Literature DB >> 26158010

Vasodynamics of pial and penetrating arterioles in relation to arteriolo-arteriolar anastomosis after focal stroke.

Utku Baran1, Yuandong Li2, Ruikang K Wang2.   

Abstract

Changes in blood perfusion in highly interconnected pial arterioles provide important insights about the vascular response to ischemia within brain. The functional role of arteriolo-arteriolar anastomosis (AAA) in regulating blood perfusion through penetrating arterioles is yet to be discovered. We apply a label-free optical microangiography (OMAG) technique to evaluate the changes in vessel lumen diameter and red blood cell velocity among a large number of pial and penetrating arterioles within AAA abundant region overlaying the penumbra in the parietal cortex after a middle cerebral artery occlusion (MCAO). In comparison with two-photon microscopy, the OMAG technique makes it possible to image a large number of vessels in a short period of time without administering exogenous contrast agents during a time-constrained MCAO experiment. We compare vasodynamics in penetrating arterioles at various locations. The results show that the MCA connected penetrating arterioles close to a strong AAA dilate, while those belonging to a region away from AAAs constrict in various degrees. These results suggest AAAs play a major role in supporting the active dilation of the penetrating arterioles, thus compensating a significant amount of blood to the ischemic region, whereas the poor blood perfusion occurs at the regions away from AAA connections, leading to ischemia.

Entities:  

Keywords:  arteriolo-arteriolar anastomosis; middle cerebral artery occlusion; optical coherence tomography; optical microangiography; stroke

Year:  2015        PMID: 26158010      PMCID: PMC4478965          DOI: 10.1117/1.NPh.2.2.025006

Source DB:  PubMed          Journal:  Neurophotonics        ISSN: 2329-423X            Impact factor:   3.593


  27 in total

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2.  Noninvasive imaging of in vivo blood flow velocity using optical Doppler tomography.

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3.  Three dimensional optical angiography.

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4.  Eigendecomposition-based clutter filtering technique for optical micro-angiography.

Authors:  Siavash Yousefi; Zhongwei Zhi; Ruikang K Wang
Journal:  IEEE Trans Biomed Eng       Date:  2011-05-12       Impact factor: 4.538

5.  High resolution imaging of acne lesion development and scarring in human facial skin using OCT-based microangiography.

Authors:  Utku Baran; Yuandong Li; Woo June Choi; Goknur Kalkan; Ruikang K Wang
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6.  Light-scattering signal may indicate critical time zone to rescue brain tissue after hypoxia.

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Journal:  J Biomed Opt       Date:  2011-02       Impact factor: 3.170

7.  Ultrahigh sensitive optical microangiography for in vivo imaging of microcirculations within human skin tissue beds.

Authors:  Lin An; Jia Qin; Ruikang K Wang
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8.  The smallest stroke: occlusion of one penetrating vessel leads to infarction and a cognitive deficit.

Authors:  Andy Y Shih; Pablo Blinder; Philbert S Tsai; Beth Friedman; Geoffrey Stanley; Patrick D Lyden; David Kleinfeld
Journal:  Nat Neurosci       Date:  2012-12-16       Impact factor: 24.884

9.  Long-term, high-resolution imaging in the mouse neocortex through a chronic cranial window.

Authors:  Anthony Holtmaat; Tobias Bonhoeffer; David K Chow; Jyoti Chuckowree; Vincenzo De Paola; Sonja B Hofer; Mark Hübener; Tara Keck; Graham Knott; Wei-Chung A Lee; Ricardo Mostany; Tom D Mrsic-Flogel; Elly Nedivi; Carlos Portera-Cailliau; Karel Svoboda; Joshua T Trachtenberg; Linda Wilbrecht
Journal:  Nat Protoc       Date:  2009-07-16       Impact factor: 13.491

10.  Reversible middle cerebral artery occlusion without craniectomy in rats.

Authors:  E Z Longa; P R Weinstein; S Carlson; R Cummins
Journal:  Stroke       Date:  1989-01       Impact factor: 7.914

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  27 in total

1.  Minimizing projection artifacts for accurate presentation of choroidal neovascularization in OCT micro-angiography.

Authors:  Anqi Zhang; Qinqin Zhang; Ruikang K Wang
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Review 2.  Review of optical coherence tomography based angiography in neuroscience.

Authors:  Utku Baran; Ruikang K Wang
Journal:  Neurophotonics       Date:  2016-01-20       Impact factor: 3.593

Review 3.  Optical coherence tomography angiography in preclinical neuroimaging.

Authors:  Woo June Choi
Journal:  Biomed Eng Lett       Date:  2019-07-02

4.  Optical coherence tomography angiography-based capillary velocimetry.

Authors:  Ruikang K Wang; Qinqin Zhang; Yuandong Li; Shaozhen Song
Journal:  J Biomed Opt       Date:  2017-06-01       Impact factor: 3.170

5.  Monitoring Acute Stroke Progression: Multi-Parametric OCT Imaging of Cortical Perfusion, Flow, and Tissue Scattering in a Mouse Model of Permanent Focal Ischemia.

Authors:  Woo June Choi; Yuandong Li; Ruikang K Wang
Journal:  IEEE Trans Med Imaging       Date:  2019-01-31       Impact factor: 10.048

6.  Automated segmentation and enhancement of optical coherence tomography-acquired images of rodent brain.

Authors:  Utku Baran; Wenbin Zhu; Woo June Choi; Michael Omori; Wenri Zhang; Nabil J Alkayed; Ruikang K Wang
Journal:  J Neurosci Methods       Date:  2016-06-17       Impact factor: 2.390

7.  Dynamic laser speckle angiography achieved by eigen-decomposition filtering.

Authors:  Chenxi Li; Ruikang Wang
Journal:  J Biophotonics       Date:  2016-11-29       Impact factor: 3.207

8.  Extended-focus optical coherence microscopy for high-resolution imaging of the murine brain.

Authors:  Szymon Tamborski; Hong Chou Lyu; Hubert Dolezyczek; Monika Malinowska; Grzegorz Wilczynski; Daniel Szlag; Theo Lasser; Maciej Wojtkowski; Maciej Szkulmowski
Journal:  Biomed Opt Express       Date:  2016-10-05       Impact factor: 3.732

9.  Tail artifact removal in OCT angiography images of rodent cortex.

Authors:  Utku Baran; Woo June Choi; Yuandong Li; Ruikang K Wang
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10.  Optical coherence tomography based microangiography provides an ability to longitudinally image arteriogenesis in vivo.

Authors:  Yuandong Li; Woo June Choi; Wan Qin; Utku Baran; Lauren M Habenicht; Ruikang K Wang
Journal:  J Neurosci Methods       Date:  2016-10-14       Impact factor: 2.390

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