Publication:
Effect of Contact Conditions of Torsional Wave Elastographic Probe on Human Cervix

dc.contributor.authorRus, G.
dc.contributor.authorRiveiro, M.
dc.contributor.authorMolina, F. S.
dc.contributor.authoraffiliation[Rus, G.] Univ Granada, MNat Excellence Sci Unit UCE PP2017 03, Biosanitary Res Inst IBS,Biomech Grp TEC 12, Dept Struct Mech,NDE Lab,Ultrason Grp TEP 959, Granada, Spain
dc.contributor.authoraffiliation[Riveiro, M.] Univ Granada, MNat Excellence Sci Unit UCE PP2017 03, Biosanitary Res Inst IBS,Biomech Grp TEC 12, Dept Struct Mech,NDE Lab,Ultrason Grp TEP 959, Granada, Spain
dc.contributor.authoraffiliation[Molina, F. S.] Univ Granada, MNat Excellence Sci Unit UCE PP2017 03, Biosanitary Res Inst IBS,Biomech Grp TEC 12, Dept Struct Mech,NDE Lab,Ultrason Grp TEP 959, Granada, Spain
dc.contributor.funderMinistry of Education
dc.contributor.funderMinistry of Health
dc.contributor.funderJunta de Andalucia
dc.date.accessioned2023-02-12T02:21:54Z
dc.date.available2023-02-12T02:21:54Z
dc.date.issued2018-11-18
dc.description.abstractThere is a challenge in characterizing the soft tissue mechanical functionality in cylindrical geometries by current elastography techniques applied to small organs. Torsional waves are a type of shear elastic waves that propagate through soft tissue radially and in depth in a curled geometry, ideally suited to explore structures such as the cervix. Here, a sensor based on a novel arrangement of concentric sandwiches of piezo- and electromechanical elements is prototyped and tested to quantitatively assess stiffness in human cervix. The purpose is to determine the robustness of a torsional wave elastography (TWE) sensor prototype to quantify cervical stiffness, as a first step to validate a reliable measurement protocol using TWE. An array of tests designed to validate a set of hypothesis about the contact conditions were performed on up to 3 different nonpregnant voluntary women. The mechanical properties were reconstructed from the recorded TWE signals, and the outcomes were statistically analyzed to validate the contact condition hypothesis. The results suggest that, although future tests need to be performed to fully assess the repeatability and quality of the measurements, some characteristics of the measurement protocol become clear; in particular: (1) the use of speculum is recommended since it not only stabilizes the measurements, but also corrects and stabilizes the orientation of the cervical neck, and allows to visually verify the positioning and alignment of the probe, while not significantly increasing discomfort to women during this test; (2) the use of lubricant gel has no significant effect on the measurement quality; (3) 1cm off-centering from external cervical os is not acceptable; (4) a range of applied force between 500-2000 N does not significantly vary measurement signal quality, but the reconstructed value of the shear modulus does vary, probably due to its constitutive nonlinearity; (5) breathing movements affects measurements, but short duration of TWE pulse (0.3 s) allows to take measurements in apnea.
dc.description.sponsorshipThe authors are grateful to Pilar Carretero, Andrea Pazos, and the volunteering patients for their collaborations. This research was supported by the Ministry of Education DPI2017-83859- R, DPI2014-51870- R, DPI2010-17065, and UNGR15-CE- 3664, Ministry of Health DTS15/00093 and PI16/00339, PI-0107- 2017, and PIN-0030- 2017, and Junta de Andaluca P11-CTS- 8089 projects.
dc.description.versionSi
dc.identifier.citationRus, G., Riveiro, M., & Molina, F. S. (2018). Effect of Contact Conditions of Torsional Wave Elastographic Probe on Human Cervix. Mathematical Problems In Engineering, 2018, 1-6.
dc.identifier.doi10.1155/2018/6494758
dc.identifier.essn1563-5147
dc.identifier.issn1024-123X
dc.identifier.unpaywallURLhttps://downloads.hindawi.com/journals/mpe/2018/6494758.pdf
dc.identifier.urihttp://hdl.handle.net/10668/19072
dc.identifier.wosID452977600001
dc.journal.titleMathematical problems in engineering
dc.journal.titleabbreviationMath. probl. eng.
dc.language.isoen
dc.organizationInstituto de Investigación Biosanitaria de Granada (ibs.GRANADA)
dc.publisherHindawi ltd
dc.relation.projectIDDPI2017-83859- R
dc.relation.projectIDDPI2014-51870- R
dc.relation.projectIDDPI2010-17065
dc.relation.projectIDUNGR15-CE- 3664
dc.relation.projectIDDTS15/00093
dc.relation.projectIDPI16/00339
dc.relation.projectIDPI-0107- 2017
dc.relation.projectIDPIN-0030- 2017
dc.relation.projectIDP11-CTS- 8089
dc.relation.publisherversionhttps://onlinelibrary.wiley.com/doi/10.1155/2018/6494758
dc.rightsAttribution 4.0 International
dc.rights.accessRightsopen access
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.subjectLength
dc.subjectHumans
dc.subjectFemale
dc.subjectElasticity Imaging Techniques
dc.subjectApnea
dc.subject.decsCuello del útero
dc.subject.decsInstrumentos quirúrgicos
dc.subject.decsLubricantes
dc.subject.decsSonido
dc.subject.meshCervix Uteri
dc.subject.meshSound
dc.subject.meshLubricants
dc.subject.meshSurgical Instruments
dc.titleEffect of Contact Conditions of Torsional Wave Elastographic Probe on Human Cervix
dc.typeresearch article
dc.type.hasVersionVoR
dc.volume.number2018
dc.wostypeArticle
dspace.entity.typePublication

Files

Original bundle

Now showing 1 - 1 of 1
Loading...
Thumbnail Image
Name:
Rus_Effect.pdf
Size:
879.57 KB
Format:
Adobe Portable Document Format