Skip to main content
ML

Myka Labs, Inc.

Myka Labs develops AI-driven interventional catheter systems that utilize multimodal sensor architectures and miniature ultrasonic probes to enhance the precision of procedures targeting pancreatic cancer and other gastrointestinal conditions. This technology addresses the challenges of complex anatomy visualization, enabling less invasive surgeries and reducing hospital stays for patients.

San Francisco, United StatesFounded 20213100+ followers
Updated 20 months ago

Funding

Funding not disclosed

CF
Funding rounds are not available yet.

Founders

Product

Problem

Visualizing complex anatomy during interventional procedures, particularly in the gastrointestinal tract, poses a significant challenge for surgeons and gastroenterologists. Current methods may not provide sufficient detail, potentially leading to less precise interventions and longer hospital stays. This is especially critical in procedures targeting pancreatic cancer and congenital malformations.

Solution

Myka Labs develops AI-driven interventional catheter systems designed to enhance the precision and efficacy of surgical procedures. Their Glint™ catheters utilize multimodal sensor architectures and miniature ultrasonic probes to provide surgeons with improved visualization of complex and hidden anatomy within the abdomen. By offering enhanced surgical team awareness, Myka Labs aims to enable less invasive surgeries, streamline procedures, and ultimately improve patient outcomes, potentially reducing lengthy hospital stays. The technology facilitates more targeted interventions for conditions ranging from abdominal cancer to congenital malformations in newborns.

Target Audience

The primary target audience includes surgeons and gastroenterologists performing interventional procedures in the abdomen, particularly those specializing in pancreatic cancer treatment and congenital malformation repair.

Features

  • Glint™ catheters equipped with multimodal sensor architectures for detailed anatomical visualization.
  • Miniature ultrasonic probes integrated into the catheter system.
  • AI-driven image processing to highlight and reveal complex anatomy.
  • Technology designed to enable less invasive surgical procedures.
This profile is AI-generated and may contain inaccuracies.