应交易所要求,美/港股行情延时15分钟展示,下载APP即可免费查看实时行情。
关闭
MIT Mason Industrial Technology Inc
休市中 10-25 16:00:00 EDT
10.14
+0.00
0.00%
最高
10.14
最低
10.14
成交量
0.00
今开
10.14
昨收
10.14
日振幅
0.00%
总市值
6.34亿
流通市值
5.07亿
总股本
6,250万
成交额
0.00
换手率
0.00%
流通股本
5,000万
市净率
--
ROE
--
每股收益
0.00
52周最高
--
52周最低
--
市盈率
--
股息
--
股息收益率
--
ROA
--
分时
五日
日K
周K
月K
数据加载中...
北京优虎网络科技有限公司
资讯
新帖
简况
真正的机器人智能,从触觉开始?
中国基金报 · 01-16
真正的机器人智能,从触觉开始?
AI“狂飙” 劳动力市场面临转型压力
金融时报 · 01-07
AI“狂飙” 劳动力市场面临转型压力
陈大同 | 芯片往事(二)
创业邦 · 2025-12-03
陈大同 | 芯片往事(二)
卡拉曼MIT经典演讲:要有健康的投资纪律,能不能睡个安稳觉比什么都重要
格上财富 · 2025-11-26
卡拉曼MIT经典演讲:要有健康的投资纪律,能不能睡个安稳觉比什么都重要
Nature 发布全球科研城市榜:北京第一,上海第二,美国城市集体下滑
DeepTech深科技 · 2025-11-20
Nature 发布全球科研城市榜:北京第一,上海第二,美国城市集体下滑
哈佛MIT合作推进三十年难题:448量子比特架构实现关键纠错能力,为潜在的量子飞跃奠定基础
IT之家 · 2025-11-17
哈佛MIT合作推进三十年难题:448量子比特架构实现关键纠错能力,为潜在的量子飞跃奠定基础
科学家发现,AI大语言模型仍难以区分“信念”与“事实”
IT之家 · 2025-11-07
科学家发现,AI大语言模型仍难以区分“信念”与“事实”
NVIDIA港大MIT联合推出Fast-dLLM v2:端到端吞吐量提升2.5倍
新浪财经 · 2025-10-26
NVIDIA港大MIT联合推出Fast-dLLM v2:端到端吞吐量提升2.5倍
谷歌收购 MIT 衍生量子计算初创企业 Atlantic Quantum
IT之家 · 2025-10-08
谷歌收购 MIT 衍生量子计算初创企业 Atlantic Quantum
MIT最新研究揭示,吃对一种氨基酸,或让肠道“返老还童”
极客怪咖 · 2025-10-07
MIT最新研究揭示,吃对一种氨基酸,或让肠道“返老还童”
摩尔线程IPO过会;专家称L3智驾2027放量丨科技风向标
21世纪经济报道 · 2025-09-29
摩尔线程IPO过会;专家称L3智驾2027放量丨科技风向标
DeepSeek、宇树科技等被MIT科技评论评为聪明公司
金色财经 · 2025-09-14
DeepSeek、宇树科技等被MIT科技评论评为聪明公司
逾半数职场人士认为,按受AI培训犹如多干了一份工作
财富FORTUNE · 2025-09-01
逾半数职场人士认为,按受AI培训犹如多干了一份工作
MIT 研发蜂型机器人,每秒振翅 400 次,未来或用于火星授粉
IT之家 · 2025-08-31
MIT 研发蜂型机器人,每秒振翅 400 次,未来或用于火星授粉
MIT研发可溶解固态电解质,电动车电池可像“棉花糖遇水”一样快速溶解
IT之家 · 2025-08-30
MIT研发可溶解固态电解质,电动车电池可像“棉花糖遇水”一样快速溶解
企业级AI冰火两重天?报告:重视“影子AI经济”
第一财经 · 2025-08-28
企业级AI冰火两重天?报告:重视“影子AI经济”
美股大跌的导火索,这篇MIT的报告有什么特别?
华尔街见闻 · 2025-08-20
美股大跌的导火索,这篇MIT的报告有什么特别?
MIT首次揭示石墨辐射损伤全周期变化,破解核反应堆材料寿命密码
市场资讯 · 2025-08-16
MIT首次揭示石墨辐射损伤全周期变化,破解核反应堆材料寿命密码
【格芯与MIT达成半导体研发合作协议 首批项目将导入硅光子技术】格芯宣布同麻省理工学院MIT达成一项新的主研究协议,双方将共同追求进步和创新,以提高关键半导体技术的性能和效率。首批项目预计将基于格芯的22nm FD-SOI工艺22FDX和差异化硅光子技术。(科创板日报)
金融界 · 2025-03-04
【格芯与MIT达成半导体研发合作协议 首批项目将导入硅光子技术】格芯宣布同麻省理工学院MIT达成一项新的主研究协议,双方将共同追求进步和创新,以提高关键半导体技术的性能和效率。首批项目预计将基于格芯的22nm FD-SOI工艺22FDX和差异化硅光子技术。(科创板日报)
格芯、MIT达成半导体研发合作协议,首批项目将导入硅光子技术
IT之家 · 2025-03-03
格芯、MIT达成半导体研发合作协议,首批项目将导入硅光子技术
加载更多
公司概况
公司名称:
Mason Industrial Technology Inc
所属市场:
NYSE
上市日期:
--
主营业务:
Mason Industrial Technology, Inc.于2020年8月31日在特拉华州注册成立。该公司是一家空白支票公司,其目的是进行合并,股份交换,资产收购,股票购买,资本重组, 与一个或多个企业或实体进行重组或其他类似的企业合并。
发行价格:
--
{"stockData":{"symbol":"MIT","market":"US","secType":"STK","nameCN":"Mason Industrial Technology Inc","latestPrice":10.14,"timestamp":1729886400000,"preClose":10.14,"halted":0,"volume":0,"delay":0,"changeRate":0,"floatShares":50000000,"shares":62500000,"eps":0.286651,"marketStatus":"休市中","change":0,"latestTime":"10-25 16:00:00 EDT","open":10.14,"high":10.14,"low":10.14,"amount":0,"amplitude":0,"askPrice":0,"askSize":0,"bidPrice":0,"bidSize":0,"shortable":3,"etf":0,"ttmEps":0.286651,"tradingStatus":0,"nextMarketStatus":{"tag":"盘前交易","tradingStatus":1,"beginTime":1770627600000},"marketStatusCode":7,"adr":0,"exchange":"NYSE","adjPreClose":10.14,"volumeRatio":0},"requestUrl":"/m/hq/s/MIT","defaultTab":"news","newsList":[{"id":"2603663069","title":"真正的机器人智能,从触觉开始?","url":"https://stock-news.laohu8.com/highlight/detail?id=2603663069","media":"中国基金报","labels":[],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2603663069?lang=zh_cn&edition=full","pubTime":"2026-01-16 12:57","pubTimestamp":1768539420,"startTime":"0","endTime":"0","summary":"视觉主要提供空间状态的感知,但当人手需要接触物体并进行操作时,触觉能提供更快地响应。由此可见,人类在与物理世界互动时,视觉和触觉是相辅相成的。机器人需要先具备良好的运动能力,然后才能有效执行任务。因此,2026年我们将推出触觉传感器的标准化产品,并拓展其在机器人及智能硬件中作为核心部件的应用。","market":"hk","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":{"source":null,"url":"http://mp.weixin.qq.com/s?__biz=MzA5MDEzNjQwMA==&mid=2656341536&idx=2&sn=11ee88e2486ae6fbb9a1bf8d841f6be6&chksm=8a43d90443de7778d7d95270a15f402e822cacd0b32bd8df65c5d86f8df2235d9134fa983881&scene=0#rd","rn_cache_url":null,"directOrigin":true},"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"http://mp.weixin.qq.com/s?__biz=MzA5MDEzNjQwMA==&mid=2656341536&idx=2&sn=11ee88e2486ae6fbb9a1bf8d841f6be6&chksm=8a43d90443de7778d7d95270a15f402e822cacd0b32bd8df65c5d86f8df2235d9134fa983881&scene=0#rd","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"0","news_top_title":null,"news_tag":"","news_rank":0,"length":0,"strategy_id":0,"source":null,"symbols":["MIT"],"gpt_icon":0},{"id":"2601840446","title":"AI“狂飙” 劳动力市场面临转型压力","url":"https://stock-news.laohu8.com/highlight/detail?id=2601840446","media":"金融时报","labels":[],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2601840446?lang=zh_cn&edition=full","pubTime":"2026-01-07 00:00","pubTimestamp":1767715200,"startTime":"0","endTime":"0","summary":"从全球范围来看,AI发展对就业市场造成的影响正进一步凸显。国际货币基金组织发布的《Gen-AI:人工智能和工作的未来》报告显示,人工智能会对全球近40%的就业岗位产生影响,未来,劳动力市场面临巨大转型压力。2024年诺贝尔奖得主、2018年图灵奖得主、加拿大多伦多大学计算机科学名誉教授杰弗里·辛顿预测了AI发展对劳动力市场的冲击。","market":"us","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":{"source":"tencent","url":"http://gu.qq.com/resources/shy/news/detail-v2/index.html#/?id=nesSN20260107101351a6fc8697&s=b","rn_cache_url":null,"customStyle":"body{padding-top:10px;}#news_title{font-weight:bold;#titleStyle#;}#news_description span{font-size:12px;#descriptionStyle#;}.footer-note{#statement#}","selectors":".mod-LoadTzbdNews, body","filters":".relate-stock, .hot-list, .recom-box, .wx-sou","directOrigin":true},"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"http://gu.qq.com/resources/shy/news/detail-v2/index.html#/?id=nesSN20260107101351a6fc8697&s=b","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"0","news_top_title":null,"news_tag":"","news_rank":0,"length":0,"strategy_id":0,"source":"tencent","symbols":["LU2430703251.USD","LU1778281490.HKD","LU1582986433.USD","LU0029864427.USD","LU2125154778.USD","BK4581","AI","LU0323239441.USD","LU1046421795.USD","LU0787776722.HKD","LU0726765562.USD","LU1934455277.USD","LU1983260115.SGD","LU0128525929.USD","IE000W1ABFV2.USD","IE00BBT3K403.USD","AMZN","IMF","USAW.SI","LU1323610961.USD","BK4585","SG9999002232.USD","LU2506952170.USD","LU0345768740.USD","IE00BLSP4239.USD","LU2362540622.SGD","LU1935042991.SGD","LU0096362180.USD","LU0823411888.USD","LU0210528500.USD","SGXZ99366536.SGD","LU2347655073.USD","LU0426412945.USD","LU2896262040.SGD","BK4532","LU1564329032.USD","LU0949170772.SGD","JPM","LU1244550577.SGD","LU2087625088.SGD","MIT","SG9999015986.USD","IE00BN8TJ469.HKD","MSFT","LU2487616109.SGD","LU0210533765.USD","LU0109391861.USD","LU1934455194.USD","LU0251132253.USD","IE0034235295.USD","IE00BFSS7M15.SGD"],"gpt_icon":1},{"id":"2588012769","title":"陈大同 | 芯片往事(二)","url":"https://stock-news.laohu8.com/highlight/detail?id=2588012769","media":"创业邦","labels":[],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2588012769?lang=zh_cn&edition=full","pubTime":"2025-12-03 08:05","pubTimestamp":1764720300,"startTime":"0","endTime":"0","summary":"——从豪威科技私有化回归,到东方理工大学的诞生陈大同清华大学本/硕/博元禾璞华创始合伙人硅谷豪威科技及上海展讯通信联合创始人宁波市虞仁荣教育基金会理事长2025年8月30日,我参加了宁波东方理工大学的首届开学典礼,一时浮想联翩,夜不能寐,回想起这些年的风风雨雨,走到今天真是不容易。去年,在电视剧《赤热》播出后,有人把这些专栏整理成一篇文章《陈大同-芯片往事》。","market":"hk","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":null,"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"http://mp.weixin.qq.com/s?__biz=MjM5OTAzMjc4MA==&mid=2650852465&idx=2&sn=89a09c5281ceaa14579a1e3f06bd6050&chksm=bccda3cb23854e9f6b491815b3f02a9a2fd39ea50b0b5d7fccaf09c9249141ae52a66a53e6ad&scene=0#rd","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"0","news_top_title":null,"news_tag":"","news_rank":0,"length":0,"strategy_id":0,"source":"weixin_highlight","symbols":["LU1815336091.USD","IE00BZ199S13.USD","BK4149","SOXX","BK4588","GP","BK4585","BK4124","VC","DRAM","LU0757428866.USD","MIT","SMH"],"gpt_icon":1},{"id":"2586260934","title":"卡拉曼MIT经典演讲:要有健康的投资纪律,能不能睡个安稳觉比什么都重要","url":"https://stock-news.laohu8.com/highlight/detail?id=2586260934","media":"格上财富","labels":[],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2586260934?lang=zh_cn&edition=full","pubTime":"2025-11-26 20:51","pubTimestamp":1764161460,"startTime":"0","endTime":"0","summary":"很多人知道卡拉曼,是因为那本在投资圈流传甚广的《安全边际》。在短期主义盛行、市场信息喧嚣的时代,坚持卡拉曼那种慢、谨慎、敬畏风险的风格,本身就不容易。1982年,卡拉曼25岁,联合创立了Baupost Group。“归根到底,最重要的指标不是收益,而是你还能不能睡个安稳觉。”卡拉曼强调的常识,适合我们每一个人。这其实是一种健康的投资纪律。有一项调查显示,申请这类贷款的人中,有高达95%虚报了收入或资产。","market":"us","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":null,"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"http://mp.weixin.qq.com/s?__biz=MjM5OTc2NzA2MQ==&mid=2651328840&idx=2&sn=436d997c5eb346123febe01bc9b98c69&chksm=bd7190bb16b7bfd3e146928b875d4946b92f0b90aa1a1edc8367acc96c8a26967148135a9a38&scene=0#rd","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"0","news_top_title":null,"news_tag":"","news_rank":0,"length":0,"strategy_id":0,"source":"weixin_highlight","symbols":["MIT"],"gpt_icon":0},{"id":"2584131262","title":"Nature 发布全球科研城市榜:北京第一,上海第二,美国城市集体下滑","url":"https://stock-news.laohu8.com/highlight/detail?id=2584131262","media":"DeepTech深科技","labels":[],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2584131262?lang=zh_cn&edition=full","pubTime":"2025-11-20 20:25","pubTimestamp":1763641500,"startTime":"0","endTime":"0","summary":"近日,Nature旗下数据平台 Nature Index发布 2024 年全球科研城市排名,为这两个问题提供了参考。在 2024 年的全球科研城市综合排名前十位中,中国城市占据六席,且包揽了冠亚军,而美国城市占据四席,且上榜城市的产出份额普遍出现下滑。从排名第一的北京,到随后的上海、南京、广州、武汉、合肥、杭州、天津、西安和长春,中国城市在这一基础学科领域形成了集团优势。","market":"fut","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":null,"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"https://finance.sina.com.cn/roll/2025-11-20/doc-infyafyr2521516.shtml","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"0","news_top_title":null,"news_tag":"","news_rank":0,"length":0,"strategy_id":0,"source":"sina","symbols":["MIT"],"gpt_icon":0},{"id":"2584776619","title":"哈佛MIT合作推进三十年难题:448量子比特架构实现关键纠错能力,为潜在的量子飞跃奠定基础","url":"https://stock-news.laohu8.com/highlight/detail?id=2584776619","media":"IT之家","labels":[],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2584776619?lang=zh_cn&edition=full","pubTime":"2025-11-17 13:26","pubTimestamp":1763357179,"startTime":"0","endTime":"0","summary":"IT之家 11 月 17 日消息,量子计算的核心难题在于量子纠错 —— 如何在极易出错的量子比特中检测并移除错误。在这项研究中,科研人员构建了一个包含 448 个原子量子比特的“容错”系统,并通过多种技术组合操控它们以实现错误检测与纠正。","market":"sh","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":null,"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"https://tech.ifeng.com/c/8oLzMCoUlww","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"0","news_top_title":null,"news_tag":"","news_rank":0,"length":0,"strategy_id":0,"source":"fenghuang_stock","symbols":["MIT"],"gpt_icon":0},{"id":"2581023750","title":"科学家发现,AI大语言模型仍难以区分“信念”与“事实”","url":"https://stock-news.laohu8.com/highlight/detail?id=2581023750","media":"IT之家","labels":[],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2581023750?lang=zh_cn&edition=full","pubTime":"2025-11-07 09:13","pubTimestamp":1762478025,"startTime":"0","endTime":"0","summary":"IT之家 11 月 7 日消息,据新华社今日报道,美国斯坦福大学近日发表的一项研究指出,包括 ChatGPT 在内的多款 AI 聊天机器人在识别用户错误信念方面存在明显局限性,仍无法可靠区分信念还是事实。研究者共向这些模型提出 13,000 个问题,以评估它们区分信念、知识与事实的能力。这项研究并非首次对 AI 推理能力提出质疑。研究指出,这种情况并非因为 AI 模型效率低下,而是由于 AI 系统难以与企业现有工作流程兼容,导致实施效果不佳。","market":"hk","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":null,"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"https://tech.ifeng.com/c/8o58EpzBvOU","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"0","news_top_title":null,"news_tag":"","news_rank":0,"length":0,"strategy_id":0,"source":"ifeng_tech","symbols":["BK4588","BK4543","BK4585","BK4528","AI","MIT","BK4551","BK4587","BK4023"],"gpt_icon":0},{"id":"2578668081","title":"NVIDIA港大MIT联合推出Fast-dLLM v2:端到端吞吐量提升2.5倍","url":"https://stock-news.laohu8.com/highlight/detail?id=2578668081","media":"新浪财经","labels":["productRelease"],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2578668081?lang=zh_cn&edition=full","pubTime":"2025-10-26 12:00","pubTimestamp":1761451200,"startTime":"0","endTime":"0","summary":"在 A100/H100 上,它在保持精度的同时,将端到端吞吐显著拉高,最高可达 2.5×。7B 规模吞吐与精度:在 A100 上,Fast-dLLM v2吞吐为 Qwen2.5-7B-Instruct 的 2.54×;同时对比 Fast-dLLM-LLaDA 还有 +5.2% 的准确率提升。总结Fast-dLLM v2 提供了一条务实路线:用很少的数据把 AR 模型适配为 Block Diffusion LLM,相较等规模 AR 的端到端吞吐量约提升 2.5×,精度保持可比,并且关键开关都能工程化地按目标调优,这是一个成本与收益比较均衡的解法。","market":"us","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":{"source":"tencent","url":"http://gu.qq.com/resources/shy/news/detail-v2/index.html#/?id=nesSN20251026125230a47529b6&s=b","rn_cache_url":null,"customStyle":"body{padding-top:10px;}#news_title{font-weight:bold;#titleStyle#;}#news_description span{font-size:12px;#descriptionStyle#;}.footer-note{#statement#}","selectors":".mod-LoadTzbdNews, body","filters":".relate-stock, .hot-list, .recom-box, .wx-sou","directOrigin":true},"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"http://gu.qq.com/resources/shy/news/detail-v2/index.html#/?id=nesSN20251026125230a47529b6&s=b","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"1","news_top_title":null,"news_tag":"productRelease","news_rank":0,"length":0,"strategy_id":0,"source":"tencent","symbols":["LU1623119135.USD","LU0069063385.USD","LU2360107168.USD","LU2746668974.SGD","LU2417539215.USD","FAST","NVD","LU0965509101.SGD","LU2931357623.SGD","IE00BN29S564.USD","LU1852331112.SGD","IE00BQXX3C00.GBP","BK4588","BK4141","NVD2.UK","SGXZ31699556.SGD","IE00BFXG0V08.USD","NVDY","NVDA","LU0061474705.USD","NVIW.SI","LU0823434583.USD","LU0683600562.USD","LU2077746001.SGD","SGXZ51526630.SGD","NVDS.UK","2NVD.UK","IE00B5TLWC47.USD","SNVD.UK","3NVD.UK","LU0466842654.USD","MIT","LU1868837300.USD","LU0672654240.SGD","NVD3.UK","LU1066051811.HKD","LU0316494557.USD","NVDD","LU2420271590.USD","NVDU","NVDS","NVDX","LU1814569148.SGD","LU0347712357.USD","BK4608","IE00B5949003.HKD","SG9999014880.SGD","LU0942090050.USD","LU1815336760.USD"],"gpt_icon":1},{"id":"2573702919","title":"谷歌收购 MIT 衍生量子计算初创企业 Atlantic Quantum","url":"https://stock-news.laohu8.com/highlight/detail?id=2573702919","media":"IT之家","labels":["corporation","merge"],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2573702919?lang=zh_cn&edition=full","pubTime":"2025-10-08 12:07","pubTimestamp":1759896479,"startTime":"0","endTime":"0","summary":"IT之家 10 月 8 日消息,谷歌量子计算部门 Google Quantum AI 当地时间 10 月 2 日宣布已完成对 MIT 衍生量子计算初创企业 Atlantic Quantum 的收购,后者团队加入谷歌。Atlantic Quantum 专注于开发高度集成的量子计算硬件,该企业的模块化量子芯片堆栈集成技术将帮助 Google Quantum AI 更有效地扩展超导量子比特硬件,并加速其迈向大型纠错量子计算机和现实世界应用的进度。Google Quantum AI 在 2024 年末推出了 Willow 量子芯片,能仅以 5 分钟完成传统超算需要 1025年的计算任务。","market":"us","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":{"source":"tencent","url":"http://gu.qq.com/resources/shy/news/detail-v2/index.html#/?id=nesSN20251008120819a6b05e81&s=b","rn_cache_url":null,"customStyle":"body{padding-top:10px;}#news_title{font-weight:bold;#titleStyle#;}#news_description span{font-size:12px;#descriptionStyle#;}.footer-note{#statement#}","selectors":".mod-LoadTzbdNews, body","filters":".relate-stock, .hot-list, .recom-box, .wx-sou","directOrigin":true},"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"http://gu.qq.com/resources/shy/news/detail-v2/index.html#/?id=nesSN20251008120819a6b05e81&s=b","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"1","news_top_title":null,"news_tag":"corporation,merge","news_rank":0,"length":0,"strategy_id":0,"source":"tencent","symbols":["LU1934455277.USD","LU0211328371.USD","LU0690374615.EUR","LU1429558221.USD","LU0130102774.USD","LU1303367103.USD","LU1868836757.USD","IE00B7KXQ091.USD","LU0528227936.USD","IE00BJTD4N35.SGD","IE00BJJMRY28.SGD","LU0316494557.USD","LU2244417387.USD","LU0868494708.USD","LU2592432038.USD","BK4533","LU1839511570.USD","IE00BQXX3C00.GBP","SG9999002232.USD","LU1116320737.USD","LU0784384876.USD","LU1235294995.USD","LU1642822529.SGD","LU0466842654.USD","GOOGL","IE00BKDWB100.SGD","LU0965509010.AUD","LU0310800379.SGD","LU0079474960.USD","LU2236285917.USD","QTUM","BK4612","LU2720916845.USD","LU0107464264.USD","LU0672654240.SGD","LU1868836914.USD","LU0792757196.USD","LU1244550221.USD","LU0070302665.USD","LU1868837136.USD","MIT","LU0109391861.USD","BK4602","GOOG","LU2361044865.SGD","LU1127390331.HKD","LU2471134879.HKD","USJW.SI","SG9999015978.USD","LU0096362180.USD"],"gpt_icon":0},{"id":"2573756933","title":"MIT最新研究揭示,吃对一种氨基酸,或让肠道“返老还童”","url":"https://stock-news.laohu8.com/highlight/detail?id=2573756933","media":"极客怪咖","labels":[],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2573756933?lang=zh_cn&edition=full","pubTime":"2025-10-07 08:49","pubTimestamp":1759798169,"startTime":"0","endTime":"0","summary":"为此,研究团队设计了一项系统实验:让小鼠分别摄入富含 20 种不同氨基酸之一的高蛋白饮食,并观察其对小肠干细胞的影响。结果显示,半胱氨酸的作用最为显著,能显著促进肠道干细胞及其前体细胞的再生。进一步研究揭示了半胱氨酸发挥作用的完整机制。除了本次发现的免疫信号通路,半胱氨酸此前已被证明具有抗氧化作用,能清除自由基、减少细胞损伤。此外,团队还在筛选其他氨基酸,看是否存在类似或互补的干细胞调控机制。","market":"us","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":null,"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"https://tech.ifeng.com/c/8nFhVP1rWh2","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"0","news_top_title":null,"news_tag":"","news_rank":0,"length":0,"strategy_id":0,"source":"ifeng_tech","symbols":["MIT"],"gpt_icon":0},{"id":"2571874313","title":"摩尔线程IPO过会;专家称L3智驾2027放量丨科技风向标","url":"https://stock-news.laohu8.com/highlight/detail?id=2571874313","media":"21世纪经济报道","labels":[],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2571874313?lang=zh_cn&edition=full","pubTime":"2025-09-29 10:00","pubTimestamp":1759111218,"startTime":"0","endTime":"0","summary":"21世纪经济报道新质生产力研究院综合报道早上好,新的一天又开始了。在过去的24小时内,科技行业发生了哪些有意思的事情?来跟21tech一起看看吧。【巨头风向标】摩尔线程IPO过会,参股公司名单曝光近日,摩尔线程科创板IPO申请通过上交所上市委会议审议。摩尔线程主要从事全功能GPU相关产品的研发、设计和销售,是国内极少数兼顾图形渲染与AI计算的国产GPU公司,也是行业独角兽企业。","market":"hk","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":{"source":"stock_eastmoney","url":"http://finance.eastmoney.com/a/202509293526108949.html","rn_cache_url":null,"directOrigin":true},"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"http://finance.eastmoney.com/a/202509293526108949.html","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"1","news_top_title":null,"news_tag":"","news_rank":0,"length":0,"strategy_id":0,"source":"stock_eastmoney","symbols":["BK4022","DIDIY","BK4230","MIT"],"gpt_icon":0},{"id":"2567300651","title":"DeepSeek、宇树科技等被MIT科技评论评为聪明公司","url":"https://stock-news.laohu8.com/highlight/detail?id=2567300651","media":"金色财经","labels":[],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2567300651?lang=zh_cn&edition=full","pubTime":"2025-09-14 14:55","pubTimestamp":1757832949,"startTime":"0","endTime":"0","summary":null,"market":"fut","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":null,"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"https://finance.sina.com.cn/7x24/2025-09-14/doc-infqmpzq7529061.shtml","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"0","news_top_title":null,"news_tag":"","news_rank":0,"length":0,"strategy_id":0,"source":"jinse_live","symbols":["MIT","BK6515","BK6062","M11.SI"],"gpt_icon":0},{"id":"2564810544","title":"逾半数职场人士认为,按受AI培训犹如多干了一份工作","url":"https://stock-news.laohu8.com/highlight/detail?id=2564810544","media":"财富FORTUNE","labels":[],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2564810544?lang=zh_cn&edition=full","pubTime":"2025-09-01 21:03","pubTimestamp":1756731835,"startTime":"0","endTime":"0","summary":"调查结果凸显了技术推广速度与职场人士实际体验之间日益加剧的紧张关系,表明企业或许需要重新审视其AI技能培训的方式,以避免进一步造成员工与公司的疏离。","market":"us","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":{"source":"tencent","url":"http://gu.qq.com/resources/shy/news/detail-v2/index.html#/?id=nesSN20250901210700a4ad8982&s=b","rn_cache_url":null,"customStyle":"body{padding-top:10px;}#news_title{font-weight:bold;#titleStyle#;}#news_description span{font-size:12px;#descriptionStyle#;}.footer-note{#statement#}","selectors":".mod-LoadTzbdNews, body","filters":".relate-stock, .hot-list, .recom-box, .wx-sou","directOrigin":true},"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"http://gu.qq.com/resources/shy/news/detail-v2/index.html#/?id=nesSN20250901210700a4ad8982&s=b","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"0","news_top_title":null,"news_tag":"","news_rank":0,"length":0,"strategy_id":0,"source":"tencent","symbols":["MIT","NVDA"],"gpt_icon":1},{"id":"2564381869","title":"MIT 研发蜂型机器人,每秒振翅 400 次,未来或用于火星授粉","url":"https://stock-news.laohu8.com/highlight/detail?id=2564381869","media":"IT之家","labels":[],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2564381869?lang=zh_cn&edition=full","pubTime":"2025-08-31 06:51","pubTimestamp":1756594264,"startTime":"0","endTime":"0","summary":"IT之家 8 月 31 日消息,据 CNN 报道,麻省理工学院 的一支研究团队正研发一款蜂型机器人,其翅膀振动频率最高可达每秒 400 次。该项目由麻省理工学院软微机器人实验室首席研究员凯文陈牵头,目标是复刻大黄蜂所具备的惊人飞行技巧。研究人员表示,这款机器蜂未来有望承担人工授粉等任务。据IT之家了解,这款机器人体型小巧,重量不及一枚回形针,依靠可快速收缩与伸展的柔性肌肉实现飞行。","market":"hk","thumbnail":"https://k.sinaimg.cn/n/spider20250831/500/w1200h900/20250831/4942-45bdce9e04bc4950c12344dfa13e5722.jpg/w120h90l50t1f0d.jpg","type":0,"news_type":0,"thumbnails":["https://k.sinaimg.cn/n/spider20250831/500/w1200h900/20250831/4942-45bdce9e04bc4950c12344dfa13e5722.jpg/w120h90l50t1f0d.jpg"],"rights":{"source":"sina_tech","url":"https://tech.sina.cn/mobile/xp/2025-09-01/detail-infnvpzn4076160.d.html?vt=4","rn_cache_url":null,"customStyle":"body{padding-top:10px;}.art_tit_h1{#titleStyle#}a{#lv2TextColor#}.art_time, .art_cite{#sourceStyle#;} .art_cite{margin-left: 3px;}.weibo_user{#sourceStyle#; margin-bottom: 0; display: inline-block;}.weibo_time{#sourceStyle#};","selectors":".module-article, article","filters":"header, .voice2, .tags, #norm_qrcode_link_auto, .unfold-box, .action, .j_float_wbro, .j_article_wbreco","directOrigin":true},"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"https://tech.sina.cn/mobile/xp/2025-09-01/detail-infnvpzn4076160.d.html?vt=4","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"0","news_top_title":null,"news_tag":"","news_rank":0,"length":0,"strategy_id":0,"source":"sina_tech","symbols":["MIT"],"gpt_icon":0},{"id":"2563001426","title":"MIT研发可溶解固态电解质,电动车电池可像“棉花糖遇水”一样快速溶解","url":"https://stock-news.laohu8.com/highlight/detail?id=2563001426","media":"IT之家","labels":[],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2563001426?lang=zh_cn&edition=full","pubTime":"2025-08-30 12:02","pubTimestamp":1756526575,"startTime":"0","endTime":"0","summary":"IT之家 8 月 30 日消息,科技媒体 NoteBookCheck 昨日发布博文,报道称麻省理工学院团队成功研发新型固态电解质,浸入有机溶剂后数分钟,就能像棉花糖般溶解,让电动汽车电池更易于拆解和回收。IT之家援引博文介绍,MIT 团队希望解决电动汽车快速增长带来的电子废弃物问题,因此研发了一种可自组装的固态电解质材料,其核心特性是可在有机溶剂中迅速分解,从而实现电池的整体拆解与回收,相关成果发表在《自然化学》期刊上。","market":"sh","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":null,"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"https://tech.ifeng.com/c/8mEgWZyfHxA","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"1","news_top_title":null,"news_tag":"","news_rank":0,"length":0,"strategy_id":0,"source":"fenghuang_stock","symbols":["MIT","159796"],"gpt_icon":0},{"id":"2562031103","title":"企业级AI冰火两重天?报告:重视“影子AI经济”","url":"https://stock-news.laohu8.com/highlight/detail?id=2562031103","media":"第一财经","labels":[],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2562031103?lang=zh_cn&edition=full","pubTime":"2025-08-28 19:40","pubTimestamp":1756381200,"startTime":"0","endTime":"0","summary":"在企业受困于AI现阶段低投资回报率的同时,MIT的研究却发现,企业员工个人对大语言模型工具的使用却极为活跃,“影子AI经济”正在蓬勃发展。这份基于300项公开的企业AI案例分析的报告还显示,企业半数以上AI预算被用于销售和营销工具。不仅仅是MIT,摩根士丹利近期的一份报告也从侧面印证了“AI革命并未失败”的观点。","market":"us","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":{"source":"tencent","url":"http://gu.qq.com/resources/shy/news/detail-v2/index.html#/?id=nesSN202508281943399502d7b3&s=b","rn_cache_url":null,"customStyle":"body{padding-top:10px;}#news_title{font-weight:bold;#titleStyle#;}#news_description span{font-size:12px;#descriptionStyle#;}.footer-note{#statement#}","selectors":".mod-LoadTzbdNews, body","filters":".relate-stock, .hot-list, .recom-box, .wx-sou","directOrigin":true},"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"http://gu.qq.com/resources/shy/news/detail-v2/index.html#/?id=nesSN202508281943399502d7b3&s=b","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"0","news_top_title":null,"news_tag":"","news_rank":0,"length":0,"strategy_id":0,"source":"tencent","symbols":["MSFT","AMZN","FT","MIT","TSLA"],"gpt_icon":0},{"id":"2560149088","title":"美股大跌的导火索,这篇MIT的报告有什么特别?","url":"https://stock-news.laohu8.com/highlight/detail?id=2560149088","media":"华尔街见闻","labels":[],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2560149088?lang=zh_cn&edition=full","pubTime":"2025-08-20 08:45","pubTimestamp":1755650709,"startTime":"0","endTime":"0","summary":"MIT报告发现,高达95%的企业从其生成式AI投资中获得的回报为零。在美股估值高企之际,这一结论叠加Altman近期关于“投资者过于兴奋”可能正在形成AI泡沫的言论,严重打击了市场信心,让投资者开始重新审视支撑本轮大涨的核心逻辑——AI能否真正、快速地转化为企业利润。","market":"sg","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":{"source":null,"url":"https://wallstreetcn.com/articles/3753678","rn_cache_url":null,"directOrigin":true},"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"https://wallstreetcn.com/articles/3753678","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"-1","news_top_title":null,"news_tag":"","news_rank":0,"length":0,"strategy_id":0,"source":null,"symbols":["UVXY","SVXY","TVIX","VIXmain","MIT","VXMmain","VIXY","M11.SI","BK6515","BK6062"],"gpt_icon":1},{"id":"2559940735","title":"MIT首次揭示石墨辐射损伤全周期变化,破解核反应堆材料寿命密码","url":"https://stock-news.laohu8.com/highlight/detail?id=2559940735","media":"市场资讯","labels":[],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2559940735?lang=zh_cn&edition=full","pubTime":"2025-08-16 17:12","pubTimestamp":1755335520,"startTime":"0","endTime":"0","summary":"近日,麻省理工学院研究团队与合作者揭示了石墨材料特性与其辐射响应行为之间的关联。这项突破有望为全球核反应堆用石墨材料寿命预测提供更精准、非破坏性的新方法。如今,石墨不仅是众多现役核反应堆的关键组件,更被列为熔盐堆、高温气冷堆等新一代反应堆设计的核心材料。体积涨缩的根源在于孔隙率变化与晶格应力改变。研究者们将本论文视为推动未来核反应堆石墨材料研发与应用的重要基石。","market":"hk","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":null,"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"https://finance.sina.com.cn/stock/t/2025-08-16/doc-infmenqc1801620.shtml","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"0","news_top_title":null,"news_tag":"","news_rank":0,"length":0,"strategy_id":0,"source":"sina","symbols":["M11.SI","BK6515","MIT","BK6062"],"gpt_icon":0},{"id":"2516944648","title":"【格芯与MIT达成半导体研发合作协议 首批项目将导入硅光子技术】格芯宣布同麻省理工学院MIT达成一项新的主研究协议,双方将共同追求进步和创新,以提高关键半导体技术的性能和效率。首批项目预计将基于格芯的22nm FD-SOI工艺22FDX和差异化硅光子技术。(科创板日报)","url":"https://stock-news.laohu8.com/highlight/detail?id=2516944648","media":"金融界","labels":["corporation"],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2516944648?lang=zh_cn&edition=full","pubTime":"2025-03-04 14:54","pubTimestamp":1741071263,"startTime":"0","endTime":"0","summary":"格芯宣布同麻省理工学院MIT达成一项新的主研究协议,双方将共同追求进步和创新,以提高关键半导体技术的性能和效率。首批项目预计将基于格芯的22nm FD-SOI工艺22FDX和差异化硅光子技术。(科创板日报)","market":"sh","thumbnail":"","type":0,"news_type":0,"thumbnails":[],"rights":null,"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"https://24h.jrj.com.cn/2025/03/04145448505559.shtml","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"1","news_top_title":null,"news_tag":"corporation","news_rank":0,"length":0,"strategy_id":0,"source":"jinrongjie_stock","symbols":["159582","159982","MIT"],"gpt_icon":0},{"id":"2516368430","title":"格芯、MIT达成半导体研发合作协议,首批项目将导入硅光子技术","url":"https://stock-news.laohu8.com/highlight/detail?id=2516368430","media":"IT之家","labels":["corporation"],"top":-1,"itemType":null,"share":"https://www.laohu8.com/m/news/2516368430?lang=zh_cn&edition=full","pubTime":"2025-03-03 19:03","pubTimestamp":1740999813,"startTime":"0","endTime":"0","summary":"IT之家 3 月 3 日消息,格芯 GlobalFoundries 当地时间 27 日宣布同麻省理工学院 MIT 达成一项新的主研究协议,双方将共同追求进步和创新,以提高关键半导体技术的性能和效率。格芯与 MIT 双方新一轮合作的研究重点将是 AI 和其它应用,首批项目预计将基于格芯的 22nm FD-SOI 工艺 22FDX和差异化硅光子技术。格芯首席技术官 Gregg Bartlett表示,通过将麻省理工学院的世界知名能力与格芯领先的半导体平台相结合,我们将推动格芯 AI 基本芯片技术的重大研究进展。","market":"sh","thumbnail":null,"type":0,"news_type":0,"thumbnails":[],"rights":null,"property":[],"language":"zh","translate_title":"","themeId":null,"theme_name":"","theme_type":"","isJumpTheme":false,"source_url":"https://tech.ifeng.com/c/8hQTm9V40Tw","is_publish_highlight":false,"source_rank":0,"column":"","sentiment":"1","news_top_title":null,"news_tag":"corporation","news_rank":0,"length":0,"strategy_id":0,"source":"fenghuang_stock","symbols":["MIT","159582"],"gpt_icon":0}],"profile":{"stockEarnings":[{"period":"1week","weight":0},{"period":"1month","weight":0},{"period":"3month","weight":0},{"period":"6month","weight":0},{"period":"1year","weight":0},{"period":"ytd","weight":0}],"compareEarnings":[{"period":"1week","weight":-0.002},{"period":"1month","weight":0.0015},{"period":"3month","weight":0.0293},{"period":"6month","weight":0.0839},{"period":"1year","weight":0.139},{"period":"ytd","weight":0.0128}],"compareStock":{"symbol":"SPY","name":"标普500ETF"},"description":"Mason Industrial Technology, Inc.于2020年8月31日在特拉华州注册成立。该公司是一家空白支票公司,其目的是进行合并,股份交换,资产收购,股票购买,资本重组, 与一个或多个企业或实体进行重组或其他类似的企业合并。","exchange":"NYSE","name":"Mason Industrial Technology Inc","nameEN":"Mason Industrial Technology Inc"},"APP":{"userAgent":"Mozilla/5.0 AppleWebKit/537.36 (KHTML, like Gecko; compatible; ClaudeBot/1.0; +claudebot@anthropic.com)","isDev":false,"isTTM":false,"tenantId":"TBCN","deviceId":"web-server-community-laohu8-v3","version":"4.36.2","shortVersion":"4.36.2","platform":"web","vendor":"web","appName":"laohu8","isIOS":false,"isAndroid":false,"isTiger":false,"isTHS":false,"isWeiXin":false,"isWeiXinMini":false,"isWeiBo":false,"isQQ":false,"isBaiduSwan":false,"isBaiduBox":false,"isDingTalk":false,"isToutiao":false,"isOnePlus":false,"isHuaWei":false,"isXiaomi":false,"isXiaomiWebView":false,"isOppo":false,"isVivo":false,"isSamsung":false,"isMobile":false},"pagemeta":{"title":"Mason Industrial Technology Inc(MIT)_个股概要_股票价格_最新资讯_行情走势_历史数据","description":"美港股上老虎。老虎社区提供Mason Industrial Technology Inc(MIT)今日价格,行情走势,历史数据,股票概要及实时的新闻资讯,近期大事等重要参考决策数据。","keywords":"Mason Industrial Technology Inc,MIT,Mason Industrial Technology Inc股票,Mason Industrial Technology Inc股票老虎,Mason Industrial Technology Inc股票老虎国际,Mason Industrial Technology Inc行情,Mason Industrial Technology Inc股票行情,Mason Industrial Technology Inc股价,Mason Industrial Technology Inc股市,Mason Industrial Technology Inc股票价格,Mason Industrial Technology Inc股票交易,Mason Industrial Technology Inc股票购买,Mason Industrial Technology Inc股票实时行情,购买美股,购买港股,港股开户,美股开户,美股交易,港股交易,开通美港股账户,老虎国际行情","social":{"og_title":"Mason Industrial Technology Inc(MIT)_个股概要_股票价格_最新资讯_行情走势_历史数据","og_description":"美港股上老虎。老虎社区提供Mason Industrial Technology Inc(MIT)今日价格,行情走势,历史数据,股票概要及实时的新闻资讯,近期大事等重要参考决策数据。","og_image":"https://static.tigerbbs.com/a0b84b8debbbce3b4440f7fdd5eed2e7"}}}