arrow
返回

Neurocapillary-Modulation

delete2022-12-01
delete19
delete
OA
AI
N
Niranjan Khadka *
M
Marom Bikson *
DOI:10.1111/ner.13338delete
delete原文链接
delete分享
delete收藏
查看原文
摘要

摘要

En 中文
Objectives: We consider two consequences of brain capillary ultrastructure in neuromodulation. First, blood-brain barrier (BBB) polarization as a consequence of current crossing between interstitial space and the blood. Second, interstitial current flow distortion around capillaries impacting neuronal stimulation. Materials and Methods: We developed computational models of BBB ultrastructure morphologies to first assess electric field amplification at the BBB (principle 1) and neuron polarization amplification by the presence of capillaries (principle 2). We adapt neuron cable theory to develop an analytical solution for maximum BBB polarization sensitivity. Results: Electrical current crosses between the brain parenchyma (interstitial space) and capillaries, producing BBB electric fields (E-BBB) that are >400x of the average parenchyma electric field (E-BRAIN), which in turn modulates transport across the BBB. Specifically, for a BBB space constant (lambda(BBB)) and wall thickness (d(th-BBB)), the analytical solution for maximal BBB electric field (E-BBB(A)) is given as: (E-BRAIN x lambda(BBB))/d(th-BBB). Electrical current in the brain parenchyma is distorted around brain capillaries, amplifying neuronal polarization. Specifically, capillary ultrastructure produces similar to 50% modulation of the E-BRAIN over the similar to 40 mu m inter-capillary distance. The divergence of E-BRAIN (Activating function) is thus similar to 100 kV/m(2) per unit E-BRAIN. Conclusions: BBB stimulation by principle 1 suggests novel therapeutic strategies such as boosting metabolic capacity or interstitial fluid clearance. Whereas the spatial profile of E-BRAIN is traditionally assumed to depend only on macroscopic anatomy, principle 2 suggest a central role for local capillary ultrastructure-which impact forms of neuromodulation including deep brain stimulation (DBS), spinal cord stimulation (SCS), transcranial magnetic stimulation (TMS), electroconvulsive therapy (ECT), and transcranial electrical stimulation (tES)/transcranial direct current stimulation (tDCS).
Keyword:
Blood-brain Barrier
BBB amplification
electric field
neurovascular coupling
neurovascular unit
neuron polarization
AI总结

AI总结

对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。

期刊

N
Neuromodulation
IF:
3.5
论文数:
2.5K
被引数:
5.2K

机构

H
Harvard University
学者数:
26.5W
论文数: 22.0W
被引数: 28.7W
H
harvard university medical affiliates
学者数:
5.8W
论文数: 4.5W
被引数: 36
引用论文

引用论文

The First Crystal Structure of a Thioacylenzyme Intermediate in the ALDH Family:  New Coenzyme Conformation and Relevance to Catalysis
err2006-02-07
err0
PREAI
errKatia D'Ambrosio; Arnaud Pailot; François Talfournier; Claude Didierjean; Ettore Benedetti; André Aubry; Guy Branlant; Catherine Corbier
err分享
err收藏
Activation of Coagulation after Administration of Tumor Necrosis Factor to Normal Subjects
err1990-06-07
err0
errOAAI
errTom van der Poll; Harry R. Büller; Hugo ten Cate; Cornelis H. Wortel; Kenneth A. Bauer; Sander J.H. van Deventer; C. Erik Hack; Hans P. Sauerwein; Robert D. Rosenberg; Jan W. ten Cate
err分享
err收藏
Enhanced tES and tDCS computational models by meninges emulation通过脑膜仿真增强的tES和tDCS计算模型
err2020-01-14
err27
errOAAI
errJiang, Jimmy; Truong, Dennis Q.; Esmaeilpour, Zeinab; Huang, Yu; Badran, Bashar W.; Bikson, Marom
err分享
err收藏
Neurovascular Coupling in Parkinson's Disease Patients: Effects of Dementia and Acetylcholinesterase Inhibitor Treatment
err2010-10-01
err25
PREAI
errRosengarten, Bernhard; Dannhardt, Veren; Burr, Ole; Poehler, Matthias; Rosengarten, Susanne; Oechsner, Matthias; Reuter, Iris
err分享
err收藏
学者 查看更多内容