{"@context":"https://schema.org","@type":"NewsArticle","generatedAt":"2026-07-28T06:20:51.496Z","headline":"Reimagining Independence： How Meta's AI Models Are Helping the University of Pittsburgh Transform Assistive Robotics","description":"In the heart of Pittsburgh, a quiet revolution is underway — one that promises to redefine what independence means for people with disabilities. At the center of this movement is the Human Engineering Research Laboratories (HERL) ：https://www.herl.pitt.edu/, a pioneering institute at the University of Pittsburgh, now leading an initiative with up to $41.5 million in funding from the Advanced Research Projects Agency for Health (ARPA-H) ：https://arpa-h.gov/, a US research funding agency established to support transformative biomedical and health breakthroughs. With support from ARPA-H, the HERL team and ATDev ：https://assistivetech.dev/, a pioneer in innovative assistive technology, are building the Robotic Assistive Mobility and Manipulation Platform Providing Independence for People with Disabilities (RAMMP), blending cutting-edge robotics, artificial intelligence, and user-centered des","url":"https://www.aioga.com/news/cms3dp55g0ak0ro3fedt6xrgp/","mainEntityOfPage":"https://www.aioga.com/news/cms3dp55g0ak0ro3fedt6xrgp/","datePublished":"2026-07-26T16:00:00.000Z","dateModified":"2026-07-26T16:00:00.000Z","inLanguage":"zh-CN","publisher":{"@type":"NewsMediaOrganization","name":"Aioga","url":"https://www.aioga.com"},"citation":["https://ai.meta.com/blog/assistive-robotics-university-of-pittsburgh-sam-dino","https://aihot.virxact.com/items/cms3dp55g0ak0ro3fedt6xrgp"],"canonicalUrl":"https://www.aioga.com/news/cms3dp55g0ak0ro3fedt6xrgp/","directAnswer":{"@type":"Answer","text":"Aioga 编辑摘要：In the heart of Pittsburgh, a quiet revolution is underway — one that promises to redefine what Aioga 将其归入「行业动态」方向，重点关注它对真实使用和行业竞争的影响。","url":"https://www.aioga.com/news/cms3dp55g0ak0ro3fedt6xrgp/","dateCreated":"2026-07-26T16:00:00.000Z","author":{"@type":"Organization","@id":"https://www.aioga.com/authors/aioga-editorial/#editorial-team","name":"Aioga Editorial Team","url":"https://www.aioga.com/authors/aioga-editorial/"}},"evidence":[{"@type":"CreativeWork","name":"Meta AI：Blog（网页） source article","url":"https://ai.meta.com/blog/assistive-robotics-university-of-pittsburgh-sam-dino","datePublished":"2026-07-26T16:00:00.000Z","provider":{"@type":"Organization","name":"Meta AI：Blog（网页）","url":"https://ai.meta.com/blog/assistive-robotics-university-of-pittsburgh-sam-dino"}},{"@type":"CreativeWork","name":"AIHot archive record","url":"https://aihot.virxact.com/items/cms3dp55g0ak0ro3fedt6xrgp","datePublished":"2026-07-26T16:00:00.000Z","provider":{"@type":"Organization","name":"AIHot","url":"https://aihot.virxact.com/items/cms3dp55g0ak0ro3fedt6xrgp"}}],"aggregationSource":"Meta AI：Blog（网页）","originalPublisher":{"name":"Meta AI：Blog（网页）","url":"https://ai.meta.com/blog/assistive-robotics-university-of-pittsburgh-sam-dino"},"article":{"id":"cms3dp55g0ak0ro3fedt6xrgp","slug":"cms3dp55g0ak0ro3fedt6xrgp","url":"https://www.aioga.com/news/cms3dp55g0ak0ro3fedt6xrgp/","title":"Reimagining Independence： How Meta's AI Models Are Helping the University of Pittsburgh Transform Assistive Robotics","title_en":"","summary":"In the heart of Pittsburgh, a quiet revolution is underway — one that promises to redefine what independence means for people with disabilities. At the center of this movement is the Human Engineering Research Laboratories (HERL) ：https://www.herl.pitt.edu/, a pioneering institute at the University of Pittsburgh, now leading an initiative with up to $41.5 million in funding from the Advanced Research Projects Agency for Health (ARPA-H) ：https://arpa-h.gov/, a US research funding agency established to support transformative biomedical and health breakthroughs. With support from ARPA-H, the HERL team and ATDev ：https://assistivetech.dev/, a pioneer in innovative assistive technology, are building the Robotic Assistive Mobility and Manipulation Platform Providing Independence for People with Disabilities (RAMMP), blending cutting-edge robotics, artificial intelligence, and user-centered des","source":"Meta AI：Blog（网页）","sourceUrl":"https://ai.meta.com/blog/assistive-robotics-university-of-pittsburgh-sam-dino","aiHotUrl":"https://aihot.virxact.com/items/cms3dp55g0ak0ro3fedt6xrgp","publishedAt":"2026-07-26T16:00:00.000Z","category":"行业动态","score":37,"selected":false,"articleBody":["In the heart of Pittsburgh, a quiet revolution is underway — one that promises to redefine what independence means for people with disabilities. At the center of this movement is the Human Engineering Research Laboratories (HERL) ：https://www.herl.pitt.edu/, a pioneering institute at the University of Pittsburgh, now leading an initiative with up to $41.5 million in funding from the Advanced Research Projects Agency for Health (ARPA-H) ：https://arpa-h.gov/, a US research funding agency established to support transformative biomedical and health breakthroughs. With support from ARPA-H, the HERL team and ATDev ：https://assistivetech.dev/, a pioneer in innovative assistive technology, are building the Robotic Assistive Mobility and Manipulation Platform Providing Independence for People with Disabilities (RAMMP), blending cutting-edge robotics, artificial intelligence, and user-centered design.","For the estimated 5.5 million wheelchair users in the United States ：https://www.volpe.dot.gov/news/us-dot-volpe-center-human-factors-study-informs-rule-air-travelers-disabilities, preservation of mobility ensures individual opportunity and participation in everyday life. When assistive technology does not reflect the complexity of the real world, it can undermine confidence, independence, and physical safety. The statistics are sobering: over 100,000 wheelchair-related injuries are treated in US emergency departments each year ：https://www.pittwire.pitt.edu/features-articles/2025/11/04/advanced-research-projects-agency-health-rammp-herl, often due to trips and falls. As a result, the need for smarter, safer, and more adaptable technology is urgent.","RAMMP: A New Era for Assistive Mobility","The ARPA-H-supported Robotic Assistive Mobility and Manipulation Platform ( RAMMP ：https://arpa-h.gov/explore-funding/awards/2771) project aims to address the shortcomings in current robotic mobility platform design through integration of advanced robotics, novel operating systems, and digital twin technology — creating a virtual simulation environment for safe, scalable testing and development. RAMMP’s approach also integrates artificial intelligence, including the use of several of Meta’s open source AI vision models, including DINO ：https://ai.meta.com/research/dinov3/ and Segment Anything Model (SAM) ：https://ai.meta.com/research/sam3/.","DINO and SAM have already assisted in a variety of projects ranging from those focused on medical imaging to wildlife conservation. DINO, a self-supervised vision transformer, excels at learning visual representations from unlabeled data, making it ideal for environments where annotated datasets are scarce. SAM, on the other hand, is designed to “segment anything” and has the ability to identify and outline any object in an image or video with minimal prompting. Segment Anything’s versatility and accuracy have made it a foundational tool in domains where precise object recognition is paramount.","Engineering for the Real World: Running DINOv3 and SAM on Edge Devices","For people relying on assistive devices, every second counts. The unpredictable nature of everyday environments, such as a child darting across a sidewalk, the sudden appearance of a curb, or a dropped set of keys, requires an immediate reaction. Processing camera images and sensor data directly on the device, known as edge computing, empowers robotic mobility platforms to function as responsive tools. These tools must be robust and consistent across the wide range of dynamic environments in which people live.","At the same time, deploying powerful AI models like DINOv3 and SAM on limited, battery-powered hardware presents significant engineering challenges. Real-world deployments must consider practical factors, including battery life, heat dissipation, unreliable network connectivity, and strict size and weight requirements.","However, overcoming these constraints mean nothing to the end user if they can't perform their activities of daily living using these new robotic systems. These newer methods allow users to interact with the robot more naturally, using their immediate surroundings as context, freeing both engineers and users from having to design and navigate complex, time-consuming interfaces. The ability to use natural language combined with image data to query the user’s and robot’s environment and provide more direct commands directly reduces the cognitive load and amount of context switching required for a user to do something as simple as picking up a cup off a table.","This functionality is already being integrated by the RAMMP team into their first prototype. Leveraging tools built off of DINO to enable querying the robot’s image sensors to detect automatic door buttons, cups, and curbs/ground for navigation assistance. With this functionality now ready for real-world testing, engineers are focusing on voice and touch input, letting users select and interact with specific objects in their surroundings. In addition to the existing challenges of ensuring accuracy and temporal coherence of the model outputs, this provides the additional challenge of ensuring robustness and predictability across user prompts and inputs.","DINOv3 serves as a compact, efficient 'visual brain' for devices — a general-purpose foundation on which task-specific, lightweight modules can be layered for actions such as object detection or movement tracking, enabling reuse of visual data and conserving power.","Applying both models as part of the development of robotics systems, engineers optimize models for edge devices, reducing memory footprint, using lower precision when appropriate, and deploying in formats tailored for real-world conditions. This ensures reliable, real-time operation for users. By running at practical resolutions and with efficient batching, both models stay fast and dependable, even on the compact, battery-powered hardware used in robotic mobility platforms and robotic arms, — sometimes trading a little bit of boundary precision and/or feature detail for the speed and stability needed by users on the go. This balance between precision and practicality is central to the project's philosophy.","“For assistive robotics, performance is not measured by benchmark accuracy alone, but by whether a system can operate reliably in the unpredictability of everyday life,\" said Sivashankar Sivakanthan, Chief of Staff to the RAMMP project. “Running models like DINOv3 and SAM on-device is what enables real-time perception that users can trust - without relying on connectivity or compromising safety.”","RAMMP's perception system is built on RF-DETR, a lightweight detection model fine-tuned with DINOv2 embeddings. Training data is auto-labeled using SAM, enabling the team to rapidly generate high-quality annotations across the full range of angles, heights, backgrounds, and lighting situations that assistive devices encounter in the real world. Data augmentations and multi-view strategies further enforce consistency across perspectives. The result is a system that is smart, adaptive, and offers safer and more confident mobility.","By combining SAM's labeling power with DINOv2's rich visual representations in a fine-tuned RF-DETR model, RAMMP achieves real-time 360-degree environmental awareness and adaptive object detection.","A Collaborative Vision for the Future","HERL and ATDev are working together as key partners within the RAMMP consortium, each bringing distinct strengths to the project. HERL leads the initiative with its deep expertise in biomedical engineering and user-centered research, setting the vision for next-generation assistive mobility. ATDev brings a robust engineering perspective, taking HERL's translational research and making it function in real-world devices. Together, HERL and ATDev exemplify how academic leadership and technical innovation can combine to create mobility solutions that are both groundbreaking and deeply attuned to the lived experience of users.","In addition to integration of cutting-edge artificial intelligence, HERL’s approach is deeply collaborative, engaging wheelchair users, clinicians, and advocacy groups throughout the design process. This participatory action methodology ensures that technology addresses real-world needs, not just hypothetical ones. The national consortium behind RAMMP includes partners like Kinova Robotics, LUCI Mobility, ATDev, and academic leaders at Carnegie Mellon, Cornell, Northeastern, and Purdue.","“Through RAMMP, ARPA-H aims to create a future where Americans with limited mobility can more easily live independently, pursue work, and enjoy leisure activities by leveraging advanced robotics,” said Mansoor Khan ：https://arpa-h.gov/about/people/mansoor-khan , ARPA-H Program Manager. “Meta’s vision models are a critical technology that allows the robotics platform to ‘see.’ These models help the robot understand the scene, navigate the world, and pick up the right objects — significantly reducing user cognitive burden and increasing independence.”","Beyond enhancing individual mobility, RAMMP aims to catalyze new workforce and manufacturing opportunities in Pittsburgh and across Pennsylvania, fostering advanced mobility solutions and domestic production. This vision weaves technological progress with economic and social advancement.","“What the RAMMP team is building through ARPA-H is a glimpse of what American health innovation looks like when we stop accepting the status quo,” said Alicia Jackson, Ph.D. ：https://arpa-h.gov/about/people/alicia-jackson, ARPA-H Director. “Millions of Americans with limited mobility deserve technology that meets them where they are, not technology that asks them to adapt. Partnering with world-class innovators like Meta to bring frontier AI into assistive robotics is how we make that happen faster than anyone thought possible.\"","Looking ahead, the RAMMP team will continue to advance the integration of next-generation perception models, including SAM 3.1 and DINOv3, to further improve real-time environmental understanding and interaction. Future work will focus on strengthening temporal consistency, robustness across diverse real-world conditions, and tighter integration with decision-making and control systems. By combining these advances, RAMMP aims to move toward assistive systems that not only perceive their environment accurately, but also adapt over time to the unique needs, behaviors, and contexts of each user. The next generation of assistive robotics will not just move people — it will move society closer to a world where everyone, regardless of ability, can participate fully and independently.","Our latest updates delivered to your inbox"],"articleImages":[{"sourceUrl":"https://scontent-hkg1-2.xx.fbcdn.net/v/t39.2365-6/755228193_1688434829522432_4568146935489643493_n.png?_nc_cat=107&ccb=1-7&_nc_sid=e280be&_nc_ohc=7dXb43gi4U8Q7kNvwEMFwa1&_nc_oc=AdpWydYEIvfHC-mu39Koobh0RzxsDLM-ewaTghWugd2j1ffnoY77TIMwAmdbgfDdPNA&_nc_zt=14&_nc_ht=scontent-hkg1-2.xx&_nc_gid=1iHJuz8Sjm48KH7TWNvvDQ&_nc_ss=7f289&oh=00_AQDy_3kpsQ1XA3PD4O_Q7eV_E_pWL7n2zfmKq28EKruKfQ&oe=6A81D8FC","alt":"","afterParagraph":0,"url":"/media/articles/cms3dp55g0ak0ro3fedt6xrgp/7573c8dd13635e27.png"}],"mediaStatus":"ok","articleBodyZh":["在匹兹堡的中心，一场静悄悄的革命正在进行——它有望重新定义残障人士的独立意义。这场运动的核心是人类工程研究实验室（HERL）：https://www.herl.pitt.edu/，这是匹兹堡大学的一个先锋研究机构，目前正在领导一项获得美国健康先进研究项目署（ARPA-H）资助高达4150万美元的项目：https://arpa-h.gov/。ARPA-H是美国设立的研究资助机构，旨在支持变革性的生物医学和健康突破。在ARPA-H的支持下，HERL团队与创新辅助技术的先驱ATDev：https://assistivetech.dev/，正在建设“为残障人士提供独立性的机器人辅助移动与操作平台（RAMMP）”，融合尖端机器人技术、人工智能和以用户为中心的设计。","对于美国估计约有550万轮椅使用者：https://www.volpe.dot.gov/news/us-dot-volpe-center-human-factors-study-informs-rule-air-travelers-disabilities，保持行动能力意味着个体机会和日常生活参与。当辅助技术无法反映现实世界的复杂性时，它可能削弱自信、独立性和身体安全。统计数据令人深思：每年美国急诊科治疗超过10万起与轮椅相关的伤害：https://www.pittwire.pitt.edu/features-articles/2025/11/04/advanced-research-projects-agency-health-rammp-herl，这些伤害通常是由于绊倒和跌倒造成的。因此，对于更智能、更安全、更适应性强的技术的需求迫在眉睫。","RAMMP：辅助移动的新纪元","由ARPA-H支持的机器人辅助移动与操作平台（RAMMP：https://arpa-h.gov/explore-funding/awards/2771）项目旨在通过整合先进的机器人技术、新型操作系统和数字孪生技术来解决当前机器人移动平台设计中的不足——创建一个虚拟模拟环境，用于安全、可扩展的测试和开发。RAMMP的方法还整合了人工智能，包括使用Meta的几种开源AI视觉模型，如DINO：https://ai.meta.com/research/dinov3/ 和 Segment Anything Model (SAM)：https://ai.meta.com/research/sam3/。","DINO和SAM已经在从医疗成像到野生动物保护的各种项目中提供了帮助。DINO是一种自监督视觉Transformer，擅长从未标注的数据中学习视觉表示，非常适合标注数据稀缺的环境。另一方面，SAM被设计为“分割任何物体”，能够在图像或视频中以最少提示识别并勾画任何对象。Segment Anything的多功能性和准确性使其成为精确对象识别至关重要领域的基础工具。","为现实世界工程设计：在边缘设备上运行DINOv3和SAM","对于依赖辅助设备的人而言，每一秒都至关重要。日常环境的不可预测性，例如孩子冲向人行道、突然出现的路缘或掉落的一串钥匙，都需要立即反应。在设备上直接处理摄像头图像和传感器数据，这被称为边缘计算，使机器人移动平台能够作为响应性工具发挥作用。这些工具必须在用户生活的各种动态环境中保持稳健和一致。","同时，在有限的电池供电硬件上部署像DINOv3和SAM这样强大的AI模型也带来了重大工程挑战。现实世界的部署必须考虑实际因素，包括电池寿命、散热、不可靠的网络连接，以及严格的尺寸和重量要求。","然而，如果最终用户无法使用这些新的机器人系统完成日常生活活动，那么克服这些限制对他们来说毫无意义。这些新方法允许用户以更自然的方式与机器人互动，利用其即时环境作为上下文，从而使工程师和用户都无需设计和操作复杂、耗时的界面。结合图像数据使用自然语言查询用户和机器人环境并提供更直接的指令的能力，直接降低了认知负荷，并减少了用户在执行诸如从桌子上拿起杯子这样简单操作时所需的上下文切换次数。","RAMMP 团队已经将此功能集成到他们的首个原型中。利用基于 DINO 构建的工具来查询机器人的图像传感器，以检测自动门按钮、杯子以及导航辅助用的路缘/地面。随着此功能现在可以进行实际环境测试，工程师正专注于语音和触控输入，使用户能够选择并与其周围的特定物体进行交互。除了确保模型输出的准确性和时间一致性的现有挑战之外，这还带来了确保在用户提示和输入中保持稳健性和可预测性的额外挑战。","DINOv3 作为设备的紧凑高效的“视觉大脑”——一个通用基础，可在其上叠加针对特定任务的轻量级模块以执行诸如物体检测或动作跟踪等操作，从而实现视觉数据的重用并节约能耗。","在机器人系统开发中应用这两种模型时，工程师会对模型进行边缘设备优化，减少内存占用，在适当情况下使用较低精度，并以适合实际环境的格式进行部署。这确保了用户可以获得可靠的实时操作体验。通过在实际分辨率下运行并采用高效批处理，两个模型即使在紧凑的电池供电机器人移动平台和机械臂硬件上，也能保持快速和可靠——有时会为用户所需的速度和稳定性而略微牺牲边界精度和/或特征细节。这种精度与实用性之间的平衡是该项目理念的核心。","“对于辅助机器人来说，性能不仅仅通过基准精度来衡量，而是看系统能否在日常生活的不确定性中可靠运行，”RAMMP项目参谋长Sivashankar Sivakanthan表示。“在设备上运行像DINOv3和SAM这样的模型，使得用户能够信任的实时感知成为可能——无需依赖网络连接，也不影响安全性。”","RAMMP的感知系统建立在RF-DETR之上，这是一个经过DINOv2嵌入微调的轻量级检测模型。训练数据使用SAM进行自动标注，使团队能够快速生成覆盖辅助设备在实际使用中遇到的各种角度、高度、背景和光照条件的高质量标注。数据增强和多视角策略进一步确保了不同视角下的一致性。最终形成的系统智能、具有适应性，并提供更安全、更自信的移动能力。","通过在微调的RF-DETR模型中结合SAM的标注能力和DINOv2的丰富视觉表示，RAMMP实现了实时360度环境感知和自适应物体检测。","面向未来的协作愿景","HERL和ATDev作为RAMMP联盟中的关键合作伙伴共同工作，各自在项目中发挥独特优势。HERL凭借其在生物医学工程和以用户为中心的研究方面的深厚专业知识领导该项目，为下一代辅助移动设备设定了愿景。ATDev则提供坚实的工程视角，将HERL的转化研究应用于现实设备。HERL和ATDev共同展示了学术领导力与技术创新如何融合，创造出既具有开创性又深度贴合用户实际体验的移动解决方案。","除了整合最先进的人工智能技术外，HERL的方法高度协作，设计过程中充分参与轮椅使用者、临床医生和倡导组织。这样的参与式行动方法确保技术解决方案能满足现实需求，而不仅仅是理论需求。RAMMP背后的全国性联盟包括Kinova Robotics、LUCI Mobility、ATDev，以及卡内基梅隆大学、康奈尔大学、东北大学和普渡大学等学术领导者的合作伙伴。","“通过RAMMP，ARPA-H旨在创造一个未来，使行动不便的美国人能够更轻松地独立生活、从事工作并享受休闲活动，同时利用先进的机器人技术，”ARPA-H项目经理Mansoor Khan说道：https://arpa-h.gov/about/people/mansoor-khan。“Meta的视觉模型是一项关键技术，使机器人平台能够‘看见’。这些模型帮助机器人理解场景、导航世界并拾取正确的物体——显著减轻用户的认知负担，提升独立能力。”","除了提升个人行动能力外，RAMMP还旨在在匹兹堡及整个宾夕法尼亚州催生新的劳动力和制造业机会，推动先进的行动解决方案和国内生产。这一愿景将技术进步与经济和社会发展交织在一起。","“RAMMP团队通过ARPA-H正在构建的，是当我们不再接受现状时，美国健康创新的一个缩影，”ARPA-H主任Alicia Jackson博士说道：https://arpa-h.gov/about/people/alicia-jackson。“数百万行动不便的美国人应得到能够满足其需求的技术，而不是需要他们去适应的技术。与像Meta这样的世界级创新者合作，将前沿AI引入辅助机器人，是我们比任何人想象的都更快实现这一目标的方式。”","展望未来，RAMMP团队将继续推进下一代感知模型的整合，包括SAM 3.1和DINOv3，以进一步提升实时环境理解和交互能力。未来的工作将侧重于增强时间一致性、在各种现实环境中提高稳健性，以及与决策和控制系统实现更紧密的整合。通过结合这些进展，RAMMP旨在迈向能够不仅准确感知环境，还能随时间适应不同用户的独特需求、行为和情境的辅助系统。下一代辅助机器人不仅会移动人们——它将推动社会走向一个每个人，无论能力如何，都能充分独立参与的世界。","我们最新的更新已发送至您的邮箱"],"translationStatus":"translated","bodyOrigin":"source-page","editorial":{"summary":"Aioga 编辑摘要：In the heart of Pittsburgh, a quiet revolution is underway — one that promises to redefine what Aioga 将其归入「行业动态」方向，重点关注它对真实使用和行业竞争的影响。","background":"背景分析：公司与行业类动态需要放在竞争格局、商业化路径、资本信号和监管环境中观察，单条公告不能代表最终结果。","viewpoint":"Aioga 判断：这条动态更适合作为行业观察信号，当前信息足以建立线索，但不足以推导长期结论。","implications":"影响分析：对相关团队而言，短期应先核对来源、可用范围和实际成本，再判断是否值得接入或跟进。","nextStep":"后续观察：继续观察官方文件、合作落地、收入或用户信号、竞品动作和监管后续。","evidenceRefs":["title","summary","articleBody"],"confidence":"medium","status":"published","aiGenerated":false,"autoApproved":true,"generatedBy":"rule-safe-fallback","generatedAt":"2026-07-28T06:29:10.486Z","sourceHash":"dcd6b79aff0b5002","validation":{"passed":true,"mode":"rule-safe-fallback","checks":["schema","length","source-attribution","no-html"]}},"tags":["行业动态","Meta AI：Blog（网页）"],"translations":{"zh-CN":{"title":"Reimagining Independence： How Meta's AI Models Are Helping the University of Pittsburgh Transform Assistive Robotics","summary":"In the heart of Pittsburgh, a quiet revolution is underway — one that promises to redefine what independence means for people with disabilities. 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With support from ARPA-H, the HERL team and ATDev ：https://assistivetech.dev/, a pioneer in innovative assistive technology, are building the Robotic Assistive Mobility and Manipulation Platform Providing Independence for People with Disabilities (RAMMP), blending cutting-edge robotics, artificial intelligence, and user-centered des","category":"行业动态","source":"Meta AI：Blog（网页）","aggregationSource":"Meta AI：Blog（网页）","pageTitle":"Reimagining Independence： How Meta's AI Models Are Helping the University of Pittsburgh Transform Assistive Robotics - Aioga AI资讯","description":"In the heart of Pittsburgh, a quiet revolution is underway — one that promises to redefine what independence means for people with disabilities. 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ARPA-H의 지원으로, HERL 팀과 혁신적인 보조 기술 분야의 선구자 ATDev ：https://assistivetech.dev/가 장애인의 독립을 제공하는 로봇 보조 이동 및 조작 플랫폼(Robotic Assistive Mobility and Manipulation Platform, RAMMP)을 구축하고 있으며, 첨단 로봇공학, 인공지능, 사용자 중심 설계를 결합하고 있습니다.","category":"업계 동향","source":"Meta AI：Blog（网页）","aggregationSource":"Meta AI：Blog（网页）","pageTitle":"독립성을 재구상하다: 메타의 AI 모델이 피츠버그 대학교의 보조 로봇 기술 혁신을 어떻게 돕고 있는가 - Aioga AI 뉴스","description":"피츠버그 중심부에서 조용한 혁명이 진행되고 있습니다 — 장애인에게 독립이 무엇을 의미하는지를 재정의할 것을 약속하는 혁명입니다. 이 운동의 중심에는 피츠버그 대학교의 선구적 연구소인 인간공학연구실(Human Engineering Research Laboratories, HERL) ：https://www.herl.pitt....","url":"https://www.aioga.com/ko/news/cms3dp55g0ak0ro3fedt6xrgp/","contentTranslated":true,"sourceHash":"00e487e8105fbaa7","translatedAt":"2026-07-28T01:43:16.114Z"},"es":{"title":"Reimaginando la independencia: Cómo los modelos de IA de Meta están ayudando a la Universidad de Pittsburgh a transformar la robótica asistencial","summary":"En el corazón de Pittsburgh, se está llevando a cabo una revolución silenciosa, una que promete redefinir lo que significa independencia para las personas con discapacidad. En el centro de este movimiento se encuentran los Laboratorios de Investigación en Ingeniería Humana (HERL) ：https://www.herl.pitt.edu/, un instituto pionero en la Universidad de Pittsburgh, que ahora lidera una iniciativa con hasta $41.5 millones en financiamiento de la Agencia de Proyectos de Investigación Avanzada para la Salud (ARPA-H) ：https://arpa-h.gov/, una agencia de financiamiento de investigación de EE. UU. establecida para apoyar avances transformadores en biomedicina y salud. Con el apoyo de ARPA-H, el equipo de HERL y ATDev ：https://assistivetech.dev/, un pionero en tecnología asistiva innovadora, están construyendo la Plataforma Robótica de Movilidad y Manipulación Asistiva que Brinda Independencia a las Personas con Discapacidad (RAMMP), combinando robótica de vanguardia, inteligencia artificial y diseño centrado en el usuario.","category":"Industria","source":"Meta AI：Blog（网页）","aggregationSource":"Meta AI：Blog（网页）","pageTitle":"Reimaginando la independencia: Cómo los modelos de IA de Meta están ayudando a la Universidad de Pittsburgh a transformar la robótica asistencial - Aioga Noticias de IA","description":"En el corazón de Pittsburgh, se está llevando a cabo una revolución silenciosa, una que promete redefinir lo que significa independencia para las personas con discapacidad. En el c...","url":"https://www.aioga.com/es/news/cms3dp55g0ak0ro3fedt6xrgp/","contentTranslated":true,"sourceHash":"00e487e8105fbaa7","translatedAt":"2026-07-28T01:43:14.852Z"},"fr":{"title":"Réinventer l'indépendance : comment les modèles d'IA de Meta aident l'Université de Pittsburgh à transformer la robotique d'assistance","summary":"Au cœur de Pittsburgh, une révolution silencieuse est en cours — une révolution qui promet de redéfinir ce que signifie l'indépendance pour les personnes en situation de handicap. Au centre de ce mouvement se trouvent les Human Engineering Research Laboratories (HERL) : https://www.herl.pitt.edu/, un institut pionnier de l'Université de Pittsburgh, qui dirige actuellement une initiative dotée d'un financement pouvant atteindre 41,5 millions de dollars de l'Advanced Research Projects Agency for Health (ARPA-H) : https://arpa-h.gov/, une agence de financement de la recherche américaine créée pour soutenir des percées biomédicales et sanitaires transformantes. Avec le soutien de l'ARPA-H, l'équipe de HERL et ATDev : https://assistivetech.dev/, un pionnier des technologies d'assistance innovantes, sont en train de construire la Plateforme Robotique d'Assistance à la Mobilité et à la Manipulation Fournissant l'Indépendance aux Personnes en Situation de Handicap (RAMMP), combinant robotique de pointe, intelligence artificielle et conception centrée sur l'utilisateur.","category":"Industrie","source":"Meta AI：Blog（网页）","aggregationSource":"Meta AI：Blog（网页）","pageTitle":"Réinventer l'indépendance : comment les modèles d'IA de Meta aident l'Université de Pittsburgh à transformer la robotique d'assistance - Aioga Actualités IA","description":"Au cœur de Pittsburgh, une révolution silencieuse est en cours — une révolution qui promet de redéfinir ce que signifie l'indépendance pour les personnes en situation de handicap....","url":"https://www.aioga.com/fr/news/cms3dp55g0ak0ro3fedt6xrgp/","contentTranslated":true,"sourceHash":"00e487e8105fbaa7","translatedAt":"2026-07-28T01:43:55.642Z"},"de":{"title":"Neugestaltung der Unabhängigkeit: Wie Metas KI-Modelle der Universität Pittsburgh helfen, assistive Robotik zu transformieren","summary":"Im Herzen von Pittsburgh findet eine stille Revolution statt – eine, die verspricht, die Bedeutung von Unabhängigkeit für Menschen mit Behinderungen neu zu definieren. Im Zentrum dieser Bewegung steht das Human Engineering Research Laboratories (HERL) ：https://www.herl.pitt.edu/, ein wegweisendes Institut der Universität Pittsburgh, das nun eine Initiative mit bis zu 41,5 Millionen US-Dollar Finanzierung von der Advanced Research Projects Agency for Health (ARPA-H) ：https://arpa-h.gov/, einer US-amerikanischen Forschungsförderungsagentur, die gegründet wurde, um transformierende biomedizinische und gesundheitliche Durchbrüche zu unterstützen, leitet. Mit Unterstützung von ARPA-H bauen das HERL-Team und ATDev ：https://assistivetech.dev/, ein Pionier für innovative Hilfstechnologien, die Robotic Assistive Mobility and Manipulation Platform Providing Independence for People with Disabilities (RAMMP), die modernste Robotik, künstliche Intelligenz und benutzerzentrierte Designansätze kombiniert.","category":"行业动态","source":"Meta AI：Blog（网页）","aggregationSource":"Meta AI：Blog（网页）","pageTitle":"Neugestaltung der Unabhängigkeit: Wie Metas KI-Modelle der Universität Pittsburgh helfen, assistive Robotik zu transformieren - Aioga KI-News","description":"Im Herzen von Pittsburgh findet eine stille Revolution statt – eine, die verspricht, die Bedeutung von Unabhängigkeit für Menschen mit Behinderungen neu zu definieren. Im Zentrum d...","url":"https://www.aioga.com/de/news/cms3dp55g0ak0ro3fedt6xrgp/","contentTranslated":true,"sourceHash":"00e487e8105fbaa7","translatedAt":"2026-07-28T01:44:04.631Z"},"pt-BR":{"title":"Reimaginando a Independência: Como os Modelos de IA da Meta Estão Ajudando a Universidade de Pittsburgh a Transformar a Robótica Assistiva","summary":"No coração de Pittsburgh, uma revolução silenciosa está em andamento — uma que promete redefinir o que significa independência para pessoas com deficiência. No centro desse movimento está o Human Engineering Research Laboratories (HERL) ：https://www.herl.pitt.edu/, um instituto pioneiro na Universidade de Pittsburgh, agora liderando uma iniciativa com até US$ 41,5 milhões em financiamento da Advanced Research Projects Agency for Health (ARPA-H) ：https://arpa-h.gov/, uma agência de financiamento de pesquisa dos EUA criada para apoiar avanços transformadores em biomedicina e saúde. Com o apoio da ARPA-H, a equipe do HERL e a ATDev ：https://assistivetech.dev/, uma pioneira em tecnologia assistiva inovadora, estão construindo a Robotic Assistive Mobility and Manipulation Platform Providing Independence for People with Disabilities (RAMMP), combinando robótica de ponta, inteligência artificial e design centrado no usuário","category":"行业动态","source":"Meta AI：Blog（网页）","aggregationSource":"Meta AI：Blog（网页）","pageTitle":"Reimaginando a Independência: Como os Modelos de IA da Meta Estão Ajudando a Universidade de Pittsburgh a Transformar a Robótica Assistiva - Aioga Notícias de IA","description":"No coração de Pittsburgh, uma revolução silenciosa está em andamento — uma que promete redefinir o que significa independência para pessoas com deficiência. No centro desse movimen...","url":"https://www.aioga.com/pt-BR/news/cms3dp55g0ak0ro3fedt6xrgp/","contentTranslated":true,"sourceHash":"00e487e8105fbaa7","translatedAt":"2026-07-28T01:44:45.649Z"},"ru":{"title":"Переосмысление независимости: как модели искусственного интеллекта Meta помогают Университету Питтсбурга преобразовать вспомогательную робототехнику","summary":"В самом сердце Питтсбурга происходит тихая революция — та, которая обещает переопределить, что значит независимость для людей с ограниченными возможностями. В центре этого движения находится Лаборатория исследований человеческой инженерии (HERL) ：https://www.herl.pitt.edu/, передовый институт при Университете Питтсбурга, который сейчас возглавляет инициативу с финансированием до 41,5 миллиона долларов от Агентства передовых исследований в области здравоохранения (ARPA-H) ：https://arpa-h.gov/, американского агентства по финансированию исследований, созданного для поддержки трансформационных биомедицинских и медицинских открытий. При поддержке ARPA-H команда HERL и ATDev ：https://assistivetech.dev/, пионер в области инновационных вспомогательных технологий, создают Роботизированную платформу ассистивного передвижения и манипуляции, обеспечивающую независимость для людей с ограниченными возможностями (RAMMP), сочетая передовые технологии робототехники, искусственного интеллекта и ориентированный на пользователя подход.","category":"行业动态","source":"Meta AI：Blog（网页）","aggregationSource":"Meta AI：Blog（网页）","pageTitle":"Переосмысление независимости: как модели искусственного интеллекта Meta помогают Университету Питтсбурга преобразовать вспомогательную робототехнику - Aioga Новости ИИ","description":"В самом сердце Питтсбурга происходит тихая революция — та, которая обещает переопределить, что значит независимость для людей с ограниченными возможностями. В центре этого движения...","url":"https://www.aioga.com/ru/news/cms3dp55g0ak0ro3fedt6xrgp/","contentTranslated":true,"sourceHash":"00e487e8105fbaa7","translatedAt":"2026-07-28T01:44:46.921Z"},"ar":{"title":"إعادة تصور الاستقلال: كيف تساعد نماذج الذكاء الاصطناعي لشركة ميتا جامعة بيتسبرغ في تحويل الروبوتات المساعدة","summary":"في قلب بيتسبرغ، هناك ثورة هادئة جارية — واحدة تعد بإعادة تعريف معنى الاستقلالية للأشخاص ذوي الإعاقة. في مركز هذه الحركة توجد مختبرات أبحاث الهندسة البشرية (HERL) ：https://www.herl.pitt.edu/، وهي مؤسسة رائدة في جامعة بيتسبرغ، تقود الآن مبادرة بتمويل يصل إلى 41.5 مليون دولار من وكالة المشاريع البحثية المتقدمة للصحة (ARPA-H) ：https://arpa-h.gov/، وهي وكالة تمويل بحثية أمريكية تأسست لدعم الإنجازات التحويلية في الطب والصحة. بدعم من ARPA-H، يقوم فريق HERL وشركة ATDev ：https://assistivetech.dev/، الرائدة في التكنولوجيا المساعدة المبتكرة، ببناء منصة الحركة والمناولة الروبوتية المساعدة لتوفير الاستقلالية للأشخاص ذوي الإعاقة (RAMMP)، حيث يجمعون بين الروبوتات المتقدمة والذكاء الاصطناعي وتصميم يركز على المستخدم.","category":"行业动态","source":"Meta AI：Blog（网页）","aggregationSource":"Meta AI：Blog（网页）","pageTitle":"إعادة تصور الاستقلال: كيف تساعد نماذج الذكاء الاصطناعي لشركة ميتا جامعة بيتسبرغ في تحويل الروبوتات المساعدة - Aioga أخبار الذكاء الاصطناعي","description":"في قلب بيتسبرغ، هناك ثورة هادئة جارية — واحدة تعد بإعادة تعريف معنى الاستقلالية للأشخاص ذوي الإعاقة. في مركز هذه الحركة توجد مختبرات أبحاث الهندسة البشرية (HERL) ：https://www.herl....","url":"https://www.aioga.com/ar/news/cms3dp55g0ak0ro3fedt6xrgp/","contentTranslated":true,"sourceHash":"00e487e8105fbaa7","translatedAt":"2026-07-28T01:45:36.064Z"},"hi":{"title":"स्वतंत्रता की नई कल्पना: कैसे मेटा के एआई मॉडल पिट्सबर्ग विश्वविद्यालय को सहायक रोबोटिक्स में बदलाव लाने में मदद कर रहे हैं","summary":"पिट्सबर्ग के दिल में, एक शांत क्रांति चल रही है — एक ऐसी क्रांति जो विकलांग व्यक्तियों के लिए स्वतंत्रता का अर्थ फिर से परिभाषित करने का वादा करती है। इस आंदोलन के केंद्र में ह्यूमन इंजीनियरिंग रिसर्च लेबोरेटरीज (HERL) है ：https://www.herl.pitt.edu/ , पिट्सबर्ग विश्वविद्यालय का एक अग्रणी संस्थान, जो अब एडवांस्ड रिसर्च प्रोजेक्ट्स एजेंसी फॉर हेल्थ (ARPA-H) ：https://arpa-h.gov/ से 41.5 मिलियन डॉलर तक के फंडिंग के साथ एक पहल का नेतृत्व कर रहा है, जो अमेरिकी अनुसंधान फंडिंग एजेंसी है और रूपांतरकारी जैव चिकित्सा और स्वास्थ्य क्षेत्रों में बड़े झटकों को समर्थन देने के लिए स्थापित की गई है। ARPA-H के समर्थन के साथ, HERL टीम और ATDev ：https://assistivetech.dev/ , जो नवीन सहायक तकनीक में अग्रणी है, रॉबोटिक असिस्टिव मोबिलिटी और मैनिपुलेशन प्लेटफॉर्म प्रदान कर रहे हैं, जो विकलांग व्यक्तियों के लिए स्वतंत्रता सुनिश्चित करता है (RAMMP), जिसमें अत्याधुनिक रोबोटिक्स, कृत्रिम बुद्धिमत्ता और उपयोगकर्ता-केंद्रित डिजाइन का मिश्रण शामिल है।","category":"行业动态","source":"Meta AI：Blog（网页）","aggregationSource":"Meta AI：Blog（网页）","pageTitle":"स्वतंत्रता की नई कल्पना: कैसे मेटा के एआई मॉडल पिट्सबर्ग विश्वविद्यालय को सहायक रोबोटिक्स में बदलाव लाने में मदद कर रहे हैं - Aioga AI समाचार","description":"पिट्सबर्ग के दिल में, एक शांत क्रांति चल रही है — एक ऐसी क्रांति जो विकलांग व्यक्तियों के लिए स्वतंत्रता का अर्थ फिर से परिभाषित करने का वादा करती है। इस आंदोलन के केंद्र में ह्यूम...","url":"https://www.aioga.com/hi/news/cms3dp55g0ak0ro3fedt6xrgp/","contentTranslated":true,"sourceHash":"00e487e8105fbaa7","translatedAt":"2026-07-28T01:45:45.644Z"},"it":{"title":"Reimmaginare l'indipendenza: come i modelli di intelligenza artificiale di Meta stanno aiutando l'Università di Pittsburgh a trasformare la robotica assistiva","summary":"Nel cuore di Pittsburgh, è in corso una rivoluzione silenziosa, una che promette di ridefinire cosa significhi indipendenza per le persone con disabilità. Al centro di questo movimento c'è l'Human Engineering Research Laboratories (HERL) ：https://www.herl.pitt.edu/, un istituto pionieristico dell'Università di Pittsburgh, che ora guida un'iniziativa con un finanziamento fino a 41,5 milioni di dollari dall'Advanced Research Projects Agency for Health (ARPA-H) ：https://arpa-h.gov/, un'agenzia di finanziamento della ricerca degli Stati Uniti creata per supportare scoperte biomedicali e sanitarie trasformative. Con il supporto di ARPA-H, il team HERL e ATDev ：https://assistivetech.dev/, un pioniere nel campo della tecnologia assistiva innovativa, stanno costruendo la Robotic Assistive Mobility and Manipulation Platform Providing Independence for People with Disabilities (RAMMP), combinando robotica all'avanguardia, intelligenza artificiale e design centrato sull'utente.","category":"行业动态","source":"Meta AI：Blog（网页）","aggregationSource":"Meta AI：Blog（网页）","pageTitle":"Reimmaginare l'indipendenza: come i modelli di intelligenza artificiale di Meta stanno aiutando l'Università di Pittsburgh a trasformare la robotica assistiva - Aioga Notizie IA","description":"Nel cuore di Pittsburgh, è in corso una rivoluzione silenziosa, una che promette di ridefinire cosa significhi indipendenza per le persone con disabilità. Al centro di questo movim...","url":"https://www.aioga.com/it/news/cms3dp55g0ak0ro3fedt6xrgp/","contentTranslated":true,"sourceHash":"00e487e8105fbaa7","translatedAt":"2026-07-28T01:46:33.848Z"},"nl":{"title":"Het heruitvinden van onafhankelijkheid: hoe de AI-modellen van Meta de Universiteit van Pittsburgh helpen bij het transformeren van ondersteunende robotica","summary":"In het hart van Pittsburgh vindt een stille revolutie plaats — een die belooft opnieuw te definiëren wat onafhankelijkheid betekent voor mensen met een handicap. In het centrum van deze beweging staat het Human Engineering Research Laboratories (HERL) ：https://www.herl.pitt.edu/, een baanbrekend instituut aan de Universiteit van Pittsburgh, dat nu leiding geeft aan een initiatief met een financiering van maximaal $41,5 miljoen van het Advanced Research Projects Agency for Health (ARPA-H) ：https://arpa-h.gov/, een Amerikaanse onderzoeksfinancieringsinstantie die is opgericht om transformatieve biomedische en gezondheidsdoorbraken te ondersteunen. Met ondersteuning van ARPA-H bouwen het HERL-team en ATDev ：https://assistivetech.dev/, een pionier in innovatieve ondersteunende technologie, het Robotic Assistive Mobility and Manipulation Platform Providing Independence for People with Disabilities (RAMMP), waarbij geavanceerde robotica, kunstmatige intelligentie en gebruikersgerichte des... worden gecombineerd.","category":"行业动态","source":"Meta AI：Blog（网页）","aggregationSource":"Meta AI：Blog（网页）","pageTitle":"Het heruitvinden van onafhankelijkheid: hoe de AI-modellen van Meta de Universiteit van Pittsburgh helpen bij het transformeren van ondersteunende robotica - Aioga AI-nieuws","description":"In het hart van Pittsburgh vindt een stille revolutie plaats — een die belooft opnieuw te definiëren wat onafhankelijkheid betekent voor mensen met een handicap. In het centrum van...","url":"https://www.aioga.com/nl/news/cms3dp55g0ak0ro3fedt6xrgp/","contentTranslated":true,"sourceHash":"00e487e8105fbaa7","translatedAt":"2026-07-28T01:46:28.333Z"},"tr":{"title":"Bağımsızlığı Yeniden Tasarlamak: Meta'nın Yapay Zeka Modelleri Pittsburgh Üniversitesi'nin Yardımcı Robotik Alanında Dönüşüm Yapmasına Nasıl Yardımcı Oluyor","summary":"Pittsburgh’un kalbinde, sessiz bir devrim sürüyor — engelli bireyler için bağımsızlığın ne anlama geldiğini yeniden tanımlayacak bir devrim. Bu hareketin merkezinde, Pittsburgh Üniversitesi’nde öncü bir enstitü olan Human Engineering Research Laboratories (HERL) ：https://www.herl.pitt.edu/ bulunuyor. HERL, şu anda Amerika Birleşik Devletleri'nde yenilikçi biyomedikal ve sağlık atılımlarını desteklemek için kurulan araştırma fonu ajansı Advanced Research Projects Agency for Health (ARPA-H) ：https://arpa-h.gov/ tarafından sağlanan 41,5 milyon dolara kadar bir bütçe ile bir girişimi yönetiyor. ARPA-H’nin desteğiyle, HERL ekibi ve yenilikçi yardımcı teknoloji öncüsü ATDev ：https://assistivetech.dev/ tarafından, ileri düzey robotik, yapay zekâ ve kullanıcı odaklı tasarımı harmanlayarak Engelliler İçin Bağımsızlık Sağlayan Robotik Yardımcı Mobilite ve Manipülasyon Platformu (RAMMP) inşa ediliyor.","category":"行业动态","source":"Meta AI：Blog（网页）","aggregationSource":"Meta AI：Blog（网页）","pageTitle":"Bağımsızlığı Yeniden Tasarlamak: Meta'nın Yapay Zeka Modelleri Pittsburgh Üniversitesi'nin Yardımcı Robotik Alanında Dönüşüm Yapmasına Nasıl Yardımcı Oluyor - Aioga AI Haberleri","description":"Pittsburgh’un kalbinde, sessiz bir devrim sürüyor — engelli bireyler için bağımsızlığın ne anlama geldiğini yeniden tanımlayacak bir devrim. Bu hareketin merkezinde, Pittsburgh Üni...","url":"https://www.aioga.com/tr/news/cms3dp55g0ak0ro3fedt6xrgp/","contentTranslated":true,"sourceHash":"00e487e8105fbaa7","translatedAt":"2026-07-28T01:47:12.727Z"},"vi":{"title":"Tái tưởng tượng về sự độc lập: Cách các mô hình AI của Meta đang giúp Đại học Pittsburgh biến đổi robot hỗ trợ","summary":"Ở trung tâm Pittsburgh, một cuộc cách mạng yên tĩnh đang diễn ra — một cuộc cách mạng hứa hẹn sẽ tái định nghĩa ý nghĩa của sự độc lập đối với người khuyết tật. Trung tâm của phong trào này là Phòng Nghiên cứu Kỹ thuật Con người (HERL) ：https://www.herl.pitt.edu/, một viện tiên phong tại Đại học Pittsburgh, hiện đang dẫn đầu một sáng kiến với kinh phí lên tới 41,5 triệu USD từ Cơ quan Dự án Nghiên cứu Tiên tiến về Sức khỏe (ARPA-H) ：https://arpa-h.gov/, một cơ quan tài trợ nghiên cứu của Mỹ được thành lập để hỗ trợ những bước đột phá mang tính cách mạng trong y sinh học và sức khỏe. Với sự hỗ trợ từ ARPA-H, nhóm HERL và ATDev ：https://assistivetech.dev/, một đơn vị tiên phong trong công nghệ hỗ trợ sáng tạo, đang xây dựng Nền tảng Robot Hỗ trợ Di chuyển và Thao tác Cung cấp Độc lập cho Người khuyết tật (RAMMP), kết hợp robot tiên tiến, trí tuệ nhân tạo và thiết kế tập trung vào người sử dụng.","category":"行业动态","source":"Meta AI：Blog（网页）","aggregationSource":"Meta AI：Blog（网页）","pageTitle":"Tái tưởng tượng về sự độc lập: Cách các mô hình AI của Meta đang giúp Đại học Pittsburgh biến đổi robot hỗ trợ - Tin tức AI Aioga","description":"Ở trung tâm Pittsburgh, một cuộc cách mạng yên tĩnh đang diễn ra — một cuộc cách mạng hứa hẹn sẽ tái định nghĩa ý nghĩa của sự độc lập đối với người khuyết tật. Trung tâm của phong...","url":"https://www.aioga.com/vi/news/cms3dp55g0ak0ro3fedt6xrgp/","contentTranslated":true,"sourceHash":"00e487e8105fbaa7","translatedAt":"2026-07-28T01:47:12.340Z"},"id":{"title":"Membayangkan Kemandirian: Bagaimana Model AI Meta Membantu Universitas Pittsburgh Mentransformasi Robotika Bantuan","summary":"Di jantung Pittsburgh, sebuah revolusi diam-diam sedang berlangsung — sebuah revolusi yang berjanji untuk mendefinisikan ulang arti kebebasan bagi orang-orang dengan disabilitas. Di pusat gerakan ini adalah Human Engineering Research Laboratories (HERL) ：https://www.herl.pitt.edu/, sebuah institut perintis di University of Pittsburgh, yang kini memimpin inisiatif dengan dana hingga $41,5 juta dari Advanced Research Projects Agency for Health (ARPA-H) ：https://arpa-h.gov/, sebuah lembaga pendanaan penelitian AS yang didirikan untuk mendukung terobosan transformasional di bidang biomedis dan kesehatan. Dengan dukungan dari ARPA-H, tim HERL dan ATDev ：https://assistivetech.dev/, perintis dalam teknologi bantu inovatif, sedang membangun Robotic Assistive Mobility and Manipulation Platform Providing Independence for People with Disabilities (RAMMP), yang menggabungkan robotika mutakhir, kecerdasan buatan, dan desain berpusat pada pengguna","category":"行业动态","source":"Meta AI：Blog（网页）","aggregationSource":"Meta AI：Blog（网页）","pageTitle":"Membayangkan Kemandirian: Bagaimana Model AI Meta Membantu Universitas Pittsburgh Mentransformasi Robotika Bantuan - Berita AI Aioga","description":"Di jantung Pittsburgh, sebuah revolusi diam-diam sedang berlangsung — sebuah revolusi yang berjanji untuk mendefinisikan ulang arti kebebasan bagi orang-orang dengan disabilitas. D...","url":"https://www.aioga.com/id/news/cms3dp55g0ak0ro3fedt6xrgp/","contentTranslated":true,"sourceHash":"00e487e8105fbaa7","translatedAt":"2026-07-28T01:47:58.063Z"},"th":{"title":"การจินตนาการใหม่ของความเป็นอิสระ: โมเดล AI ของ Meta ช่วยมหาวิทยาลัยพิตต์สเบิร์กเปลี่ยนหุ่นยนต์ช่วยเหลืออย่างไร","summary":"ในใจกลางของเมืองพิตต์สเบิร์ก กำลังเกิดการปฏิวัติอย่างเงียบ ๆ — ซึ่งสัญญาว่าจะนิยามความหมายของความเป็นอิสระสำหรับผู้พิการใหม่ ที่ศูนย์กลางของขบวนการนี้คือห้องปฏิบัติการวิจัยวิศวกรรมมนุษย์ (HERL) ：https://www.herl.pitt.edu/ สถาบันบุกเบิกแห่งมหาวิทยาลัยพิตต์สเบิร์ก ที่ปัจจุบันกำลังนำโครงการที่ได้รับเงินทุนสูงถึง 41.5 ล้านดอลลาร์จากหน่วยงาน Advanced Research Projects Agency for Health (ARPA-H) ：https://arpa-h.gov/ หน่วยงานวิจัยของสหรัฐอเมริกาที่ก่อตั้งเพื่อสนับสนุนการค้นพบด้านชีวการแพทย์และสุขภาพที่เปลี่ยนแปลงโลก ด้วยการสนับสนุนจาก ARPA-H ทีม HERL และ ATDev ：https://assistivetech.dev/ ผู้นำด้านเทคโนโลยีช่วยเหลือแบบนวัตกรรม กำลังสร้างแพลตฟอร์มช่วยเคลื่อนไหวและจัดการด้วยหุ่นยนต์เพื่อความเป็นอิสระสำหรับผู้พิการ (RAMMP) ผสมผสานเทคโนโลยีหุ่นยนต์ขั้นสูง ปัญญาประดิษฐ์ และการออกแบบที่ยึดผู้ใช้เป็นศูนย์กลาง","category":"行业动态","source":"Meta AI：Blog（网页）","aggregationSource":"Meta AI：Blog（网页）","pageTitle":"การจินตนาการใหม่ของความเป็นอิสระ: โมเดล AI ของ Meta ช่วยมหาวิทยาลัยพิตต์สเบิร์กเปลี่ยนหุ่นยนต์ช่วยเหลืออย่างไร - ข่าว AI Aioga","description":"ในใจกลางของเมืองพิตต์สเบิร์ก กำลังเกิดการปฏิวัติอย่างเงียบ ๆ — ซึ่งสัญญาว่าจะนิยามความหมายของความเป็นอิสระสำหรับผู้พิการใหม่ ที่ศูนย์กลางของขบวนการนี้คือห้องปฏิบัติการวิจัยวิศวกรรม...","url":"https://www.aioga.com/th/news/cms3dp55g0ak0ro3fedt6xrgp/","contentTranslated":true,"sourceHash":"00e487e8105fbaa7","translatedAt":"2026-07-28T01:48:04.082Z"},"pl":{"title":"Rewizja niezależności: Jak modele AI Meta pomagają Uniwersytetowi Pittsburgh w przekształcaniu robotyki wspomagającej","summary":"W samym sercu Pittsburghu trwa cicha rewolucja — taka, która obiecuje na nowo zdefiniować, co oznacza niezależność dla osób z niepełnosprawnościami. W centrum tego ruchu znajduje się Human Engineering Research Laboratories (HERL) ：https://www.herl.pitt.edu/, pionierski instytut na Uniwersytecie w Pittsburghu, który obecnie prowadzi inicjatywę o finansowaniu sięgającym 41,5 miliona dolarów od Advanced Research Projects Agency for Health (ARPA-H) ：https://arpa-h.gov/, amerykańskiej agencji finansującej badania, utworzonej w celu wspierania przełomowych odkryć biomedycznych i zdrowotnych. Dzięki wsparciu ARPA-H, zespół HERL i ATDev ：https://assistivetech.dev/, pionier w innowacyjnej technologii wspomagającej, budują Robotic Assistive Mobility and Manipulation Platform Providing Independence for People with Disabilities (RAMMP), łącząc nowoczesną robotykę, sztuczną inteligencję oraz podejście skoncentrowane na użytkowniku.","category":"行业动态","source":"Meta AI：Blog（网页）","aggregationSource":"Meta AI：Blog（网页）","pageTitle":"Rewizja niezależności: Jak modele AI Meta pomagają Uniwersytetowi Pittsburgh w przekształcaniu robotyki wspomagającej - Aioga Wiadomości AI","description":"W samym sercu Pittsburghu trwa cicha rewolucja — taka, która obiecuje na nowo zdefiniować, co oznacza niezależność dla osób z niepełnosprawnościami. W centrum tego ruchu znajduje s...","url":"https://www.aioga.com/pl/news/cms3dp55g0ak0ro3fedt6xrgp/","contentTranslated":true,"sourceHash":"00e487e8105fbaa7","translatedAt":"2026-07-28T01:48:46.276Z"}}}}