Apollo 12 Moon Anomaly Image, 1969
NASA-released photo from Apollo 12 mission tagged as UAP over lunar surface.
Jan 1, 1969
Moon
PURSUE Program

AI Disclosure Brief
AI assistedReported Object Read
Object description not provided in source; image from Apollo 12 mission over Moon tagged as UAP.
Notable Characteristics
- Environment: space
Reported Motion
No confident entries yet.
Evidence Notes
- NASA metadata association
- Pursue Initiative release
NASA image from Apollo 12 mission released as UAP media in 2026 Pursue batch, showing unspecified lunar anomaly.
Unclear
OPTICAL
50%
Prosaic Leads
- Space debris
- Lens artifact
- Mission equipment
Anomalous Indicators
- Official UAP tagging by NASA/Pursue
- Lunar environment context
Evidence Gaps
- No visible content description due to minimal extracted text
- No shape or motion details provided
Pattern Mesh // linked sightings
Unresolved UAP Report, United Arab Emirates, October 2023
The United States Central Command submitted a report of an unidentified anomalous phenomenon to the All-domain Anomaly Resolution Office (AARO) consisting of four minutes and 57 seconds of video footage from an infrared (IR) sensor aboard a U.S. military platform in 2023. An accompanying mission report, DoW-UAP-D23, mentions a UAP was observed during the mission. Video Description: 00:00-01:55: No content. 01:56: An area of contrast becomes distinguishable against the background in the center of the right side of the display. 02:04: The IR sensor pans to center on the area of contrast. 02:14: The sensor field-of-view narrows to zoom in on the area of contrast. 02:15-03:26: The area of contrast remains generally in the center of the sensor field-of-view. 03:27-04:57: The sensor motion causes the area of contrast to move erratically across the display. Due to this motion, the sensor system repeatedly loses and reacquires the area of contrast within the center area of the display. This video description is provided for informational purposes only. Readers should not interpret any part of this description as reflecting an analytical judgment, investigative conclusion, or factual determination regarding the described event’s validity, nature, or significance.
Same source archive
Shared tags: pursue-release-1, release-1
Unresolved UAP Report, United Arab Emirates, October 2023
The United States Central Command submitted a report of an unidentified anomalous phenomenon to the All-domain Anomaly Resolution Office (AARO) consisting of 43 seconds of video footage from an infrared sensor aboard a U.S. military platform in 2023. An accompanying mission report, DoW-UAP-D23, mentions a UAP was observed during the mission. Video Description: 00:00-00:17: An area of contrast remains generally within the top left quarter of the display. 00:17-00:18: The sensor pans from right to left, causing the area of contrast to pass through the center of the display. The sensor then pans from left to right, causing the area of contrast to return to its approximate initial position within the sensor field-of-view. 00:29: The sensor stops tracking the area of contrast, causing it to leave the sensor field-of-view on the left side of the screen. 00:30-00:43: The sensor resumes its motion relative to the background but does not reacquire the area of contrast. This video description is provided for informational purposes only. Readers should not interpret any part of this description as reflecting an analytical judgment, investigative conclusion, or factual determination regarding the described event’s validity, nature, or significance.
Same source archive
Shared tags: pursue-release-1, release-1
Unresolved UAP Report, Syria, October 2024
The United States Central Command submitted a report of an unidentified anomalous phenomenon (UAP) to the All-domain Anomaly Resolution Office (AARO) consisting of five seconds of video footage from a full-motion video (FMV) camera aboard a U.S. military platform in 2024. An accompanying mission report, DoW-UAP-D32, described the UAP as consisting of a “misshapen and uneven ball of white light,” and reported that a “light/glare halo effect” occurred at the top of the FMV feed. Video Description: 00:01-00:03: Two semi-transparent, irregularly shaped orange areas overlay the background imagery, persisting for less than two seconds each. This video description is provided for informational purposes only. Readers should not interpret any part of this description as reflecting an analytical judgment, investigative conclusion, or factual determination regarding the described event’s validity, nature, or significance.
Same source archive
Shared tags: pursue-release-1, release-1
Unresolved UAP Report, Syria, October 2024
The United States Central Command submitted a report of an unidentified anomalous phenomenon (UAP) to the All-domain Anomaly Resolution Office (AARO) consisting of six seconds of video footage from a full-motion video (FMV) camera aboard a U.S. military platform in 2024. An accompanying mission report, DoW-UAP-D32, described the UAP as consisting of a “misshapen and uneven ball of white light,” and reported that a “light/glare halo effect” occurred at the top of the FMV feed. Video Description: 00:02-00:04: An area of irregular color and brightness, mainly consisting of white and red highlights, appears near the center of the top edge of the sensor display. The area extends to a width of approximately one-third of the horizontal frame, with a vertical area comprising approximately one-sixth of the viewing area. Overall, its shape is best described as a horizontally-oriented half-oval bisected along its major axis. This video description is provided for informational purposes only. Readers should not interpret any part of this description as reflecting an analytical judgment, investigative conclusion, or factual determination regarding the described event’s validity, nature, or significance.
Same source archive
Shared tags: pursue-release-1, release-1
Unresolved UAP Report, Syria, October 2024
The United States Central Command submitted a report of an unidentified anomalous phenomenon (UAP) to the All-domain Anomaly Resolution Office (AARO) consisting of five seconds of video footage from a full-motion video (FMV) camera aboard a U.S. military platform in 2024. An accompanying mission report, DoW-UAP-D32, described the UAP as consisting of a “misshapen and uneven ball of white light,” and reported that a “light/glare halo effect” occurred at the top of the FMV feed. Video Description: 00:00-00:01: An indistinctly shaped multi-colored area moves from right to left across the top edge of the sensor display within the first second of the video. This video description is provided for informational purposes only. Readers should not interpret any part of this description as reflecting an analytical judgment, investigative conclusion, or factual determination regarding the described event’s validity, nature, or significance.
Same source archive
Shared tags: pursue-release-1, release-1
Unresolved UAP Report, Syria, July 2022
The United States Central Command submitted a report of an unidentified anomalous phenomenon (UAP) to the All-domain Anomaly Resolution Office (AARO) consisting of 14 seconds of video footage from an infrared (left) and electro-optical (right) sensor aboard a U.S. military platform in 2022. An accompanying mission report, DoW-UAP-D16, described the UAP as “moving from north to south.” Video Description: At the five second mark, the video depicts an object moving from right to left across the top right quarter of the sensor field-of-view. This video description is provided for informational purposes only. Readers should not interpret any part of this description as reflecting an analytical judgment, investigative conclusion, or factual determination regarding the described event’s validity, nature, or significance.
Same source archive
Shared tags: pursue-release-1, release-1
Chronology Trace // before & after
Official Files // source material
1 linkedCommunity Discussion
0 commentsSigned-in researchers discussing Apollo 12 Moon Anomaly Image, 1969. Share observations, cross-references, or questions.
Sign in to join the discussion on this signal.
Sign in to comment