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Piesia Medical Imaging Solutions: Hardware empowers precise diagnosis, building the core foundation

2026-01-16
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Piesia Medical Imaging Solutions: Hardware empowers precise diagnosis, building the core foundation

I. Core Positioning of the Solution

Piesia focuses on the core demands of medical imaging: "precise imaging, AI-assisted diagnosis, safety and compliance, and stable long-term operation."  Based on the product philosophy of "medical-grade embedded hardware matrix + full-process AI computing power support + multi-modal data collaboration," we have created a dedicated solution for medical imaging. The solution uses medical imaging-specific motherboards, AI inference industrial computers, and image acquisition and control modules as core components, covering both Intel x86 and domestic Phytium dual-architecture platforms. It deeply integrates key technologies such as ultra-high-precision image processing, low-latency data transmission, medical environment adaptation, and data security encryption. It is widely used in CT, MRI, ultrasound, endoscopy, telemedicine, and other fields, providing hospitals and medical equipment manufacturers with an integrated intelligent medical imaging solution from hardware support to system adaptation.

II. Core Products and Technological Advantages

1. High-Computing Power AI Platform, Empowering the Entire Process of Precise Diagnosis

• Flagship Computing Power Support:

◦ Intel High-End Platform: Equipped with 13th generation Core i9 and Xeon series processors, supporting dual GPU expansion (single card FP16 computing power ≥ 313 TFLOPS, video memory ≥ 64GB), integrated NPU with a peak computing power of 120 TOPS, capable of efficiently running AI algorithms such as low-dose image reconstruction, intelligent lesion recognition, and multi-modal image fusion. The lesion detection accuracy is improved to over 99%, with a response delay of<30ms;

◦ Domestic Platform: Based on the Phytium Tenglong E2000Q industrial-grade processor, adapted to domestic Kylin and Tongxin operating systems, compatible with domestic PACS systems and AI diagnostic software, achieving independent control of core hardware and systems, meeting the safety and compliance requirements of top-tier hospitals and government medical institutions;

• Small Sample Learning Adaptation: Hardware-level optimization of model training efficiency, supporting the "general model + small sample fine-tuning" technology path. High-precision model training can be completed with only 1/10 of the traditional data volume, significantly reducing the pain points of medical imaging data dependence.

2. Medical-Grade Image Processing for Ultra-High Precision Imaging

• Ultra-High-Definition Image Acquisition and Transmission: Integrated with an HDMI 2.2 medical-grade interface (96Gbps bandwidth), supporting real-time 4K@60fps ultra-high-definition image acquisition, compatible with Sony IMX series medical sensors.  Combined with 3D digital noise reduction technology, it can still output clean, noise-free images in low-light environments (0.02 Lux for color, 0.002 Lux for black and white), accurately capturing micron-level lesion details;

• Multi-Modal Image Collaboration: Supports the DICOM 3.0 standard protocol, with built-in 4-6 Gigabit Ethernet ports (supporting IEEE 1588 PTP synchronization), allowing seamless connection to CT, MRI, ultrasound, and other multi-modal imaging equipment, enabling real-time image data aggregation and cross-analysis to assist doctors in comprehensive diagnosis;

• Low-Dose Imaging Optimization: Hardware-level support for image compression and reconstruction algorithm acceleration. While reducing radiation dose by 30%-50%, AI reconstruction technology compensates for image quality loss, balancing diagnostic accuracy and patient safety.

3. Exclusive Design for Medical Environments, Ensuring Stable and Long-Term Operation

• Adaptation to Harsh Environments: Operating temperature range of -20℃~70℃, using a fully sealed protective structure (IP65 dustproof and waterproof) and anti-vibration design (impact resistance level up to 8G), and certified with medical electromagnetic compatibility (EMC) Class B, resistant to interference from high-frequency equipment in operating rooms, suitable for complex medical scenarios such as CT rooms, operating rooms, and intensive care units;

• Long-Term Stable Operation: Supports dual-channel DDR5 memory (up to 256GB) and multiple hard drive arrays (SATA3.0 + NVMe), allowing for massive storage of medical image data and diagnostic reports. The mean time between failures (MTBF) is over 80,000 hours, ensuring 7x24 uninterrupted diagnostic and treatment needs;

• Silent Cooling Design: Adopts a fanless + heat pipe cooling solution, with operating noise ≤30dB. Combined with noise reduction and vibration damping technology migrated from the home appliance field, it significantly improves the patient examination experience and is suitable for scenarios with strict noise requirements such as MRI. 4. End-to-End Data Security, Compliant with Medical Regulatory Standards

• Hardware-level security protection: Built-in TrustZone security mechanism and TPM2.0 encryption module, supporting national cryptographic algorithms (SM2/SM3/SM4), providing full encryption for storage and transmission of image data and diagnostic reports to prevent data leakage and tampering, complying with the requirements of the "Medical Data Security Guidelines";

• Hierarchical access control: Supports medical personnel identity authentication and hierarchical access control, allowing traceability of access and modification records for each image data, ensuring compliant use of medical data;

• Data archiving guarantee: Supports off-site backup and long-term archiving of image data, compatible with Blu-ray storage expansion, meeting the archiving and preservation needs of medical images for more than 15 years.

5. Flexible Expansion and Customization, Matching Diverse Medical Scenarios

• Hardware customization: Interface layout can be customized according to equipment type (such as adding RS485/RS232 medical control interfaces), dimensions (to fit the limited installation space of endoscopes and ultrasound equipment), and protection level, supporting exclusive adaptation for medical equipment during mass production;

• Software adaptation: Provides services such as operating system customization, DICOM protocol stack integration, and AI algorithm optimization, compatible with mainstream PACS/RIS systems and medical imaging equipment (such as GE, United Imaging, Mindray, etc.), ensuring seamless collaboration between hardware and software.

III. Typical Application Scenarios

1. AI-assisted Diagnosis in Radiology

• Application Requirements: Requires low-dose image reconstruction, intelligent lesion identification, and multi-modal image fusion, demanding accurate diagnosis, fast processing, and data security;

• Core Hardware: Piesia medical-grade AI inference industrial computer (Intel Xeon platform) + dual GPU expansion module;

• Application Highlights: Supports low-dose reconstruction of CT/MRI images within 3 seconds, AI algorithms automatically mark suspected lesions and provide quantitative analysis. After deployment in a top-tier hospital, diagnostic efficiency increased by 60%, and the misdiagnosis rate decreased by 45%;

• Core Value: Reduces doctors' workload, improves diagnostic accuracy and efficiency, and shortens patient waiting times.

2. Image Navigation for Minimally Invasive Surgery

• Application Requirements: Requires real-time intraoperative image transmission, instrument positioning and navigation, and high-definition surgical field display, demanding low latency, anti-interference, and clear image quality;

• Core Hardware: Piesia endoscope-specific control motherboard (Intel Tiger Lake U platform) + image acquisition module;

• Application Highlights: Supports 4K ultra-high-definition real-time transmission of the surgical field, with latency<20ms.  Combined with 40x optical zoom and precise color reproduction technology, it clearly captures micron-level tissue details. After deployment in a hospital's minimally invasive surgery department, the incidence of surgical complications decreased by 30%;

• Core Value: Improves surgical accuracy and safety, and facilitates the standardization of minimally invasive surgery.

3. Remote Consultation Scenario

• Application Requirements: Real-time cross-regional image sharing, multi-expert collaborative diagnosis, and high-definition video interaction are required, demanding stable transmission, lossless image quality, and data security;

• Core Hardware: Piesia dedicated industrial control computer for remote consultation (domestic Phytium platform) + 5G expansion module;

• Application Highlights: Supports 4K HDR image low-bandwidth transmission (bandwidth usage reduced by 50%), compatible with distributed technologies such as HarmonyOS soft bus, enabling real-time multi-terminal linkage. After deployment in a regional medical center, high-quality medical resources have been extended to more than 10 primary hospitals, and consultation efficiency has increased by 70%;

• Core Value: Breaking down geographical barriers to medical resources, allowing grassroots patients to enjoy high-quality diagnostic services.

4. Ultrasound/Imaging Equipment Integration Scenario

• Application Requirements: Real-time ultrasound image acquisition, parameter adjustment, and data archiving are required, demanding a compact size, low power consumption, and stable reliability;

• Core Hardware: Piesia miniature embedded motherboard (Phytium Tenglong E2000Q platform) + sensor interface module;

• Application Highlights: Dimensions of only 120x80mm, power consumption<10W, integrated MIPI-CSI interface supporting dual ultrasound probe access, and support for remote adjustment of parameters such as focal length and exposure. After deployment by a medical equipment manufacturer, the product development cycle was shortened by 40%;

• Core Value: Providing core hardware support for the miniaturization and intelligence of medical equipment, enhancing the market competitiveness of the equipment.

IV. Core Value of the Solution

1. Empowering Precise Diagnosis: High-performance AI support and ultra-high-definition image processing assist in accurate lesion detection and low-dose imaging, improving the quality of medical diagnosis;

2. Medical-Grade Reliable Operation: Adaptation to demanding environments, silent design, and long-term supply ensure stable 7x24 operation of medical equipment;

3. Security and Compliance Guarantee: Full-link data encryption and access control comply with medical data security standards, mitigating compliance risks;

4. Flexible Dual-Platform Adaptation: The x86 platform meets high-performance requirements, while the domestically produced platform ensures independent control, covering diverse medical scenarios;

5. Rapid Deployment Support: Integrated hardware customization and software adaptation services, coupled with comprehensive technical support, shorten the development and deployment cycle of medical equipment in hospitals.

V. Service Guarantee

As an Intel Titanium Partner and a national high-tech enterprise, Piesia possesses 20 years of experience in industrial embedded hardware R&D, providing full-process services from hardware customization, driver development, and system debugging to long-term supply. Our professional technical team provides 7x24 support, combined with a nationwide service network, offering customers a dual guarantee of "local rapid support + remote technical guidance." Simultaneously, we collaborate deeply with mainstream medical software vendors and equipment manufacturers to provide an integrated "hardware + software + peripherals" package service, helping customers quickly achieve intelligent upgrades of medical imaging equipment and build smart hospitals.


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