Five white ultrasound probes on display at a medical technology trade fair
Leltek showcased their latest LeSONO LX series ultrasound probes

Photo: HiE/Behrends

Article • Medical Taiwan 2026: Company and product showcase

AI, imaging and implants: Taiwan's medtech innovators on show

Point-of-care ultrasound, AI-assisted surgery, advanced biomaterials, and much more: At Medical Taiwan 2026, manufacturers once again presented a diverse range of solutions across the medical, health and care expo. We took a closer look at three noteworthy companies and their products on show.

Leltek Inc.

Building on its established handheld ultrasound portfolio, Taiwanese manufacturer Leltek introduced its new LeSONO LX series at this year's expo. The dual-probe devices LX192LC and LX128LC combine convex, linear and cardiac presets in a single 3-in-1 design, allowing clinicians to switch rapidly between imaging modes for abdominal, vascular, musculoskeletal and cardiac examinations. Featuring 192 elements, the probes are designed to deliver sharper image detail across these varied applications. A third model, the LX128LP, pairs linear and phased array configurations in a wireless handheld device optimised specifically for cardiac and vascular assessments, with a compact form factor and fast start-up enabling rapid diagnostics at the point of care. 

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Article • Medical Taiwan 2026

Charting the road to tomorrow's healthcare

How can innovative technology help solve the most urgent needs in medicine? At the Medical Taiwan 2026 health and care expo in Taipei, leading manufacturers, international experts and decision-makers offered a promising glimpse into the healthcare systems of tomorrow – technology-driven, AI-enhanced and highly efficient, but also personalised and deeply humane at its core.

Weighing between 221 and 276 grams, the probes are built for extended clinical use, offering roughly three hours of battery endurance, compatibility with various wireless chargers, and support for 9V fast charging to minimise downtime. Connectivity is designed to be straightforward: the devices pair quickly with Android, iOS and Windows platforms, run as app-based ultrasound without requiring an additional subscription, and support DICOM 3.0 for smooth integration into existing PACS and HIS infrastructure. More than 30 imaging parameters can be customised, alongside over 15 presets for a quick start. According to Asif Muhammad, Leltek's International Sales Manager, the built-in automated tools, such as automatic gain, setting and measurement, automated bladder volume screening, ejection fraction calculation and IMT measurement, are intended to make everyday scanning faster and more consistent, even for less experienced operators. He added that the feather-light, IP68 waterproof housing makes the probes robust enough for demanding clinical environments while remaining easy to carry between patients. With more than 20,000 units already sold across over 60 countries, and FDA, CE and ISO certifications in place, Leltek continues to position itself as a leading brand in the mobile, handheld ultrasound space. 

Precisely Printed Medical Co., Ltd.

Specialising in 3D bioceramic printing, Precisely Printed Medical showcased its technology for producing high-precision, biomimetic bone implants at this year's expo. The company's interdisciplinary team, with backgrounds spanning materials chemistry, physiology, orthopaedics, neurosurgery and dentistry, has spent years developing a customised 3D bioceramic printing service built around materials such as tricalcium phosphate, zirconia and aluminium oxide. 

Precisely Printed Medical presented examples of high-precision 3D-printing for...
Precisely Printed Medical presented examples of high-precision 3D-printing for medical applications

Image source: Precisely Printed Medical

At the core of the offering is a 3D bioceramic printing service platform capable of analysing a patient's individual bone density. Based on this analysis, the company's proprietary printing materials are used to create custom 3D bioceramic bone implants designed to induce bone tissue regeneration. Lily Lin, the company's Promotions/IT Supervisor, explained that this accelerates dense inward bone growth and supports faster healing, with the aim of addressing complex orthopaedic bone defects and shortening patient recovery time. She noted that beyond orthopaedics, the technology also holds potential for joint replacement and dental applications. 

Smart Surgery Technology Co.

AI-powered image recognition was the focus at the booth of Smart Surgery Technology, a company dedicated to supporting surgeons during procedures while also advancing surgical education. Its core technology analyses images from surgery and endoscopy, applying colour-coded anatomical recognition to help identify organs and tissue in real time. Andy Hsueh, Software Engineer at Smart Surgery, said the underlying AI model achieves an F1 score accuracy of over 95%, a level of precision he said improves both surgical efficiency and training outcomes. He added that a built-in surgical time management feature informs the surgical team of the current stage of a procedure, helping to streamline workflow. 

On display at Smart Surgery Technology was an AI-based solution for 3D surgical...
On display at Smart Surgery Technology was an AI-based solution for 3D surgical visualization

Photo: HiE/Behrends 

The company's surgical 3D imaging system helps healthcare institutions record higher-quality minimally invasive surgical footage, including endoscopic, laparoscopic and da Vinci procedures, laying the groundwork for more accurate downstream image annotation and recognition. Building on this, an intelligent image annotation and recognition system labels organs and tissue areas within surgical footage, documenting procedures for use in imaging management, simulation training and surgical education. Hsueh pointed out that the company's long-term vision is a surgical navigation system that assists surgeons in identifying vital organs and tissue throughout an operation, shortening surgical duration as the system accumulates more imaging data and clinical experience. 

Rounding out the portfolio, a VR surgical simulation training system uses 3D animations and interactive, game-like scenarios to let healthcare professionals practise organ and tissue identification, robotic arm operation and full procedure rehearsals. A complementary surgical video learning platform offers instructional videos based on real clinical footage, featuring organ and tissue labelling and multilingual voice-over guidance to support surgical education and help reduce medical errors. (WB) 

20.07.2026

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