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相关概念视频

4D Microscopy of Yeast12:00

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This protocol describes the analysis of fluorescently labeled intracellular compartments in budding yeast using multi-color 4D (time-lapse 3D) confocal microscopy. The imaging parameters are chosen to capture adequate signals while limiting photodamage. Custom ImageJ plugins allow labeled structures to be tracked and quantitatively...
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Techniques for Investigating the Anatomy of the Ant Visual System08:56

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This article outlines a suite of techniques in light and electron microscopy to study the internal and external eye anatomy of insects. These include several traditional techniques optimized for work on ant eyes, detailed troubleshooting, and suggestions for optimization for different specimens and regions of...
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This protocol utilizes light-sheet imaging to investigate cardiac contractile function in zebrafish larvae and gain insights into cardiac mechanics through cell tracking and interactive...
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A Technique for Gene Editing in Natural Killer Cells Using CRISPR Cas904:22

A Technique for Gene Editing in Natural Killer Cells Using CRISPR Cas9

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This video demonstrates a technique for Cas9 ribonucleoprotein-mediated genetic modification of primary natural killer (NK) cells. A Cas9 ribonucleoprotein, consisting of a Cas9 endonuclease bound to a guide RNA (gRNA) formed by base pairing a CRISPR RNA (crRNA) and a trans-activating crRNA (tracrRNA), is introduced into primary natural killer cells via electroporation. The ribonucleoprotein targets and cleaves the host DNA at the target site, leading to gene knockout via modification of the...
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Antibody Profiling by Luciferase Immunoprecipitation Systems (LIPS)12:19

Antibody Profiling by Luciferase Immunoprecipitation Systems (LIPS)

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The technical aspects of performing LIPS (Luciferase Immunoprecipitation Systems) are described. The overall approach involves expressing chimeric genes encoding antigens fused to Renilla luciferase (Ruc) in mammalian cells. Crude Ruc-antigen extracts are then prepared and, without purification, employed in immunoprecipitation assays to quantify...
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Stimulating the Lip Motor Cortex with Transcranial Magnetic Stimulation12:09

Stimulating the Lip Motor Cortex with Transcranial Magnetic Stimulation

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Transcranial magnetic stimulation (TMS) has proven to be a useful tool in investigating the role of the articulatory motor cortex in speech perception.  This article describes how to record motor evoked potentials (MEPs) from the lip muscles and how to disrupt the motor lip representation using repetitive...
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相关实验视频

Updated: Jan 20, 2026

4D Microscopy of Yeast
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基于解剖学的4D嘴唇技术用于入籍.

Melina Kichler1, Marta Barros1, Carolina de Freitas1

  • 1From the Independent Researcher, São Paulo, Brazil.

Plastic and reconstructive surgery. Global open
|January 19, 2026
PubMed
概括

4D Lips技术提供了一种安全有效的唇部增大方法,通过基于解剖学的方法实现自然的结果和高患者满意度. 这种氨酸填充技术优先考虑尺寸,分布,动态和患者对个性化结果的渴望.

科学领域:

  • 审美医学是一种美学医学.
  • 皮肤病学 皮肤病学
  • 整形外科 整形外科 整形外科

背景情况:

  • 唇部增大是一种受欢迎的美容手术,特别是在年轻人群中.
  • 实现自然的结果需要一个精确的,基于解剖学的方法,以尽量减少并发症.
  • 4D Lips技术,利用多相酸填充剂,旨在提高唇形状,同时尊重解剖学地标.

研究的目的:

  • 介绍和评估4D Lips技术用于唇部增大.
  • 评估新技术的患者满意度和安全结果.
  • 为了证明解剖学知情,个性化方法对唇部增大效果的有效性.

主要方法:

  • 这项研究涉及10名女性患者,他们使用4D Lips技术进行了唇部增大.
  • 采用了包括结核标记,垂直延长和色边界变形在内的各个技术组合.
  • 使用了两种具有不同粘弹性质的酸填充剂 (结构中等G',轮低G').

主要成果:

  • 所有患者都报告说,在术后,他们对唇的自然外观感到非常满意.
  • 观察到轻微的,短暂的副作用,如胀,没有干预就消失了.
  • 基于解剖学的技术促进了精确的体积化,精细的轮,并保持了自然的唇部动态,没有重大并发症.

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相关实验视频

Last Updated: Jan 20, 2026

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Author Spotlight: High-Resolution 4D Light-Sheet Imaging and Virtual Reality in Zebrafish for Single-Cell Analysis of Heart Function

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结论:

  • 4D Lips技术提供了一种安全有效的唇部增大方法,使患者满意度高.
  • 以解剖学为基础的个性化方法对于实现和和个性化的唇部增大结果至关重要.
  • 建议对更大的样本大小和长期随访进行进一步的研究,以验证这些发现.