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Kraken Robotics’ subsea LiDAR provides operators with an accurate and repeatable way to monitor the long-term movement of critical subsea infrastructure. Flowlines and jumpers can gradually move over time due to thermal expansion, seabed interaction, and operational loading. Monitoring that movement helps engineers understand asset behaviour, assess long-term trends,...

14,938 просмотров • 1 месяц назад •via X (Twitter)

Комментарии: 6

Фото профиля Jakie PLA
Jakie PLA1 месяц назад

I want to 3D print one of these so badly.

Фото профиля NeoBull7📐
NeoBull7📐1 месяц назад

💯

Фото профиля sean
sean1 месяц назад

Very cool technology 🫡.

Фото профиля Serguei Fenko
Serguei Fenko1 месяц назад

Subsea LiDAR demands massive power. At 1,500m depth, storing that power in legacy batteries means scaling up the pressure hull, adding parasitic mass. If the titanium hull itself BECOMES the energy matrix (Ti-SSB), underwater endurance scales exponentially. @KrakenRobotics

Фото профиля Oleg Shulga
Oleg Shulga1 месяц назад

This is robotics I like: specific, dirty and measurable. Find millimetres of movement under the sea before a flowline fails. No humanoid dancing, no prophecy. Just hardware preventing an expensive disaster.

Фото профиля Jeff
Jeff1 месяц назад

Finally heating up again with naval contracts - let’s go exploring the ocean!

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John Gedmark

14,118 просмотров • 1 месяц назад

The Kasheli Depot, the operational backbone of Mumbai Metro Line 5, is steadily taking shape with 23% overall physical progress achieved as of June 2026. Spread across approximately 27 hectares near Kasheli Toll Plaza, the depot is being developed to support the long-term operations, maintenance and stabling requirements of the 32 km Thane–Bhiwandi–Kalyan–Ulhasnagar Metro corridor. Designed to accommodate around 30 trainsets, the facility will include inspection bays, workshop lines, a test track, a Depot Control Centre, administrative facilities, staff quarters, utility infrastructure and advanced maintenance systems. Given the site's challenging marine clay conditions, #MMRDA has adopted advanced ground improvement techniques in consultation with #IITBombay to ensure long-term structural stability. At the same time, temporary inspection, testing and commissioning facilities are being developed to support the phased rollout and early operational readiness of #MumbaiMetro Line 5. As construction progresses, the Kasheli Depot is set to become the technical and operational hub that will power safe, reliable and efficient metro services across Thane, Bhiwandi, Kalyan and Ulhasnagar. Hon'ble Chief Minister Shri Devendra Fadnavis said, "The Kasheli Depot reflects Maharashtra's commitment to building modern and reliable public transport infrastructure. Metro Line 5 will strengthen connectivity across Thane, Bhiwandi, Kalyan and Ulhasnagar while advancing our vision of a developed, well-connected Maharashtra." Hon'ble Deputy Chief Minister and Chairman, MMRDA, Shri Eknath Shinde - एकनाथ शिंदे said, "The Kasheli Depot will be central to the safe and efficient operation of Metro Line 5. Its steady progress brings the Mumbai Metropolitan Region closer to faster, reliable, and high-capacity public transport connectivity." #ReimaginingMMR #MMRDA #KasheliDepot #MetroLine5 #UrbanMobility #MahaMumbaiMetro #Infrastructure #MumbaiMetro #TransformingMMR #Infrastructure #MumbaiMetro CMO Maharashtra Dr. Sanjay Mukherjee MAHARASHTRA DGIPR PIB India PIB in Maharashtra 🇮🇳

MMRDA

14,554 просмотров • 2 месяцев назад

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This means clinicians can visualize fine structures such as microcalcifications in arteries, small lesions in soft tissues, or the intricate architecture of bones. This level of detail was previously unattainable with traditional CT. When combined with molecular imaging, this ultra-high resolution allows for the precise localization and characterization of disease at very early stages, which is essential for early diagnosis and intervention. • Functional Imaging Capabilities: PCCT also excels as a functional imaging modality. By capturing energy-resolved information, PCCT can provide insights into tissue functionality and dynamic physiological processes. For instance, it can detect changes in blood flow, tissue perfusion, and oxygenation without the need for additional contrast agents or scans. This functionality allows for real-time assessment of physiological processes, making it particularly valuable in cardiology, oncology, and neurology for evaluating organ function and monitoring disease progression. • Reduced Noise and Artifact Reduction: Photon-counting technology dramatically reduces electronic noise and imaging artifacts, such as beam hardening, resulting in clearer and more accurate images. The ability to deliver ultra-high resolution images with minimal artifacts improves diagnostic accuracy, reducing the need for repeat scans and ensuring that even subtle abnormalities are detected. 2. Operational Considerations • New Workflow for Molecular, High-Resolution, and Functional Imaging: The integration of molecular, ultra-high resolution, and functional imaging into routine clinical workflows introduces complexity that requires adaptation. Radiologists and technicians need specialized training to interpret and analyze multi-energy datasets that include molecular and functional information. PCCT produces a vast amount of detailed data, requiring clinicians to adopt new imaging protocols and refine their diagnostic approaches to fully leverage its capabilities. • Post-Processing and Data Management: PCCT generates richer, more complex datasets, which necessitates advanced post-processing tools and data management systems. Existing PACS and imaging software may not be equipped to handle such large volumes of data or to process functional and molecular information effectively. 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Financial Impact • Higher Initial Investment: PCCT systems are more expensive than traditional CT scanners due to their advanced technology, which includes photon-counting detectors and the computational power required for high-resolution, molecular, and functional imaging. While this upfront cost is significant, it is crucial to view it in the broader context of the downstream benefits and cost reductions that PCCT offers. • Downstream Cost Reductions: Although the initial capital investment is higher, PCCT’s ability to combine molecular, functional, and ultra-high resolution imaging leads to substantial reductions in downstream healthcare costs. Its superior diagnostic accuracy minimizes the need for follow-up tests, repeat scans, or invasive diagnostic procedures, such as diagnostic coronary angiographies. 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