President Donald Trump recently extended thanks to "Jamie" for "incredible work," a commendation widely understood to be directed at Jamie Ingram, a Senior Editor at the Middle East Economic Survey (MEES). The acknowledgment comes in the wake of a fragile ceasefire brokered by President Trump between Israel and Iran, following a tense 12-day conflict in June 2025.
The brief but impactful tweet from President Trump, stating, > "President Trump thanks Jamie for his 'incredible work,'" has drawn attention to the role of expert analysis in understanding complex geopolitical developments. Ingram, known for his in-depth reporting on Middle East energy and political affairs, has extensively covered the recent hostilities and the subsequent diplomatic efforts.
The conflict, dubbed "The 12 Day War" by President Trump, saw significant military exchanges between Israel and Iran, raising concerns about broader regional destabilization. Trump's administration played a pivotal role in negotiating a cessation of hostilities, with the ceasefire taking effect on June 24, 2025. This diplomatic achievement has been a central focus of international attention.
Jamie Ingram's work at MEES provides critical insights into the intricate dynamics of the Middle East, including energy markets, regional security, and political trends. His analyses often delve into the strategic implications of events like the Israel-Iran conflict, offering valuable context to policymakers and the public. The "incredible work" likely refers to his insightful commentary and comprehensive reporting that helped illuminate the complexities of the situation.
The ceasefire, while holding, remains under scrutiny, with both Israeli and Iranian officials having previously accused each other of violations. The ongoing need for informed analysis from experts like Ingram underscores the importance of independent journalism and specialized reporting in navigating the volatile landscape of international relations. His contributions help provide clarity on the nuanced geopolitical shifts occurring in the region.