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1. Noncontact elastic measurement of biological tissues using laser profilometer by tracking the surface wave NSTL国家科技图书文献中心

Yichu Chen |  Xiao Chen -  《Seventeenth International Conference on Photonics and Imaging in Biology and Medicine (PIBM 2024)》 -  International Conference on Photonics and Imaging in Biology and Medicine - 2025, - 1350705.1~1350705.4 - 共4页

摘要: biological tissues. This paper presents a novel method to |  elasticity measurement of biological. | Elasticity is one of the fundamental |  properties of materials. It is an important diagnostic |  parameter to investigate physiological dysfunctions in
关键词: Elasticity |  Laser profilometer |  Surface wave |  Biological tissues

2. An Artefact-Minimized Raman Probe for Analyzing Biological Tissues NSTL国家科技图书文献中心

Khan, Khan Mohammad |  Krishna, Hemant... -  《Journal of Biophotonics》 - 2025,18(3) - n/a~n/a - 共11页

摘要: situ, from biological tissues having low Raman cross |  free Raman spectra of biological tissues in situ. The |  from biological samples having lower Raman cross | Availability of a suitable tool for carrying |  out non-invasive measurement of Raman signatures in
关键词: biological tissue |  fiber-optic probe |  lensed probe |  Raman probe |  fiber‐optic probe

3. Mucosa-Interfacing Capsule for In Situ Sensing the Elasticity of Biological Tissues NSTL国家科技图书文献中心

Kiyoung Kim |  Steven Edwards... -  《Advanced Materials Technologies》 - 2025,10(6) - 2401487~ - 共12页

摘要:Monitoring the elasticity of soft biological |  tissues in the gastrointestinal (GI) tract with minimal |  tissues. Mechanical stress and strain are monitored by |  field control, which can move freely over soft tissues |  tissues. The capsule device holds significant promise
关键词: Capsule |  Magnetic actuation |  Palpation |  Sensing |  Tissue elasticity

4. Identifying Heterogeneous Micromechanical Properties of Biological Tissues via Physics-Informed Neural Networks NSTL国家科技图书文献中心

Wensi Wu |  Mitchell Daneker... -  《Small Methods》 - 2025,9(1) - 2400620.1~2400620.18 - 共18页 - 被引量:1

摘要: of biological tissues have profound implications | , and breast cancer tissues. Further, the improved | The heterogeneous micromechanical properties |  across diverse medical and engineering domains. However | , identifying full-field heterogeneous elastic properties of
关键词: complex materials |  heterogeneous mechanical properties |  physicsinformed neural networks |  soft tissues

5. Deformation Modeling of Interaction Between Puncture Needle and Soft Biological Tissues NSTL国家科技图书文献中心

Yuexuan Wang |  Qinjian Zhang... -  《Intelligent Robotics and Applications,Part V》 -  International Conference on Intelligent Robotics and Applications - 2025, - 84~99 - 共16页

摘要: biological tissue is crucial to analyzing needle | The force acting on the needle in the |  deformation during robot-assisted biopsies and surgeries. In |  this paper, the interaction between the three | -dimensional (3D) needle tip and the orthotropic tissue that
关键词: Needle deformation |  Three-dimensional needle tip |  Puncture |  Surgical robot |  Deformation of soft biological tissue

6. Singularity of propagation of partially coherent mixed screw-linear edge dislocations beams in biological tissues NSTL国家科技图书文献中心

Shan, Jing |  Duan, Meiling... -  《Optics & Laser Technology》 - 2025,181(Pt.B) - 共10页

摘要: beams propagating in biological tissue is derived and | The cross-spectral density function of the |  partially coherent mixed screw-linear edge dislocations |  used to explore the singularity of propagation, as |  well as the effect of the initial beam parameters on
关键词: Mixed screw-linear edge dislocations |  Partially coherent beam |  Biological tissue |  Normalized intensity |  Phase evolution

7. Modeling heat transfer in biological tissues with temperature-dependent properties under the moving heat source effects NSTL国家科技图书文献中心

Wang, Yingze |  He, Zhaowei... -  《Journal of Thermal Biology》 - 2025,129 - 共9页

摘要: parameters on the thermal behavior of biological tissue | The effects of temperature-dependent physical |  subjected to a moving heat source have been studied in |  present work. A nonlinear bio-heat transfer model |  incorporating dual-phase lag and Arrhenius equations has been
关键词: Bio-heat transfer |  Thermal damage |  Biological tissue |  Temperature-dependent physical parameters |  Moving heat source |  Laplace transform nsform

8. Thermomechanical response of biological tissues to sudden temperature rise induced by laser beam: insights from three-phase lag theory NSTL国家科技图书文献中心

Salem, Mohamed G. |  Abouelregal, Ahmed E...... -  《Physica Scripta》 - 2025,100(1) - 共19页 - 被引量:1

摘要:The laser irradiation of living tissues poses |  protecting surrounding healthy tissues. In this context | , theoretical and computational models of biological heat |  laser intensities in diseased human skin tissues. To |  a risk of thermal damage, making it a critical
关键词: TPL bioheat |  skin tissue |  hyperthermia treatment |  laser therapy

9. How well do 3D-printed tissue mimics represent the complex mechanics of biological soft tissues? An example study with Stratasys' cardiovascular TissueMatrix materials NSTL国家科技图书文献中心

Bechtel, Grace N. |  Kostelnik, Colton J.... -  《Journal of biomedical materials research,Part A》 - 2025,113(1) - e37787~e37787 - 共9页

摘要:, we created mimics of biological tissues we |  substantially from the biological tissues they aim to |  mechanical properties of biological tissues. Therefore |  how well 3D-printable mimics represent real tissues |  biological counterpart and tested the samples using
关键词: biaxial |  blood clot |  heart valve leaflets |  mode-I |  myocardium |  pure shear |  simple shear |  mode‐I

10. Atomic Force Microscopy: Mechanosensor and Mechanotransducer for Probing Biological System from Molecules to Tissues NSTL国家科技图书文献中心

Shen, Yi |  Czajkowsky, Daniel M...... -  《Small》 - 2025,21(2) - n/a~n/a - 共19页

摘要: properties of biological systems. By applying controlled |  mechanosensor or a mechanotransducer to probe biological |  to entire tissues is presented. Challenges are | Atomic Force Microscopy (AFM) is a powerful |  technique with widespread applications in various
关键词: atomic force microscopy |  biomolecules |  cells |  high-resolution imaging |  nanomechanics |  high‐resolution imaging
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