TY - JOUR
T1 - Computer assisted orthosis design system for malformed ears - Automatic shape modification method for preventing excessive corrective force
AU - Hanafusa, A.
AU - Isomura, T.
AU - Sekiguchi, Y.
AU - Takahashi, H.
AU - Dohi, T.
PY - 2000/12/1
Y1 - 2000/12/1
N2 - Most malformed ears of neonates can be treated by mounting a suitably shaped orthosis. However, it needs much experience to make a orthosis that produces adequate corrective force. Especially, excessive force may cause a decubitus-like inflammation on the auricle. We are studying computer assisted system to support the orthosis design. And we have already developed fundamental design and manufacturing system. This paper describes automatic orthosis shape modification method to prevent the excessive corrective force using three dimensional finite element method. Incremental method inserting the orthosis in the auricle is used to handle non-linear material property of the auricle. In each insertion step, corrective force of every nodal point of the orthosis is calculated. The shape is modified by canceling the insertion of nodal point where excessive contact force is produced. The auricle and the orthosis were modeled by triangular shell elements and beam elements respectively. Finally the sample result of analysis showed that the orthosis modified by the method can reduce maximum force compared to that of the original shape.
AB - Most malformed ears of neonates can be treated by mounting a suitably shaped orthosis. However, it needs much experience to make a orthosis that produces adequate corrective force. Especially, excessive force may cause a decubitus-like inflammation on the auricle. We are studying computer assisted system to support the orthosis design. And we have already developed fundamental design and manufacturing system. This paper describes automatic orthosis shape modification method to prevent the excessive corrective force using three dimensional finite element method. Incremental method inserting the orthosis in the auricle is used to handle non-linear material property of the auricle. In each insertion step, corrective force of every nodal point of the orthosis is calculated. The shape is modified by canceling the insertion of nodal point where excessive contact force is produced. The auricle and the orthosis were modeled by triangular shell elements and beam elements respectively. Finally the sample result of analysis showed that the orthosis modified by the method can reduce maximum force compared to that of the original shape.
KW - Automatic modification
KW - Computer assisted design
KW - Finite element analysis
KW - Malformed ears
KW - Orthosis
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M3 - Conference article
AN - SCOPUS:0034442196
SN - 1557-170X
VL - 3
SP - 1976
EP - 1978
JO - Conference proceedings : ... Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Conference
JF - Conference proceedings : ... Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Conference
T2 - 22nd Annual International Conference of the IEEE Engineering in Medicine and Biology Society
Y2 - 23 July 2000 through 28 July 2000
ER -