全部文献期刊学位论文会议报纸专利标准年鉴图书|学者科研项目
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作者:Ning-Jiun Jan , Ian A. Sigal
来源:[J].Acta Biomaterialia(IF 5.093), 2018, Vol.72, pp.295-305Elsevier
摘要:Abstract(#br)Our goal was to quantify and characterize how the collagen fiber crimp waviness of the lamina cribrosa (LC) and peripapillary sclera (PPS) changes with intraocular pressure (IOP). Thirteen sheep (ovine) eyes were immersion and perfusion fixed while maintaining I...
作者:Ning-Jiun Jan , Yi Hua ...
来源:[J].Acta Biomaterialia(IF 5.093), 2018Elsevier
摘要:Abstract(#br)The collagen fiber architecture of the peripapillary sclera (PPS), which surrounds the scleral canal, is a critical factor in determining the mechanical response of the optic nerve head (ONH) to variations in intraocular pressure (IOP). Experimental and clinical evid...
作者:Ning-Jiun Jan , Bryn L. Brazile ...
来源:[J].Experimental Eye Research(IF 3.026), 2018, Vol.172, pp.159-170Elsevier
摘要:Abstract(#br)Our goal was to systematically quantify the collagen crimp morphology around the corneoscleral shell, and test the hypothesis that collagen crimp is not uniform over the globe. Axial longitudinal cryosections (30 μm) of three sheep eyes, fixed at 0 mmHg IOP, wer...
作者:Ning-Jiun Jan , Huong Tran ...
来源:[J].Experimental Eye Research(IF 3.026), 2017, Vol.160, pp.85-95Elsevier
摘要:Abstract(#br)The eye is a complex structure composed of several interconnected tissues acting together, across the whole globe, to resist deformation due to intraocular pressure (IOP). However, most work in the ocular biomechanics field only examines the response to IOP over...
作者:Ning-Jiun Jan , Larry Kagemann ...
来源:[J].PLOS ONE(IF 3.73), 2017, Vol.12 (11)PLOS
摘要:There is increasing clinical evidence that the eye is not only affected by intraocular pressure (IOP), but also by intracranial pressure (ICP). Both pressures meet at the optic nerve head of the eye, specifically the lamina cribrosa (LC). The LC is a collagenous meshwork through ...
作者:Ning-Jiun Jan , Yi Hua ...
来源:[J].Journal of Biomedical Optics(IF 2.881), 2018, Vol.23 (10), pp.106001-106001SPIE
摘要:Collagen is a major constituent of the eye and understanding its architecture and biomechanics is critical to preserve and restore vision. We, recently, demonstrated polarized light microscopy (PLM) as a powerful technique for measuring properties of the collagen fibers of the ey...
作者:... Ian A. Sigal , Ning-Jiun Jan , Zion Tsz Ho Tse
来源:[J].Journal of Medical Robotics Research, 2016, Vol.01 (01)World Scientific Publishing
摘要:The “magic angle” MRI effect can enhance signal intensity in aligned collagenous structures oriented at approximately 55 ∘ with respect to the main magnetic field. The difficulty of positioning tissue inside closed-bore scanners has hampered magic angle use in research ...

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