{
  "id": 583491,
  "title": "Do we know the position of the receivers? Is it one-dimensional (1D) or two-dimensional (2D)?",
  "url": "/competitions/waveform-inversion/discussion/583491",
  "author_name": "",
  "post_date": "2025-06-07T08:32:08.169860900Z",
  "votes": 1,
  "comment_count": 3,
  "views": 0,
  "content": "<p>Do we know the position of the receivers? Is it one-dimensional (1D) or two-dimensional (2D)?</p>",
  "messages": [
    {
      "id": "3219171",
      "postDate": "06/07/2025 08:32:08",
      "content": "<p>Do we know the position of the receivers? Is it one-dimensional (1D) or two-dimensional (2D)?</p>",
      "rawMarkdown": "Do we know the position of the receivers? Is it one-dimensional (1D) or two-dimensional (2D)?",
      "votes": null
    },
    {
      "id": "3219266",
      "postDate": "06/07/2025 11:47:50",
      "content": "<p>see discussion on <a href=\"https://www.kaggle.com/competitions/waveform-inversion/discussion/572867#3180634\" target=\"_blank\">src placement</a></p>",
      "rawMarkdown": "see discussion on [src placement](https://www.kaggle.com/competitions/waveform-inversion/discussion/572867#3180634)",
      "votes": null
    },
    {
      "id": "3219327",
      "postDate": "06/07/2025 13:57:20",
      "content": "<p>Better read all the forum.</p>\n<p>If you want to be selective, then read posts with most votes.</p>",
      "rawMarkdown": "Better read all the forum.\n\nIf you want to be selective, then read posts with most votes.",
      "votes": null
    },
    {
      "id": "3220703",
      "postDate": "06/09/2025 18:31:59",
      "content": "<p>With my background in sonography, I understand that the ultrasound receiver operates on a 2D scale. I primarily work with 2D ultrasound machines and often encounter challenges related to image noise, particularly when scanning larger patients, where acoustic penetration and signal quality can be limited.</p>",
      "rawMarkdown": "With my background in sonography, I understand that the ultrasound receiver operates on a 2D scale. I primarily work with 2D ultrasound machines and often encounter challenges related to image noise, particularly when scanning larger patients, where acoustic penetration and signal quality can be limited.",
      "votes": null
    }
  ],
  "comments": [
    {
      "id": 3219266,
      "author_name": "cpmpml",
      "author_url": "",
      "post_date": "06/07/2025 11:47:50",
      "content": "<p>see discussion on <a href=\"https://www.kaggle.com/competitions/waveform-inversion/discussion/572867#3180634\" target=\"_blank\">src placement</a></p>",
      "votes": null,
      "replies": []
    },
    {
      "id": 3219327,
      "author_name": "cpmpml",
      "author_url": "",
      "post_date": "06/07/2025 13:57:20",
      "content": "<p>Better read all the forum.</p>\n<p>If you want to be selective, then read posts with most votes.</p>",
      "votes": null,
      "replies": []
    },
    {
      "id": 3220703,
      "author_name": "kelvinmwaisaka",
      "author_url": "",
      "post_date": "06/09/2025 18:31:59",
      "content": "<p>With my background in sonography, I understand that the ultrasound receiver operates on a 2D scale. I primarily work with 2D ultrasound machines and often encounter challenges related to image noise, particularly when scanning larger patients, where acoustic penetration and signal quality can be limited.</p>",
      "votes": null,
      "replies": []
    }
  ],
  "raw_markdown_by_id": {
    "3219171": "Do we know the position of the receivers? Is it one-dimensional (1D) or two-dimensional (2D)?",
    "3219266": "see discussion on [src placement](https://www.kaggle.com/competitions/waveform-inversion/discussion/572867#3180634)",
    "3219327": "Better read all the forum.\n\nIf you want to be selective, then read posts with most votes.",
    "3220703": "With my background in sonography, I understand that the ultrasound receiver operates on a 2D scale. I primarily work with 2D ultrasound machines and often encounter challenges related to image noise, particularly when scanning larger patients, where acoustic penetration and signal quality can be limited."
  },
  "source": "meta"
}