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Methods for Tattooing Xenopus laevis with a Rotary Tattoo Machine04:18

Methods for Tattooing Xenopus laevis with a Rotary Tattoo Machine

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Here, we describe methods for tattooing adult Xenopus laevis (African clawed frog) with a rotary tattoo machine. Proper tattooing results in dark, easily legible numerals that last for several months and make animals easily distinguishable for research and recordkeeping...
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A Two-Step Pyrolysis-Gas Chromatography Method with Mass Spectrometric Detection for Identification of Tattoo Ink Ingredients and Counterfeit Products08:07

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This method for two-step pyrolysis online coupled to gas chromatography with mass spectrometric detection and data evaluation protocol can be used for multi-component analysis of tattoo inks and discrimination of counterfeit...
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Inkjet Printing All Inorganic Halide Perovskite Inks for Photovoltaic Applications07:42

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A protocol for synthesizing inorganic-lead-halide hybrid perovskite quantum dot inks for inkjet printing and the protocol for preparing and printing the quantum dot inks in an inkjet printer with post characterization techniques are presented.
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Environmental Screening of Aeromonas hydrophila, Mycobacterium spp., and Pseudocapillaria tomentosa in Zebrafish Systems09:58

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This protocol describes the use of sump swabs and sludge analysis of zebrafish systems, which leads to increased detection compared to the sole use of sentinels to detect pathogens such as Aeromonas hydrophila, Mycobacterium spp., and Pseudocapillaria tomentosa. A system to monitor P. tomentosa eggs in quarantine is also...
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Skin Tattooing As A Novel Approach For DNA Vaccine Delivery06:37

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Skin tattooing is a potent and safe way to delivery DNA vaccine intradermally. Here, a DNA plasmid encoding EGFP is delivered by tattooing to the skin of a laboratory mouse, and the expression of EGFP in the skin cells is then inspected by confocal...
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Planar and three-dimensional printing of conductive metallic inks is described. Our approach provides new avenues for fabricating printed electronic, optoelectronic, and biomedical devices in unusual layouts at the...
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Updated: Feb 12, 2026

Author Spotlight: Refining Xenopus laevis Marking Techniques for Biomedical Studies
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急速放出が明らか:シナプスを尊重する.

Robert C Malenka1

  • 1Nancy Pritzker Laboratory, Department of Psychiatry and Behavioral Sciences, Stanford University School of Medicine, Stanford CA 94305, USA.

Cell
|September 17, 2013
PubMed
まとめ
この要約は機械生成です。

リチャード・シェラーとトーマス・スードホフは,神経伝達物質の放出の分子メカニズムを明らかにしたことで,ラスカー賞を受賞した. 彼らの研究は,シナプス伝達と神経精神疾患の理解を深める.

さらに関連する動画

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Skin Tattooing As A Novel Approach For DNA Vaccine Delivery
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Skin Tattooing As A Novel Approach For DNA Vaccine Delivery
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科学分野:

  • 神経科学は神経科学である.
  • 分子生物学は分子生物学である.
  • 細胞生物学 細胞生物学

背景:

  • 神経伝達物質の放出は,シナプス伝達における基本的なプロセスです.
  • これらの分子メカニズムを理解することは,神経学的および精神学的状態の診断と治療に不可欠です.

研究 の 目的:

  • 神経伝達物質の放出を制御する分子機構を解明する.
  • シナプス伝送の分子基礎を理解するために.
  • 神経精神疾患の原因についての洞察を提供するためです.

主な方法:

  • 抽象文では,方法が指定されていない.
  • 抽象文では,方法が指定されていない.
  • 抽象文では,方法が指定されていない.

主要な成果:

  • 神経伝達物質の放出の主要な分子機構を特定した.
  • シナプス伝送に関する根本的な洞察を提供した.
  • 神経精神疾患の分子基盤の理解を深めた.

結論:

  • 解明されたメカニズムは,正常な脳機能に不可欠である.
  • これらの分子プロセスの理解は,神経学的および精神的疾患の治療法を開発するのに役立ちます.
  • この研究は,複雑な病気を理解する上で基礎科学の重要性を強調しています.