繊維学部研究紹介英語版2026
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Outlook for researchOutlook for students after graduationOutlook for researchIbelievethatitispossibletoimplementarobotcapableofworkinginmudorinoceansengswherethereisagreatdealofseaweedordetritus.Intheareaofbloodflowresearch,mygoalistocreateadiagnosticsystemthatcaninstantlyassesstheriskofatheroscleroticplaquebasedonpatient-specificmedicalimaging,forexamplebymeansofMRI.Outlook for students after graduationGraduateshavegoneontoworkinsuchfieldsasmedicalmachinery,automobiles,electronics,andinformationandcommunications.Somehaveevenpursuedcareersaspublicofficialsorresearchersineducationalresearchorganizations.devices,ProfessorKOSEKIMichihikoProfessorKOBAYASHIShunichiDepartment of Machinery and RoboticsBioengineeringOurresearchsolutionswillpowerfullysupportmedicaldoctorsonbothdiagnosesandtreatmentsforillnessesorinjuriesinorthopedicfields.Patientscanalsoobtaingreatbenefitsincludingpersonalizedandinformation-richinformedconsentfortheirowntreatments.Weaimtorealizeaworldwhichissensitivetotheneedsanddesiresofdoctors,patients,andeveryone.Weregardlivingorgansof"humans"fromtheperspectivesof"mechanicalengineering"and"informationengineering“.Adiverserangeofknowledgemakesourstudentsenjoyavarietyofcareerpathsaftergraduation.Department of Machinery and RoboticsBioengineeringProfessorhisKosekicurrentpositionin2019afterworkingasanengineeratFujitsuLimitedandanassistantprofessoratTokyoInstituteofTechnology,andanassociateprofessoratShinshuUniversity.Hisresearchinterestsincludebiomechanics,computationalmedicaltechniquesandbio-inspiredrobotics.ProfessorKobayashitookhiscurrentpositionin2009afterservinginthefacultyandTaxtileTechnologyatShinshuUniversityasaseniorandassociateprofessor.Hebeganhisresearchonbloodflowin1996and1997whileworkingasavisitingscholarattheGeorgiaInstituteofTechnology.Hecurrentlycontinuestocarryoutinternationaljointresearch.Examination of surgical operation methods in scoliosis in collaboration with Shinshu University’s Medical School.Thestiffnessofthisfin,whosedesignisbasedontheflexiblemovementofthetailsoffish,isalteredinrealtimeinanattempttoincreasepropulsiveperformance.Thisrobot,whichcanswiminalldirections,wasdevelopedbystudyingtheswimmingmotionoftheragworm.Althoughtherearemanyphysicaltrainingmethodsforweightreduction,someofthemdon’trevealtheireffectsfromtheviewpointofmechanicalengineers.Oursimulationmethoddemonstratesmechanicalconditionsinourbodyandtheresultsmayleadtomoreefficienttrainingmethodsforourbeautifullife!AmodelnumericalatherosclerosisexperimentcomputationandofSurgicaloperationsaresometimesrequiredtofixseverebonefracturesormuscleinjuries.Here,ifwecanestimatemechanicalconditionsofourbodypartsand/orsurgicalinstrumentspriortotheoperation,theinformationwillbegreatlyhelpfultoavoidsurgicalerrorsorfurthersurgeries.Ourlaboratoryexaminespatient-specificbiomechanicalcomputationalmodelwiththeexactshapeofthepatientbasedonclinicalX-rayCTimages,andperformanalysestoestimatemechanicalstatesofbonesorartificialinstrumentsinourbody.Collaborationwithmedicaldoctorsleadsustoproposenovelmedicaltechniques.Iamstudyingtheswimmingbehaviorofvariousformsofaquaticlifeinordertocreateanewrobotbasedontheadroitswimmingabilityoflivingcreatures.studyingbloodflowinordertoexaminemechanicalvulnerabilitytoatheroscleroticplaquethroughmodelexperimentsusingartificialdiseasedarteriesandnumericalcomputations.tookimagingofScienceassistantprofessorprecisionsimulationmethods.Thatis,wefabricateaIamalso19Proposing reliable medical techniques through computational biomechanical simulationsExploring the biomimetics of aquatic life and medical engineering using biofluid mechanics

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