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相关概念视频

Intracellular Signaling Cascades01:24

Intracellular Signaling Cascades

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Once a ligand binds to a receptor, the signal is transmitted through the membrane and into the cytoplasm. The continuation of a signal in this manner is called signal transduction. Signal transduction only occurs with cell-surface receptors, which cannot interact with most components of the cell, such as DNA. Only internal receptors can interact directly with DNA in the nucleus to initiate protein synthesis. When a ligand binds to its receptor, conformational changes occur that affect the...
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Rab Cascades01:25

Rab Cascades

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Rab GTPases act in a regulated cascade during membrane fusion, helping the lipid bilayers mix. The Rab family of proteins are active when bound to GTP, and inactive when bound to GDP. Hence, they act as guanine nucleotide-dependent molecular switches. Rab-GTP recognizes and binds to long or short-range tethering proteins to capture the target vesicle. These tethers coordinate with SNAREs on the vesicle and the target membrane to assemble the trans SNARE complex that locks the mixing bilayers.
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Veins as Blood Reservoirs01:10

Veins as Blood Reservoirs

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Veins, while chiefly responsible for circulating blood back to the heart, also function as storage vessels for blood. They house approximately 64 percent of the body's total blood volume, a feat made possible by their high capacitance—the inherent ability to expand and accommodate large volumes of blood, even under low pressure. The large diameter and thin walls of veins augment their distensibility, significantly more so than arteries, due to their classification as capacitance...
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Amplifying Signals via Enzymatic Cascade01:22

Amplifying Signals via Enzymatic Cascade

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When a ligand binds to a cell-surface receptor, the receptor's intracellular domain changes shape, which may either activate its enzyme function or allow its binding to other molecules. The initial signal is amplified by most signal transduction pathways. This means that a single ligand molecule can activate multiple molecules of a downstream target. Proteins that relay a signal are most commonly phosphorylated at one or more sites, activating or inactivating the protein. Kinases catalyze...
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MAPK Signaling Cascades01:07

MAPK Signaling Cascades

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Mitogen-activated protein kinase, or MAPK pathway, activates three sequential kinases to regulate cellular responses such as proliferation, differentiation, survival, and apoptosis. The canonical MAPK pathway starts with a mitogen or growth factor binding to an RTK. The activated RTKs stimulate Ras, which recruits Raf or MAP3 Kinase (MAPKKK), the first kinase of the MAPK signaling cascade. Raf further phosphorylates and activates MEK or MAP2 Kinases (MAPKK), which in turn phosphorylates MAP...
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Cascaded Op Amps01:16

Cascaded Op Amps

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Operational amplifiers (op-amps) are versatile electronic components that can be interconnected in a cascade - one after another in a linear sequence. This cascading is possible due to their infinite input resistance and zero output resistance, allowing them to maintain their input-output relationships even when connected in series.
In a cascaded system, each op-amp is referred to as a stage. The output of one stage drives the input of the subsequent stage. As the input signal passes through...
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相关实验视频

Updated: Feb 16, 2026

Implementation of a Reference Interferometer for Nanodetection
16:11

Implementation of a Reference Interferometer for Nanodetection

Published on: April 26, 2014

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一个级联的干扰仪-微共振器结构用于光子储计算.

Amideddin Mataji-Kojouri1, Sebastian Kühl2, Mohammad Seifi Laleh2

  • 1Integrated Photonic Devices Group, Chair of RF and Photonics Engineering, TU Dresden, Helmholzstr. 18, 01069, Dresden, Germany. amideddin.mataji_kojouri@tu-dresden.de.

Scientific reports
|February 14, 2026
PubMed
概括

这项研究引入了使用马赫-泽恩德干扰仪和微环共振器更快的光子容器计算方法. 这种方法可以实现高速计算,而不需要依赖.

关键词:
光学计算是指光学计算光子集成电路的光子集成电路摄影信号均等化 摄影信号均等化储水库计算器 储水库计算微共振器的使用方法

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相关实验视频

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Rapid Repetition Rate Fluctuation Measurement of Soliton Crystals in a Microresonator
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Uncovering Hidden Dynamics of Natural Photonic Structures Using Holographic Imaging
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科学领域:

  • 光子学是指光子学的使用方法.
  • 光学计算是指光学计算的应用.
  • 非线性动力学是一种非线性动力学.

背景情况:

  • 光子储计算利用复杂的系统动态进行计算.
  • 对于光子储库来说,实现芯片上的延迟元件是具有挑战性的,因为所需的延迟与非线性效应时间尺度相匹配.
  • 现有的基于的方法面临着速度和复杂性的局限性.

研究的目的:

  • 开发一个高速光子储计算系统.
  • 为了克服非线性和长延迟线的局限性.
  • 为了探索基于延迟的光子储库,利用振幅/相调和光检测非线性.

主要方法:

  • 时间延迟光子储库的模拟.
  • 使用马赫-泽恩德干扰仪和微环共振器.
  • 在电子输出层中集成数字内存.

主要成果:

  • 实现的计算速度几乎比基于的非线性储存器快一个数量级.
  • 速度主要受到调制/检测带宽的限制,而不是非线性.
  • 在NARMA-10,Mackey-Glass和Santa-Fe预测任务 (NMSE 0.002-0.05) 中展示了准确的性能.

结论:

  • 拟议的时间延迟光子储提供了显著的速度优势.
  • 这种架构可以实现高效的光子储库计算,而不依赖于的非线性效应.
  • 该系统能够完成复杂的预测任务和光通信信号均等.