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南瓜籽的电生理学:体内忆阻器

Electrophysiology of pumpkin seeds: Memristors in vivo.

作者信息

Volkov Alexander G, Nyasani Eunice K, Tuckett Clayton, Greeman Esther A, Markin Vladislav S

机构信息

a Department of Chemistry , Oakwood University , Huntsville , AL , USA.

b Department of Neurology , University of Texas, Southwestern Medical Center , Dallas , TX , USA.

出版信息

Plant Signal Behav. 2016;11(4):e1151600. doi: 10.1080/15592324.2016.1151600.

Abstract

Leon Chua, the discoverer of a memristor, theoretically predicted that voltage gated ion channels can be memristors. We recently found memristors in different plants such as the Venus flytrap, Mimosa pudica, Aloe vera, apple fruits, and in potato tubers. There are no publications in literature about the existence of memristors in seeds. The goal of this work was to discover if pumpkin seeds might have memristors. We selected Cucurbita pepo L., cv. Cinderella, Cucurbita maxima L. cv Warty Goblin, and Cucurbita maxima L., cv. Jarrahdale seeds for this analysis. In these seeds, we found the presence of resistors with memory. The analysis was based on cyclic voltammetry where a memristor should manifest itself as a nonlinear two-terminal electrical element, which exhibits a pinched hysteresis loop on a current-voltage plane for any bipolar cyclic voltage input signal. Dry dormant pumpkin seeds have very high electrical resistance without memristive properties. The electrostimulation by bipolar sinusoidal or triangular periodic waves induces electrical responses in imbibed pumpkin seeds with fingerprints of memristors. Tetraethylammonium chloride, an inhibitor of voltage gated K(+) channels, transforms a memristor to a resistor in pumpkin seeds. NPPB (5-Nitro-2-(3-phenylpropylamino)benzoic acid) inhibits the memristive properties of imbibed pumpkin seeds. The discovery of memristors in pumpkin seeds creates a new direction in the understanding of electrophysiological phenomena in seeds.

摘要

忆阻器的发现者利昂·蔡从理论上预测电压门控离子通道可能是忆阻器。我们最近在不同植物中发现了忆阻器,如捕蝇草、含羞草、芦荟、苹果果实以及马铃薯块茎。文献中尚无关于种子中存在忆阻器的报道。这项工作的目的是探究南瓜籽是否可能含有忆阻器。我们选择了西葫芦品种灰姑娘、笋瓜品种疣状哥布林以及笋瓜品种贾拉代尔的种子进行分析。在这些种子中,我们发现了具有记忆功能的电阻器。该分析基于循环伏安法,在这种方法中,忆阻器应表现为一个非线性双端电气元件,对于任何双极循环电压输入信号,它在电流 - 电压平面上都会呈现出一个收缩的滞后回线。干燥休眠的南瓜籽具有非常高的电阻,且没有忆阻特性。通过双极正弦或三角周期波进行电刺激会在吸胀的南瓜籽中诱导出具有忆阻器特征的电响应。氯化四乙铵,一种电压门控钾通道抑制剂,会将南瓜籽中的忆阻器转变为电阻器。NPPB(5 - 硝基 - 2 -(3 - 苯基丙基氨基)苯甲酸)会抑制吸胀南瓜籽的忆阻特性。南瓜籽中忆阻器的发现为理解种子中的电生理现象开辟了一个新方向。

相似文献

1
Electrophysiology of pumpkin seeds: Memristors in vivo.南瓜籽的电生理学:体内忆阻器
Plant Signal Behav. 2016;11(4):e1151600. doi: 10.1080/15592324.2016.1151600.
2
An analytical model of memristors in plants.植物中忆阻器的分析模型。
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Memristors in the Venus flytrap.捕蝇草中的忆阻器。
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Memristors: Memory elements in potato tubers.忆阻器:马铃薯块茎中的记忆元件。
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Memristors in the electrical network of Aloe vera L.芦荟电网络中的忆阻器
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Cyclic voltammetry of apple fruits: Memristors in vivo.苹果果实的循环伏安法:体内的忆阻器。
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引用本文的文献

1
Transient Response and Firing Behaviors of Memristive Neuron Circuit.忆阻神经元电路的瞬态响应与放电行为
Front Neurosci. 2022 Jun 22;16:922086. doi: 10.3389/fnins.2022.922086. eCollection 2022.

本文引用的文献

1
Memristors: Memory elements in potato tubers.忆阻器:马铃薯块茎中的记忆元件。
Plant Signal Behav. 2015;10(10):e1071750. doi: 10.1080/15592324.2015.1071750.
2
Memristors in the Venus flytrap.捕蝇草中的忆阻器。
Plant Signal Behav. 2014;9(8):e29204. doi: 10.4161/psb.29204.
3
Memristors in the electrical network of Aloe vera L.芦荟电网络中的忆阻器
Plant Signal Behav. 2014;9(7):e29056. doi: 10.4161/psb.29056.
4
Memory elements in the electrical network of Mimosa pudica L.含羞草电网络中的记忆元件
Plant Signal Behav. 2014;9(10):e982029. doi: 10.4161/15592324.2014.982029.
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An analytical model of memristors in plants.植物中忆阻器的分析模型。
Plant Signal Behav. 2014;9(10):e972887. doi: 10.4161/15592316.2014.972887.
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Memristors in plants.植物中的忆阻器。
Plant Signal Behav. 2014;9(3):e28152. doi: 10.4161/psb.28152. Epub 2014 Feb 20.
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Memristive model of electro-osmosis in skin.皮肤电渗的忆阻模型。
Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Mar;83(3 Pt 1):031916. doi: 10.1103/PhysRevE.83.031916. Epub 2011 Mar 24.
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The missing memristor found.缺失的忆阻器被找到。
Nature. 2008 May 1;453(7191):80-3. doi: 10.1038/nature06932.

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