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相关概念视频

Local Attraction01:22

Local Attraction

39
Local attraction refers to disturbances in compass readings caused by magnetic influences from nearby objects such as metal fences, buried pipes, vehicles, buildings, power lines, or natural iron ore deposits. Small items like wristwatches, steel tools, or belt buckles can also interfere with the compass by creating local magnetic fields that distort the Earth's natural magnetic field. These distortions lead to inaccurate readings, posing navigation and land surveying challenges.Local...
39
Compass01:23

Compass

47
The compass is a fundamental instrument that operates by aligning its magnetic needle with Earth's magnetic field. This alignment facilitates navigation and orientation, offering a means to determine direction relative to magnetic north. However, the magnetic needle points to magnetic north, which differs slightly from true geographic north due to magnetic declination, which is the angular deviation between these two points. Declination varies based on geographic location and shifts over time...
47
Azimuths and Bearings01:19

Azimuths and Bearings

88
Azimuths and bearings are essential concepts in surveying, providing methods to express the direction of a line relative to a meridian. Azimuths refer to the clockwise angle measured from the north end of a reference meridian to the given line, ranging from zero to 360 degrees. This method gives a comprehensive directional reference within a full 360-degree circle, making it a straightforward way to communicate direction in various fields, including navigation, cartography, and...
88
Upward Impending Motion01:21

Upward Impending Motion

253
A square-threaded screw jack is a mechanical device widely used for lifting heavy loads or applying considerable force. Its operation is based on converting the force applied at its handle into a torsional moment, causing the upward impending motion of the screw. This movement is accomplished by overcoming the static friction between the threads of the screw and the jack.
To better comprehend how a screw jack functions, consider the completely unraveled thread as a block in contact with the...
253
Design Example: Marking Boundaries of a Site Using a Compass01:12

Design Example: Marking Boundaries of a Site Using a Compass

30
Marking site boundaries using a compass is a precise surveying technique that ensures the accuracy of boundary delineation. The process begins by using provided site details, including the bearings and lengths of each boundary line. The initial step involves calculating latitudes and departures for all sides of the site. This computation verifies that the traverse is free of errors, ensuring a closed and accurate boundary.The process starts at a known point, such as Point A, which is often...
30
Latitudes and Departures01:27

Latitudes and Departures

50
Latitudes and departures are essential concepts in surveying, providing a systematic way to analyze the projections of traverse lines. These projections allow surveyors to interpret a line's north-south and east-west components, which are crucial for precisely calculating areas, bearings, and lengths. Latitude is the north-south projection of a line, calculated as the product of the line's length and the cosine of its bearing. Departure, conversely, is the east-west projection obtained by...
50

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相关实验视频

Updated: May 25, 2025

Functional Near-Infrared Spectroscopy Hyperscanning Study in Psychological Counseling
06:04

Functional Near-Infrared Spectroscopy Hyperscanning Study in Psychological Counseling

Published on: January 17, 2025

420

导航:扫描您的未来路径.

Michael E Hasselmo1, Jennifer C Robinson1, Patrick A LaChance1

  • 1Center for Systems Neuroscience, Department of Psychological and Brain Sciences, Boston University, Boston, MA 02215, USA.

Current biology : CB
|February 25, 2025
PubMed
概括
此摘要是机器生成的。

新的研究揭示了脑细胞 (如内腔网格细胞和头部方向细胞) 如何协同工作. 这种互动有助于我们通过扫描我们环境中的潜在路线来规划导航.

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科学领域:

  • 神经科学是一个神经科学.
  • 认知科学 认知科学
  • 计算神经科学是一种神经科学.

背景情况:

  • 空间导航依赖于神经群体编码位置和方向.
  • 脑内内膜网细胞和头部方向细胞是大脑导航系统的关键组成部分.

研究的目的:

  • 为空间路径规划提出一个新的计算模型.
  • 阐明导航中位置和方向编码神经元之间的相互作用.

主要方法:

  • 开发一个模拟神经相互作用的计算模型.
  • 分析模拟的网格单元和头部方向单元如何为轨迹扫描做出贡献.

主要成果:

  • 该模型表明,前进轨迹的交替扫描是由网格和头部方向单元的相互作用促进的.
  • 这种神经相互作用机制有助于有效地规划通过环境的路径.

结论:

  • 拟议的模型为大脑如何计划导航提供了新的视角.
  • 不同的神经元群体之间的相互作用对于空间规划等认知功能至关重要.