{
  "id": 546307,
  "title": "Revolution change coordinates?",
  "url": "/competitions/czii-cryo-et-object-identification/discussion/546307",
  "author_name": "",
  "post_date": "2024-11-15T03:16:16.298799900Z",
  "votes": null,
  "comment_count": 1,
  "views": 0,
  "content": "<p>Will the original annotated protein coordinates change when switching between different resolutions? In other words, will the coordinates of the same protein differ between resolution 1 and resolution 2?</p>",
  "messages": [
    {
      "id": "3045988",
      "postDate": "11/15/2024 03:16:16",
      "content": "<p>Will the original annotated protein coordinates change when switching between different resolutions? In other words, will the coordinates of the same protein differ between resolution 1 and resolution 2?</p>",
      "rawMarkdown": "Will the original annotated protein coordinates change when switching between different resolutions? In other words, will the coordinates of the same protein differ between resolution 1 and resolution 2?",
      "votes": null
    },
    {
      "id": "3046094",
      "postDate": "11/15/2024 05:31:28",
      "content": "<p>The dataset grids are 0 - 6300, 0 - 6300, and 0 - 1840 for x, y, and z dimensions respectively.  You divide a given coordinate by 10, 20, or 40 to get the pixel for the low, medium, and high resolution datasets.</p>\n<p>So point (4120.0, 2200.0, 1080.0) is pixel value (412, 220, 108) in the high res, (206, 110, 54) in the medium, and (103, 55, 27) in the low.</p>\n<p>Just be careful that the coordinates are actually the reverse for how the data is stored (layer, row, column.)</p>",
      "rawMarkdown": "The dataset grids are 0 - 6300, 0 - 6300, and 0 - 1840 for x, y, and z dimensions respectively.  You divide a given coordinate by 10, 20, or 40 to get the pixel for the low, medium, and high resolution datasets.\n\nSo point (4120.0, 2200.0, 1080.0) is pixel value (412, 220, 108) in the high res, (206, 110, 54) in the medium, and (103, 55, 27) in the low.\n\nJust be careful that the coordinates are actually the reverse for how the data is stored (layer, row, column.)",
      "votes": null
    }
  ],
  "comments": [
    {
      "id": 3046094,
      "author_name": "davidlist",
      "author_url": "",
      "post_date": "11/15/2024 05:31:28",
      "content": "<p>The dataset grids are 0 - 6300, 0 - 6300, and 0 - 1840 for x, y, and z dimensions respectively.  You divide a given coordinate by 10, 20, or 40 to get the pixel for the low, medium, and high resolution datasets.</p>\n<p>So point (4120.0, 2200.0, 1080.0) is pixel value (412, 220, 108) in the high res, (206, 110, 54) in the medium, and (103, 55, 27) in the low.</p>\n<p>Just be careful that the coordinates are actually the reverse for how the data is stored (layer, row, column.)</p>",
      "votes": null,
      "replies": []
    }
  ],
  "raw_markdown_by_id": {
    "3045988": "Will the original annotated protein coordinates change when switching between different resolutions? In other words, will the coordinates of the same protein differ between resolution 1 and resolution 2?",
    "3046094": "The dataset grids are 0 - 6300, 0 - 6300, and 0 - 1840 for x, y, and z dimensions respectively.  You divide a given coordinate by 10, 20, or 40 to get the pixel for the low, medium, and high resolution datasets.\n\nSo point (4120.0, 2200.0, 1080.0) is pixel value (412, 220, 108) in the high res, (206, 110, 54) in the medium, and (103, 55, 27) in the low.\n\nJust be careful that the coordinates are actually the reverse for how the data is stored (layer, row, column.)"
  },
  "source": "meta"
}