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相关概念视频

Force Vector along a Line01:26

Force Vector along a Line

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Quite often in three-dimensional statics problems, the direction of a force is specified by two points through which its line of action passes. Consider a three-dimensional static pole with a cable anchored to the ground.
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Cable: Problem Solving01:29

Cable: Problem Solving

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When dealing with a cable that is fixed to two supports and subjected to uniform loading, it is crucial to determine the maximum tension in the cable. This process can be broken down into several key steps, as outlined below:
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Reducing Line Loss01:18

Reducing Line Loss

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In a three-phase circuit, line loss is an indicator of energy dissipated as heat due to the resistance of transmission lines. To address this, incorporating transformers into the system—a step-up transformer at the source and a step-down transformer at the load—is a strategic solution. Two three-phase transformers are introduced to improve this.
With a step-up transformer at the source, the voltage is increased, thereby reducing the current in the transmission lines since power loss...
524
Maximum Deflection01:13

Maximum Deflection

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When analyzing beams under unsymmetrical loads, such as a train moving on a bridge, it is crucial to accurately determine the points of maximum stress and deflection. The process involves identifying the maximum deflection of the beam, which may not always occur at its midpoint due to the uneven distribution of the load.
The maximum deflection occurs at a specific point, known as point O, where the tangent to the deflection curve is horizontal. To find point O, the slope of the tangent at any...
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Plotting and Calibrating the Root Locus01:19

Plotting and Calibrating the Root Locus

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Root loci often diverge as system poles shift from the real axis to the complex plane. Key points in this transition are the breakaway and break-in points, indicating where the root locus leaves and reenters the real axis. The branches of the root locus form an angle of 180/n degrees with the real axis, where n is the number of branches at a breakaway or break-in point.
The maximum gain occurs at the breakaway points between open-loop poles on the real axis, while the minimum gain is...
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Optimization Problems01:26

Optimization Problems

220
Optimization problems often involve identifying maximum or minimum values under specific constraints. A well-known example is determining the longest horizontal pipe that can be moved around a right-angled corner, where a 3-meter-wide hallway meets a 2-meter-wide hallway. This scenario, common in architectural design and industrial transport, can be understood conceptually through geometric and trigonometric reasoning.To visualize the problem, consider the pipe as a straight line that touches...
220

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相关实验视频

Updated: May 6, 2026

Cone Beam Intraoperative Computed Tomography-based Image Guidance for Minimally Invasive Transforaminal Interbody Fusion
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Cone Beam Intraoperative Computed Tomography-based Image Guidance for Minimally Invasive Transforaminal Interbody Fusion

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导线的最佳起始位置

Dominick Casciato1, Ross Groeschl2, Robert Mendicino2

  • 1*University of Maryland Medical Center, Baltimore, MD.

Journal of the American Podiatric Medical Association
|August 27, 2025
PubMed
概括

这项研究定义了在Charcot重建期间在第一个甲足部放置导线的解剖学地标. 精确的导线插入优化了骨髓内固定和手术结果.

科学领域:

  • 整形外科手术
  • 足部医学
  • 人体解剖学

背景情况:

  • 在Charcot重建中,中枢柱内固定至关重要.
  • 准确的导线放置对于最佳的内骨采购至关重要.
  • 目前的方法没有明确的解剖关系,用于将导线插入第一个四足.

研究的目的:

  • 确定第一个半足体内道中心及其头部和底部之间的解剖关系.
  • 为改善脚手术中的导线放置精度提供数据.

主要方法:

  • 解剖和测量十个新鲜冷的人类第一个四足骨.
  • 使用数字标杆进行线性测量 (长度,宽度,高度).
  • 采用3D打印门和图像分析软件来确定与足尺寸相对的道中心.

主要成果:

  • 骨髓内通道的中心位于大约51%的头部高度和67%的底部高度 (从下皮层).
  • 中心位于大约53%的头部宽度和53%的底部宽度 (从侧皮层).
  • 较长的四足与较高的基部起始位置有相关性 (r = 0.74; P = .02).

结论:

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  • 最佳的导线入口是略高于第一个中骨头的中心.
  • 导线应近距离指向四足底部的上三分之一.
  • 这些解剖学发现可以完善外科手术技术,并指导夏科重建的仪器开发.