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Journal of Zhejiang University SCIENCE B

ISSN 1673-1581(Print), 1862-1783(Online), Monthly

Layers of interstitial fluid flow along a “slit-shaped” vascular adventitia

Abstract: Interstitial fluid (ISF) flow through vascular adventitia has been discovered recently. However, its kinetic pattern was unclear. We used histological and topographical identification to observe ISF flow along venous vessels in rabbits. By magnetic resonance imaging (MRI) in live subjects, the inherent pathways of ISF flow from the ankle dermis through the legs, abdomen, and thorax were enhanced by paramagnetic contrast. By fluorescence stereomicroscopy and layer-by-layer dissection after the rabbits were sacrificed, the perivascular and adventitial connective tissues (PACTs) along the saphenous veins and inferior vena cava were found to be stained by sodium fluorescein from the ankle dermis, which coincided with the findings by MRI. The direction of ISF transport in a venous PACT pathway was the same as that of venous blood flow. By confocal microscopy and histological analysis, the stained PACT pathways were verified to be the fibrous connective tissues, consisting of longitudinally assembled fibers. Real-time observations by fluorescence stereomicroscopy revealed at least two types of spaces for ISF flow: one along adventitial fibers and another one between the vascular adventitia and its covering fascia. Using nanoparticles and surfactants, a PACT pathway was found to be accessible by a nanoparticle of <100 nm and contained two parts: a transport channel and an absorptive part. The calculated velocity of continuous ISF flow along fibers of the PACT pathway was 3.6‒15.6 mm/s. These data revealed that a PACT pathway was a“slit-shaped”porous biomaterial, comprising a longitudinal transport channel and an absorptive part for imbibition. The use of surfactants suggested that interfacial tension might play an essential role in layers of continuous ISF flow along vascular vessels. A hypothetical “gel pump” is proposed based on interfacial tension and interactions to regulate ISF flow. These experimental findings may inspire future studies to explore the physiological and pathophysiological functions of vascular ISF or interfacial fluid flow among interstitial connective tissues throughout the body.

Key words: Vascular adventitia; Interstitial fluid; Connective tissue; Interfacial zone

Chinese Summary  <17> 量子点细胞自动机中四值逻辑门的设计与模拟新概念

Alireza Navidi1, Reza Sabbaghi-Nadooshan2, Massoud Dousti1
1伊斯兰阿扎德大学科学与研究分校电气与计算机工程系,伊朗德黑兰,1477893855
2伊斯兰阿扎德大学德黑兰中心分校电气工程系,伊朗德黑兰,13117773591
摘要:量子点细胞自动机(QCA)等新技术已展现出一些深亚微米标准互补金属氧化物半导体无法提供的显著特性。用QCA进行系统建模和设计多值逻辑门,可使复杂逻辑电路设计更加便捷。本文提出“四值QCA(QQCA)”新概念。该概念已在本团队专为四值QCA模型开发的量子点细胞自动模拟器(QCASim)中设定。设计了基本四值QCA逻辑门,如MIN、MAX和不同类型反相器(SQI,PQI,NQI和IQI),并通过QCASim验证。本文将例示QCASim如何通过其方便的CAD工具集快速而准确地工作。采用所设计的主要门电路设计了一个1×4译码器。基于QQCA设计的电路,取得最小延迟、最小面积和最低复杂度。将QQCA主要的逻辑门与基于碳纳米管场效应晶体管(CNFET)的四值门进行比较,结果表明本文所设计的电路具有更小延迟和更低能耗。

关键词组:量子点细胞自动机(QCA);四值逻辑;量子点细胞自动模拟器(QCASim);四值QCA(QQCA);四值译码器;四值门


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DOI:

10.1631/jzus.B2000590

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On-line Access:

2021-08-20

Received:

2020-09-26

Revision Accepted:

2021-02-14

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