Comment on "Mechanical Resonance Spectra in Huan Cancellous Bone"
SciencePublished 20 July 1973
Jonathan Black
Citations12
SJR quartileQ1
SJR score10.42
SNIP6.62
Generate an AI Snapshot to get a quick, structured summary of this paper.
Study Snapshot
ObjectiveStudy objective
MethodsResearch methodology
PopulationPopulation studied
Sample sizeSample sizes
OutcomesStudy outcomes here
ResultsStudy results comes here
LimitationsResearch study limitations comes here
A concise AI-generated summary of the paper will appear here once you click Generate AI Snapshot.
TL;DR
The existence of two series of mechanical resonance frequencies in human cancellous bone is apparently supported by results and may be a microstrain phenomenon since all the experiments involved strains below 10-4 at the frequencies of interest.
Abstract
The existence of two series of mechanical resonance frequencies in human cancellous bone is apparently supported by other results. This effect may be a microstrain phenomenon since all the experiments involved strains below 10 -4 at the frequencies of interest.
Keywords
MedicineBiochemistry, Genetics and Molecular BiologyPhysics and Astronomy
Physics in Medicine and BiologyIn vivo determination of the elastic response of bone. I. Method of ulnar resonant frequency determination
90 Citations1970J.M. Jurist
The relationship between resonant frequency, length, and speed of sound for a long bone is given by F0L=KC, where K is a proportionality constant depending on geometrical factors, boundary conditions, and the mode of vibration.
Journal of BiomechanicsDynamic mechanical properties of viable human cortical bone
35 Citations1973Jonathan Black, Edward Korostoff
A technique has been developed that permits the mechanical modulus in tension to be determined upon viable human cortical bone specimens excised from the tibial midshafts of eight patients immediately after amputation for various causes.
ScienceMechanical Resonance Spectra in Human Cancellous Bone
26 Citations1973James Pugh, Robert M. Rose +2 more
The dynamic mechanical response of fresh human cancellous bone at low audio frequencies contains two resonance spectra in quantitative agreement with the concept of momentum wave modes of calcium and phosphorus atoms in the lamellae, with no variable parameters.
The Journal of the Acoustical Society of AmericaParticle Waves and Audiofrequency Modes in Crystals
19 Citations1966Edwin R. Fitzgerald
