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The mechanical properties of tissues are pivotal for morphogenesis and disease progression. Recent approaches have enabled measurements of the spatial distributions of viscoelastic properties among embryonic and pathological model systems and facilitated the generation of important hypotheses such as durotaxis and tissue-scale phase transition. There likely are many unexpected aspects of embryo biomechanics we have yet to discover which will change our views of mechanisms that govern development and disease. One area in the blind spot of even the most recent approaches to measuring tissue stiffness is the potentially anisotropic nature of that parameter. Here, we report a magnetic micromanipulation device that generates a uniform magnetic field gradient within a large workspace and permits measurement of the variation of tissue stiffness along three orthogonal axes. By applying the device to the organ-stage mouse embryo, we identify spatially heterogenous and directionally anisotropic stiffness within the mandibular arch. Those properties correspond to the domain of expression and the angular distribution of fibronectin and have potential implications for mechanisms that orient collective cell movements and shape tissues during development. Assessment of anisotropic properties extends the repertoire of current methods and will enable the generation and testing of hypotheses.
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http://dx.doi.org/10.34133/2020/7914074 | DOI Listing |
Brain Struct Funct
September 2025
Department of Neurosurgery, Yeditepe University School of Medicine, Istanbul, Turkey.
The anterior commissure (AC) has an anterior and posterior limb. Despite comprehensive information about the posterior limb, there is limited and conflicting information about the anterior limb in the literature. We aimed to show the anatomical relationships of the AC with neighboring structures by using white matter microdissection and magnetic resonance (MR) tractography, primarily on the anterior limb of the AC.
View Article and Find Full Text PDFActa Neurochir (Wien)
September 2025
Machine Intelligence in Clinical Neuroscience & Microsurgical Neuroanatomy (MICN) Laboratory, Department of Neurosurgery, Clinical Neuroscience Center, University Hospital Zurich, University of Zurich, Zurich, Switzerland.
Background: Microsurgical resection of thalamic tumors requires precise anatomical knowledge and meticulous preoperative planning. Given the complexity of thalamic surgery, selecting an optimal surgical approach demands an accurate three-dimensional understanding of relevant structures. Advanced imaging post-processing, including three-dimensional (3D) model construction, can aid surgical planning and mental rehearsal of the procedure.
View Article and Find Full Text PDFActa Neurochir (Wien)
August 2025
Brisbane Clinical Neuroscience Centre, Mater Hospital Brisbane, South Brisbane, Queensland, Australia.
This video demonstrates our surgical approach for an entirely tubular trans-spinous process bilateral lumbar discectomy. A 47-year-old man presented with 12 months of severe predominantly right L5 radiculopathy. Magnetic resonance imaging revealed a large diffuse disc bulge at L4/5 resulting in bilateral lateral recess and central stenosis.
View Article and Find Full Text PDFSoft Robot
July 2025
Tianjin Key Laboratory for Advanced Mechatronic System Design and Intelligent Control, Tianjin University of Technology, Tianjin, China.
The ability to achieve controllable multimodal locomotion on complex terrains is crucial for the practical applications of small-scale legged robots. In this study, a novel magnetically actuated soft quadrupedal terrestrial millirobot was designed. Inspired by biological terrestrial locomotion modes, three distinct locomotion modes-quadrupedal bounding, quadrupedal pacing, and bipedal walking-were realized through a combination of various postures under a uniform external magnetic field and asymmetrical friction effects induced by magnetic torque.
View Article and Find Full Text PDFNeurol India
July 2025
Department of Neurosurgery, LTMG Hospital, Sion, Mumbai, Maharashtra, India.
Superior hypophyseal artery aneurysms are rare. Symptomatic superior hypophyseal artery aneurysm commonly presents with subarachnoid hemorrhage, uncommonly with cranial nerve deficits, and very rarely with visual impairment. Microsurgical management of such aneurysms is quite complex considering the anatomical structures in the paraclinoid region.
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