Abstract:
:We have developed a method that allows biological tissues to be adhered together with minimal invasion by delivering integrated low-level energies from heat, pressure, and vibration. Tensile tests on adhered slices of porcine aorta were performed to determine the relationships between adhesive strength and conditions such as adhesion temperature, time, pressure, and vibration. The maximal adhesive shear tensile strength using the proposed method was 0.2MPa, which is half the strength of the porcine aorta and stronger than surgical tissue adhesive. Adhesion strength increased in proportion to temperature, time, and pressure, and also in the presence of vibration, indicating that vibrational energy contributes to the adhesive mechanism and strength. Adhesive stability, the effect of heat on adhesive strength, and the ability of tissue to adhere to artificial materials were also clarified.
journal_name
Med Eng Physjournal_title
Medical engineering & physicsauthors
Katoh A,Masuzawa T,Ozeki K,Kishida A,Kimura T,Higami Tdoi
10.1016/j.medengphy.2009.12.005subject
Has Abstractpub_date
2010-05-01 00:00:00pages
304-11issue
4eissn
1350-4533issn
1873-4030pii
S1350-4533(09)00266-5journal_volume
32pub_type
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journal_title:Medical engineering & physics
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journal_title:Medical engineering & physics
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journal_title:Medical engineering & physics
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更新日期:2013-02-01 00:00:00
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journal_title:Medical engineering & physics
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更新日期:2013-11-01 00:00:00
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更新日期:1997-06-01 00:00:00
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更新日期:1994-01-01 00:00:00
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pub_type: 杂志文章
doi:10.1016/j.medengphy.2014.07.012
更新日期:2014-11-01 00:00:00
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journal_title:Medical engineering & physics
pub_type: 杂志文章
doi:10.1016/j.medengphy.2011.04.007
更新日期:2011-11-01 00:00:00
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journal_title:Medical engineering & physics
pub_type: 杂志文章
doi:10.1016/j.medengphy.2011.07.017
更新日期:2012-03-01 00:00:00
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更新日期:2020-02-01 00:00:00
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pub_type: 临床试验,杂志文章
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journal_title:Medical engineering & physics
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更新日期:2017-01-01 00:00:00
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更新日期:2007-01-01 00:00:00
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更新日期:2020-11-01 00:00:00