Minimally invasive intravascular stent twisting and bending fatigue simulator and test method thereof
The invention relates to a minimally invasive intravascular stent twisting and bending fatigue simulator which comprises a liquid storage box, an electronic peristaltic pump, a pressure monitor, a current limiter and a diversion silicone tube, wherein the liquid storage box is provided with a heatin...
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Format | Patent |
Language | Chinese English |
Published |
13.03.2013
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Abstract | The invention relates to a minimally invasive intravascular stent twisting and bending fatigue simulator which comprises a liquid storage box, an electronic peristaltic pump, a pressure monitor, a current limiter and a diversion silicone tube, wherein the liquid storage box is provided with a heating device. The minimally invasive intravascular stent twisting and bending fatigue simulator is characterized by further comprising a minimally invasive intravascular stent twisting and bending simulating device. The invention also discloses a test method; according to the method, a T-shaped block horizontally moves in a sliding chute to drive a vertical hollow metal conduit to horizontally reciprocate; a gear and a rack are meshed with each other in a rolling manner to reciprocate, so as to realize the synchronous simulation of the twisting and bending motions of an intravascular stent sample in vivo; through a horizontal or L-shaped hollow metal conduit, the simulation of the intravascular stent sample at differen |
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AbstractList | The invention relates to a minimally invasive intravascular stent twisting and bending fatigue simulator which comprises a liquid storage box, an electronic peristaltic pump, a pressure monitor, a current limiter and a diversion silicone tube, wherein the liquid storage box is provided with a heating device. The minimally invasive intravascular stent twisting and bending fatigue simulator is characterized by further comprising a minimally invasive intravascular stent twisting and bending simulating device. The invention also discloses a test method; according to the method, a T-shaped block horizontally moves in a sliding chute to drive a vertical hollow metal conduit to horizontally reciprocate; a gear and a rack are meshed with each other in a rolling manner to reciprocate, so as to realize the synchronous simulation of the twisting and bending motions of an intravascular stent sample in vivo; through a horizontal or L-shaped hollow metal conduit, the simulation of the intravascular stent sample at differen |
Author | GUAN GUOPING GUAN XIAONING WANG LU DU JIA FU YIYUN SONG GE LIN JING WANG FUJUN CHEN JIYANG |
Author_xml | – fullname: WANG LU – fullname: CHEN JIYANG – fullname: WANG FUJUN – fullname: FU YIYUN – fullname: LIN JING – fullname: GUAN GUOPING – fullname: GUAN XIAONING – fullname: SONG GE – fullname: DU JIA |
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Snippet | The invention relates to a minimally invasive intravascular stent twisting and bending fatigue simulator which comprises a liquid storage box, an electronic... |
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SubjectTerms | INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIRCHEMICAL OR PHYSICAL PROPERTIES MEASURING PHYSICS TESTING |
Title | Minimally invasive intravascular stent twisting and bending fatigue simulator and test method thereof |
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