of internal mechanism observations, is generally not available in the literature. The presented numerical results show significant variations in the mechanical response along the multi loading axes. These are attributed to changes in the marten...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

عنوان ژورنال:
  • Biomechanics and modeling in mechanobiology

دوره 7 3  شماره 

صفحات  -

تاریخ انتشار 2008