NewsLayer.com
NewsLayer PulseLIVEBTC$75,721+0.18%ETH$2,394-0.10%SOL$97.57+0.77%XRP$1.29+0.36%DOGE$0.08+0.00%ADA$0.193-1.18%Total Cap$2.70T-0.04%Layer Index28 Fear

New patient-specific AI model improves precision in minimally invasive surgeries

Researchers created a new technique that accurately and rapidly matches X-rays captured during surgery with a patient's preoperative 3D medical scan. This method could make it easier for clinicians to precisely pilot minimally invasive…

News-Medical

Publisher

Sep 16, 2026 at 5:24 PM UTC · 5 분 소요

New patient-specific AI model improves precision in minimally invasive surgeries
NewsLayer editorial artwork
번역 중…

Researchers created a new technique that accurately and rapidly matches X-rays captured during surgery with a patient's preoperative 3D medical scan. This method could make it easier for clinicians to precisely pilot minimally invasive surgical tools, leading to faster and safer procedures.

Clinicians perform many minimally invasive surgeries using real-time X-rays to help them steer devices like catheters and endoscopes through tiny incisions. But since X-rays are flat images, it can be challenging to determine exactly where surgical tools are located and oriented within the patient's body, increasing the risk of complications.

To help localize surgical devices, clinicians may manually align X-rays with preoperative 3D medical images, such as CT scans or MRIs. Artificial intelligence tools designed to streamline this process struggle to align images robustly for all patients, making them infeasible in practice.

This new system, developed by scientists and clinicians at MIT and collaborating institutions, uses an AI model that adapts to each patient in only about five minutes. The model automatically matches one patient's X-rays with 3D scans in a matter of seconds, and with sub-millimeter precision.

Article Intelligence

Topics

Sponsored

Ad
House — Advertise on NewsLayer
NewsLayerLearn more

NewsLayer Premium

Unlock deeper intelligence.

Ad-free reading, exclusive research, and real-time onchain insights.

Go Premium