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单位名称西安交通大学第一附属医院
注册所在地陕西省西安市雁塔区雁塔西路277号注册类型国家事业单位
注册资本14500万单位隶属国家卫生健康委员会
所属国民经济行业Q-8411综合医院企业规模院本部编制床位2600张,医疗医技科室58个,国家临床重点专科14个
单位特性公立医院
单位资质集医疗、教学、科研、康复、预防保健为一体国家卫生健康委员会委管的大型综合性三级甲等医院
单位人员情况(承担单位)
员工人数81其中:直接从事研发人员数78占员工总数比例96%
其中:本科以上研发人员数78占员工总数比例96%
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项目名称微创化手术智能导航平台建设
项目实施地点西安交通大学雁塔校区(含第一附属医院)
开始日期2024年1月1日结束日期2026年12月31日
项目总投资380(万元)其中:申请专项经费80(万元)
项目负责人吴荣谦电子邮箱rwu001@mail.xjtu.edu.cn
手机号码18629053941办公电话18629053941
依托基地平台:(最多选三项)□工程技术研究中心☑重点实验室 □临床医学研究中心□科技创新团队□工程实验室 ☑工程研究中心 □企业技术中心 □四主体一联合□国合基地 □软科学基地 □技术创新中心 □野外观测站□产业技术研究院
基地平台名称1外科重症与生命支持教育部重点实验室
基地平台名称2精准外科与再生医学国家地方联合工程中心
基地平台名称3陕西省再生医学与外科工程研究中心
查新关键词(用英文分号分开,3-5个)微创腹腔镜手术;手术术中影像;多模融合导航;MR融合可视化;手术辅助
合作单位信息
序号单位名称单位地址项目负责人联系电话
1苏州英赛飞影医疗科技有限公司苏州市高新区嘉陵江路198号太湖云谷8号楼303室孟凡18930838087
2西安交通大学未来技术学院陕西省西安市咸宁西路28号王小华18745101059
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"type": "text", "content": "会,尤其是与“一带一路”沿线国家的医疗机构合作。这包括与国际医疗机构进行技术交流、", "score": 1.0 } ] }, { "bbox": [ 88, 189, 505, 201 ], "spans": [ { "bbox": [ 88, 189, 505, 201 ], "type": "text", "content": "共同研发项目、以及医疗服务和产品的出口。此外,研究院将参与国际医疗博览会和学术会", "score": 1.0 } ] }, { "bbox": [ 89, 211, 252, 222 ], "spans": [ { "bbox": [ 89, 211, 252, 222 ], "type": "text", "content": "议,以提升其国际知名度和影响力。", "score": 1.0 } ] } ] }, { "bbox": [ 110, 233, 239, 248 ], "type": "title", "angle": 0, "index": 2, "lines": [ { "bbox": [ 110, 234, 239, 247 ], "spans": [ { "bbox": [ 110, 234, 239, 247 ], "type": "text", "content": "4.3 项目、人才、基地统筹", "score": 1.0 } ] } ] }, { "bbox": [ 88, 258, 506, 484 ], "type": "list", "angle": 0, "index": 6, "blocks": [ { "bbox": [ 88, 258, 506, 333 ], "type": "text", "angle": 0, "index": 3, "lines": [ { "bbox": [ 108, 259, 505, 271 ], "spans": [ { "bbox": [ 108, 259, 505, 271 ], "type": "text", "content": "4.3.1 项目管理实施严格的项目管理制度将包括制定详细的项目计划,明确项目的里程", "score": 1.0 } ] }, { "bbox": [ 89, 280, 505, 290 ], "spans": [ { "bbox": [ 89, 280, 505, 290 ], "type": "text", "content": "碑和关键绩效指标(KPIs)。项目管理团队将负责监控项目进度,确保按照既定时间表和预", "score": 1.0 } ] }, { "bbox": [ 89, 300, 505, 312 ], "spans": [ { "bbox": [ 89, 300, 505, 312 ], "type": "text", "content": "算推进。此外,定期的项目评审会议将被用来评估进展,解决问题,并在必要时进行调整。", "score": 1.0 } ] }, { "bbox": [ 89, 321, 369, 333 ], "spans": [ { "bbox": [ 89, 321, 369, 333 ], "type": "text", "content": "采用项目管理软件和工具来跟踪项目状态,提高效率和沟通。", "score": 1.0 } ] } ] }, { "bbox": [ 88, 343, 506, 418 ], "type": "text", "angle": 0, "index": 4, "lines": [ { "bbox": [ 109, 344, 505, 357 ], "spans": [ { "bbox": [ 109, 344, 505, 357 ], "type": "text", "content": "4.3.2 人才培养与引进计划与西安交通大学紧密合作,建立人才培养计划,旨在培养下", "score": 1.0 } ] }, { "bbox": [ 89, 364, 506, 377 ], "spans": [ { "bbox": [ 89, 364, 506, 377 ], "type": "text", "content": "一代医疗科技领域的领导者和创新者。这包括为学生和研究人员提供实践机会,如参与实验", "score": 1.0 } ] }, { "bbox": [ 89, 386, 505, 397 ], "spans": [ { "bbox": [ 89, 386, 505, 397 ], "type": "text", "content": "室研究、临床试验和项目管理。同时,将积极引进国内外顶尖专家,以加强研究团队的专业", "score": 1.0 } ] }, { "bbox": [ 88, 406, 149, 419 ], "spans": [ { "bbox": [ 88, 406, 149, 419 ], "type": "text", "content": "知识和经验。", "score": 1.0 } ] } ] }, { "bbox": [ 88, 429, 506, 484 ], "type": "text", "angle": 0, "index": 5, "lines": [ { "bbox": [ 110, 431, 504, 442 ], "spans": [ { "bbox": [ 110, 431, 504, 442 ], "type": "text", "content": "4.3.3 基地建设研究基地的建设将重点配备先进的实验室和研发设施,以支持高水平的", "score": 1.0 } ] }, { "bbox": [ 89, 451, 505, 462 ], "spans": [ { "bbox": [ 89, 451, 505, 462 ], "type": "text", "content": "医疗科学研究。这包括但不限于最新的医学成像设备、生物信息学分析工具、临床试验设施", "score": 1.0 } ] }, { "bbox": [ 89, 471, 484, 483 ], "spans": [ { "bbox": [ 89, 471, 484, 483 ], "type": "text", "content": "等。实验室将配置高性能计算资源和大数据分析平台,支持复杂数据处理和算法开发。", "score": 1.0 } ] } ] } ], "sub_type": "text" }, { "bbox": [ 110, 495, 305, 509 ], "type": "title", "angle": 0, "index": 7, "lines": [ { "bbox": [ 110, 495, 306, 508 ], "spans": [ { "bbox": [ 110, 495, 306, 508 ], "type": "text", "content": "4.4 预期取得的知识产权、技术标准分析", "score": 1.0 } ] } ] }, { "bbox": [ 88, 519, 506, 554 ], "type": "text", "angle": 0, "index": 8, "lines": [ { "bbox": [ 110, 521, 505, 533 ], "spans": [ { "bbox": [ 110, 521, 505, 533 ], "type": "text", "content": "4.4.1 知识产权战略将集中在保护医智慧研究院在医疗数据处理和智能诊断算法等关键", "score": 1.0 } ] }, { "bbox": [ 89, 542, 241, 553 ], "spans": [ { "bbox": [ 89, 542, 241, 553 ], "type": "text", "content": "技术领域的创新。具体策略包括:", "score": 1.0 } ] } ] }, { "bbox": [ 88, 564, 506, 598 ], "type": "text", "angle": 0, "index": 9, "lines": [ { "bbox": [ 111, 565, 505, 577 ], "spans": [ { "bbox": [ 111, 565, 505, 577 ], "type": "text", "content": "专利申请:积极申请国内外专利,保护研究院开发的独特技术和方法,尤其是在人工智", "score": 1.0 } ] }, { "bbox": [ 90, 587, 315, 597 ], "spans": [ { "bbox": [ 90, 587, 315, 597 ], "type": "text", "content": "能驱动的诊断工具、数据分析方法和治疗技术上。", "score": 1.0 } ] } ] }, { "bbox": [ 108, 609, 484, 624 ], "type": "text", "angle": 0, "index": 10, "lines": [ { "bbox": [ 110, 610, 484, 622 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贡献与领导:积极贡献研究院的研究成果和专业知识,领导或参与关键标准的制定,如医疗数据交换、患者隐私保护和人工智能应用等。标准实施:在研究院内部实施这些标准,展示其有效性,并作为案例研究分享。4.4.3 国际合作与竞争寻求与国际知名医疗研究机构的合作,共享资源,共同推进医疗技术的发展。
5、考核指标(限800字)
专利成果方面,本项目预计申请并获得至少2项授权发明专利,这些发明专利将围绕平台的核心技术,如智能导航算法、手术设备的创新设计等领域。此外,项目还旨在申请并获得3项实用新型专利,这将涉及平台的实用性改进,如用户界面设计、硬件优化等方面。这些专利不仅证明了项目在技术创新方面的实力,也为后续的技术应用和市场推广打下了坚实的基础。学术论文发表方面,本项目计划在国际知名的学术期刊上发表至少5篇被SCI索引收录的论文,这些论文将详细阐述项目在智能手术导航技术、临床应用研究等方面的最新发现和研究成果。同时,项目还预计在相关学术期刊上发表3篇被EI索引收录的论文,进一步证明了项目在工程技术领域的实用价值和创新性。这些高质量的学术论文不仅提升了项目的学术影响力,也为医疗领域的科研人员和实践者提供了宝贵的参考和启示。人才引进方面,本项目致力于引进3名高层次人才,包括2名博士或博士后研究人员和1名硕士研究人员。这些人才将在智能手术导航技术的研发、临床应用研究和项目管理等多个方面发挥关键作用。博士和博士后人才的引进,将为项目带来最前沿的科研理念和深厚的专业知识,而硕士级人才则将为项目的具体执行和技术实现提供强有力的支持。通过这样的人才结构,项目不仅能够保持科技创新的活力,还能确保研究成果的有效转化和实际应用。社会影响力方面,本项目不仅致力于科技创新和学术贡献,还计划在提升项目的社会认知度和影响,为此项目将积极参与国家级和省部级的路演活动,通过这些公开平台展示项目成果,与行业领袖、投资者及合作伙伴进行交流。获得至少5项来自科技创新、医疗健康领域的专业机构或者相关行业协会、学校认可的专业实践创新类赛事。通过在这些重要场合展示项目的创新性和实用价值,显著提升项目的社会认可度和品牌影响力,进一步促进项目成果的应用和推广。
", "image_path": "aef5676f30a2ab2e89f3173f2dc21df128cd722c0730e162b26dd325d78fec48.jpg" } ] } ], "index": 0, "angle": 0, "type": "table_body" } ], "index": 0 } ], "discarded_blocks": [ { "bbox": [ 293, 781, 301, 790 ], "type": "page_number", "angle": 0, "index": 1, "lines": [ { "bbox": [ 293, 781, 301, 792 ], "spans": [ { "bbox": [ 293, 781, 301, 792 ], "type": "text", "content": "7", "score": 1.0 } ] } ] } ], "page_size": [ 595, 841 ], "page_idx": 7 }, { "para_blocks": [ { "bbox": [ 70, 90, 185, 106 ], "type": "title", "angle": 0, "index": 0, "lines": [ { "bbox": [ 71, 90, 185, 107 ], "spans": [ { "bbox": [ 71, 90, 185, 107 ], "type": "text", "content": "四、项目人员情况", "score": 1.0 } ] } ] }, { "type": "table", "bbox": [ 77, 107, 772, 502 ], "blocks": [ { "bbox": [ 77, 107, 772, 502 ], "lines": [ { "bbox": [ 77, 107, 772, 502 ], "spans": [ { "bbox": [ 77, 107, 772, 502 ], "type": "table", "html": "
项目人数
项目组人员总数32人
高级职称16人中级职称8人初级职称0人其他8人
博士19人硕士7人学士2人其他0人
项目负责人
姓名出生年月证件类型证件号码性别从事专业职称职务学历所在单位项目分工手机签名
吴荣谦1971.12护照521547860科研教授副主任博士精准外科与再生医学国家地方联合工程中心副主任、中国医学装备协会转化医学分会委员、陕西省医工融合产业技术创新战略联盟专家委员会副主任等。主要研究方向为外科重症、医工结合外科技术创新。在美国期间(2001/10-2015/8),作为项目负责人(Principal Investigator,PI)主持过5项美国NIH基金项目、1项美国心脏病协会基金项目和1项美国国防部基金项目,累计科研经费>750万美元。回国后,已主持4项国家自然科学基金项目和多项陕西省医工交叉项目。迄今为止,发表SCI论文170余篇,包括重症与外科领域的顶级期刊American Journal of Respiratory and Critical Care Medicine、Annals of Surgery等,H因子39,被引频次>4800,ESI高被引论文1篇。授权国家发明专利15项、软件著作权1项。获得中华医学科技奖一等奖1项(排名第2)、华夏医学奖卫生管理奖1项(排名第2)、陕西省科学技术进步二等奖2项(排名第1和第6)、西安市科学技术进步二等奖1项(排名第1)、陕西高等学校科学技术一等奖2项(排名第1和第3)。
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主要研究人员
姓名出生年月证件类型证件号码性别从事专业职称职务学历所在单位项目分工手机签名
张谓丰1982.01身份证610402198201255195医疗教授副院长博士西安交通大学第一附属医院统筹课题运作、临床论证13359260373
马锋1979.04身份证610121197904205571医技主管技师硕士西安交通大学第一附属医院制定实施方案13038935250
卫荣1980.06身份证612102198006233711医技副主任技师副主任硕士西安交通大学第一附属医院信息技术支持13324573372
刘学民1972.01身份证610103197201023250医疗主任医师腔镜中心主任博士西安交通大学第一附属医院临床论证18991232502
杨健1970.11身份证610113197011181613医技主任医师/教授/研究员影像科主任博士西安交通大学第一附属医院影像分析处理18991232396
张云锋1970.10身份证610113197010230452医疗主任医师胸外科副主任博士西安交通大学第一附属医院临床论证13891896986
牛刚1974.03身份证61010319740306363X医技主任医师副主任博士西安交通大学第一附属医院影像分析处理18991232596
张琳娟1973.02身份证610113197302140504医疗副主任护师麻醉手术部副主任本科西安交通大学第一附属医院手术室设备协调13891435609
樊林1973.10身份证61010419731021831X医疗主任医师副主任博士西安交通大学第一附属医院临床论证13709190151
马磊1986.07身份证610426198607210511医疗副主任护师腔镜组长硕士西安交通大学第一附属医院手术室设备协调13484556715
张勇1978.07身份证610523197807266078医疗副主任医师胸外科副主任博士西安交通大学第一附属医院临床论证18991232612
李宇1982.02身份证510213198202198916医疗副主任医师博士西安交通大学第一附属医院临床论证13186058600
秦思达1986.12身份证610103198612253637医疗副主任医师博士西安交通大学第一附属医院临床论证15388666585
孙欣1987.03身份证610402198703193895医疗副研究员博士西安交通大学第一附属医院临床论证18220572193
杜宁1982.07身份证610103198207292819医疗主治医师博士西安交通大学第一附属医院临床论证13571958668
张伯翔1987.10身份证610103198710143634医疗副研究员博士西安交通大学第一附属医院临床论证13379002177
许崇文1986.07身份证371102198607305716医疗主治医师博士西安交通大学第一附属医院临床论证18991213556
彭子洋1996.02身份证610302199602070510学生博士研究生西安交通大学未来技术学院课题策划,统筹组织17809212035
王志博2001.11身份证230103200111144212学生博士研究生西安交通大学未来技术学院课题策划,统筹组织13946112059
王蕾1997.03身份证610402199703121204学生博士研究生西安交通大学未来技术学院课题策划,统筹组织15509102217
李翔1993.07身份证610122199307020021医疗助理研究员博士西安交通大学第一附属医院临床论证18291956601
李凯1995.04身份证610113199504160414医疗助理研究员博士西安交通大学第一附属医院临床论证13279261286
官煜1991.04身份证610582199104110017医疗主管护理师本科西安交通大学第一附属医院手术室设备协调15619006556
梁利斌1992.05身份证140227199205042312科研助理教授博士西安交通大学生命学院导航技术支持13001265711
张博1985.06身份证610502198506140423高级工程师硕士西安交通大学生命学院VR技术支持13892835012
宋伟伦1991.03身份证610103199103201630机械电子工程中级工程师博士研究生西安交通大学第一附属医院磁定位技术及腔镜技术18710973403
孟凡1984.07身份证610113198407118439仪器仪表总经理博士苏州英赛飞影医疗科技有限公司内窥镜设计18930838087
冯钊1985.09身份证610104198509010633计算机技术总监博士苏州英赛飞影医疗科技有限公司内窥镜设计18066880020
王娟娟1998.06身份证410522199806154723学生硕士研究生西安交通大学基础医学院材料撰写18845166343
徐庶钦1997.12身份证41020 21997 12011 017学生硕士研究生西安交通大学第一附属医院数据整理18337840990
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阶段开始日期结束日期计划完成内容
第1阶段2024.01.012024.5.31购置软硬件设备,建立健全运行管理的体制机制,完成临床前基础研究工作及软硬件平台测试,完善伦理申报等工作。
第2阶段2024.06.012025.06.31手术智能导航平台在临床外科手术术前规划、术中导航等方面取得一系列进展,根据临床实际应用反馈做到硬件迭代,优化算法,扩大临床应用场景及应用规模,并在智能化导航医疗装备设备研发与临床应用方面取得高水平标志性成果,专利申报。
第3阶段2025.07.012026.07.31解决医疗领域关键核心技术难题,参与学术交流,在全国范围内进行平台成果转化推广会,进一步扩大临床应用场景,为更多的医院提供规模化的服务,推动产学研融合,发表高质量文章。
第4阶段2026.08.012026.12.31推广相关产品,建立行业标准,带动智能化手术导航产业高端化发展,完成项目考核指标,准备结题验收材料。
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一级指标类别二级指标类别明细指标预期绩效目标
1、专利授权数(项)5
(1)授权发明专利2
(2)实用新型3
(3)外观设计0
2、软件著作权授权数(项)0
3、发表论文(篇)8
(1)其中SCI索引收录数5
(2)其中EI索引收录数3
4、著作(部)0
5、制订标准数(项)0
(1)国际标准0
(2)国家标准0
(3)行业标准0
(4)地方标准0
(5)企业标准0
其他成果1、填补技术空白数\\
(1)国际
(2)国家
(3)省级
2、获奖项数\\
(1)国家奖项
(2)部、省奖项
(3)地市级奖项
3、其他科技成果产出\\
(1)新工艺(或新方法模式)
(2)新产品(含农业新品种)
(3)新材料
(4)新装备(装置)
(5)平台/基地/示范点
(6)中试线
(7)生产线
4、研究开发情况\\
(1)小试
(2)中试(样品样机)
(3)小批量
(4)规模化生产
人才引育1、引进高层次人才3
(1)博士、博士后2
(2)硕士1
2、培养高层次人才8
(1)博士、博士后3
(2)硕士5
产业化情况新增产能(台/套/只等)/
新增产能利用率%/
效果类指标经济效益1、新增产值(万元)0
2、新增销售(万元)0
3、新增出口创汇(万美元)0
4、新增利润(万元)0
社会效益1、新增税收(万元)0
2、新增就业人数0
其中:本科以上就业人数0
3、就业培训(人次)0
4、带动农民增收(万元)0
5、农户培训(人次)0
6、新增产业带动情况(列举情况)/
7、技术集成示范(项)0
8、建立农业示范基地(亩数)0
9、节约资源能源(列举)0
10、环保效益/
其他需要说明的情况
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"bbox": [ 89, 425, 180, 439 ], "spans": [ { "bbox": [ 89, 425, 180, 439 ], "type": "text", "content": "巨大的市场潜力。", "score": 1.0 } ] } ] }, { "bbox": [ 86, 448, 506, 625 ], "type": "text", "angle": 0, "index": 5, "lines": [ { "bbox": [ 112, 449, 505, 461 ], "spans": [ { "bbox": [ 112, 449, 505, 461 ], "type": "text", "content": "结合国际与国内的研究现状,当前微创化手术智能导航平台的立项具有重要", "score": 1.0 } ] }, { "bbox": [ 89, 471, 505, 486 ], "spans": [ { "bbox": [ 89, 471, 505, 486 ], "type": "text", "content": "性。首先,该项目响应了全球医疗科技的发展趋势,尤其是在人工智能和机器人", "score": 1.0 } ] }, { "bbox": [ 88, 494, 505, 509 ], "spans": [ { "bbox": [ 88, 494, 505, 509 ], "type": "text", "content": "技术在医疗领域的应用上。其次,立项能够促进医疗技术的创新,特别是提高手", "score": 1.0 } ] }, { "bbox": [ 89, 518, 504, 532 ], "spans": [ { "bbox": [ 89, 518, 504, 532 ], "type": "text", "content": "术安全性和效率,满足临床医生对手术精确度和操作便捷性的需求。此外,项目", "score": 1.0 } ] }, { "bbox": [ 88, 540, 506, 555 ], "spans": [ { "bbox": [ 88, 540, 506, 555 ], "type": "text", "content": 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"content": "同时利用现有手段快速止血,避免延长手术时间,减少对患者的损伤。如图9所", "score": 1.0 } ] }, { "bbox": [ 88, 673, 506, 687 ], "spans": [ { "bbox": [ 88, 673, 506, 687 ], "type": "text", "content": "示为复杂微创术中血管及器械智能识别结果图,可见实时术中进程识别与应急状", "score": 1.0 } ] }, { "bbox": [ 88, 697, 337, 710 ], "spans": [ { "bbox": [ 88, 697, 337, 710 ], "type": "text", "content": "况探查方法可对于手术潜在损伤进行有效探查。", "score": 1.0 } ] } ] }, { "bbox": [ 86, 719, 508, 759 ], "type": "text", "angle": 0, "index": 6, "lines": [ { "bbox": [ 110, 720, 506, 734 ], "spans": [ { "bbox": [ 110, 720, 506, 734 ], "type": "text", "content": "术中空气栓塞指手术过程中气体进入静脉或动脉系统,可引起低氧血症、高", "score": 1.0 } ] }, { "bbox": [ 89, 744, 505, 757 ], "spans": [ { "bbox": [ 89, 744, 505, 757 ], "type": "text", "content": "碳酸血症,严重时会导致肺动脉栓塞、心衰等并发症,最佳治疗方式是迅速而有", "score": 1.0 } ] } ] } ], "discarded_blocks": [ { "bbox": [ 291, 781, 302, 790 ], "type": "page_number", "angle": 0, "index": 7, "lines": [ { "bbox": [ 290, 780, 304, 794 ], "spans": [ { "bbox": [ 290, 780, 304, 794 ], 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"分析算法在深度估计、语义分割和组织及工具定位等方面的性能不佳。目前腹腔", "score": 1.0 } ] }, { "bbox": [ 89, 398, 504, 412 ], "spans": [ { "bbox": [ 89, 398, 504, 412 ], "type": "text", "content": "镜主要利用疏散技术排烟等物理方式解决术中烟雾问题,这种方式需要对于现有", "score": 1.0 } ] }, { "bbox": [ 89, 422, 505, 436 ], "spans": [ { "bbox": [ 89, 422, 505, 436 ], "type": "text", "content": "腹腔镜设备进行额外改造。本平台研发出基于强化学习和小样本监督学习的术中", "score": 1.0 } ] }, { "bbox": [ 89, 445, 503, 459 ], "spans": [ { "bbox": [ 89, 445, 503, 459 ], "type": "text", "content": "影像智能增强模块,以纯算法的方式,实现了术中腹腔镜影像的实时自动去雾,", "score": 1.0 } ] }, { "bbox": [ 90, 469, 504, 481 ], "spans": [ { "bbox": [ 90, 469, 504, 481 ], "type": "text", "content": "使烟雾不再影响微创术中医生的视野。如图10所示为浓雾场景下内窥镜影像图,", "score": 1.0 } ] }, { "bbox": [ 89, 491, 499, 506 ], "spans": [ { "bbox": [ 89, 491, 499, 506 ], "type": "text", "content": "图 11 所示为在术中影像智能增强系统下,内窥镜影像实时自动去雾结果图像,", "score": 1.0 } ] }, { "bbox": [ 89, 514, 396, 529 ], "spans": [ { "bbox": [ 89, 514, 396, 529 ], "type": "text", "content": "可见术中影像智能增强模块可对内窥镜影像进行有效去雾。", "score": 1.0 } ] } ] }, { "bbox": [ 86, 538, 506, 646 ], "type": "text", "angle": 0, "index": 7, "lines": [ { "bbox": [ 110, 539, 504, 552 ], "spans": [ { "bbox": [ 110, 539, 504, 552 ], "type": "text", "content": "同时该系统利用强化学习以及视频间影像的上下文关联性学习,实现了对于", "score": 1.0 } ] }, { "bbox": [ 88, 561, 506, 575 ], "spans": [ { "bbox": [ 88, 561, 506, 575 ], "type": "text", "content": "腹腔镜血污的自动视觉消除。在患者突发出血模糊镜头的状况下,依然可以通过", "score": 1.0 } ] }, { "bbox": [ 89, 585, 506, 599 ], "spans": [ { "bbox": [ 89, 585, 506, 599 ], "type": "text", "content": "算法对术中突发的血污画面进行视觉消除,实现自动去血污效果。通过减少清洗", "score": 1.0 } ] }, { "bbox": [ 89, 608, 506, 622 ], "spans": [ { "bbox": [ 89, 608, 506, 622 ], "type": "text", "content": "镜头的时间,为手术主刀医生争取更多时间处理术中突发事件,为患者救治提供", "score": 1.0 } ] }, { "bbox": [ 88, 631, 168, 645 ], "spans": [ { "bbox": [ 88, 631, 168, 645 ], "type": "text", "content": "有力基础保障。", "score": 1.0 } ] } ] }, { "bbox": [ 86, 655, 292, 669 ], "type": "title", "angle": 0, "index": 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"type": "text", "content": "研制了三种先进的荧光导航手术系统,显著提高了手术中肿瘤定位和规划的", "score": 1.0 } ] }, { "bbox": [ 89, 285, 506, 300 ], "spans": [ { "bbox": [ 89, 285, 506, 300 ], "type": "text", "content": "准确性。首先,开放式荧光手术导航系统通过整合激发和采集组件,提供了高效", "score": 1.0 } ] }, { "bbox": [ 89, 310, 505, 322 ], "spans": [ { "bbox": [ 89, 310, 505, 322 ], "type": "text", "content": "的荧光成像,特别适用于开腹手术中的肿瘤定位。其次,磁锚定荧光专用腹腔镜", "score": 1.0 } ] }, { "bbox": [ 89, 333, 506, 346 ], "spans": [ { "bbox": [ 89, 333, 506, 346 ], "type": "text", "content": "系统结合磁锚定技术和荧光成像,减少了传统腹腔镜手术的切口数量,提高了微", "score": 1.0 } ] }, { "bbox": [ 88, 354, 506, 370 ], "spans": [ { "bbox": [ 88, 354, 506, 370 ], "type": "text", "content": "创性和操作便利性。最后,双通道磁锚定荧光专用腹腔镜的研制,集成了常规彩", "score": 1.0 } ] }, { "bbox": [ 89, 379, 504, 392 ], "spans": [ { "bbox": [ 89, 379, 504, 392 ], "type": "text", "content": "色成像和荧光信号采集,进一步提升了肿瘤识别和区分周围组织的能力。这些系", "score": 1.0 } ] }, { "bbox": [ 88, 401, 506, 417 ], "spans": [ { "bbox": [ 88, 401, 506, 417 ], "type": "text", "content": "统的开发代表了手术技术的重大进步,为提高手术安全性和效率提供了强有力的", "score": 1.0 } ] }, { "bbox": [ 88, 425, 145, 441 ], "spans": [ { "bbox": [ 88, 425, 145, 441 ], "type": "text", "content": "技术支持。", "score": 1.0 } ] } ] }, { "bbox": [ 86, 449, 329, 464 ], "type": "title", "angle": 0, "index": 6, "lines": [ { "bbox": [ 88, 449, 328, 464 ], "spans": [ { "bbox": [ 88, 449, 328, 464 ], "type": "text", "content": "2.5 术中荧光成像结合 AR 明确手术切除路径", "score": 1.0 } ] } ] }, { "type": "image", "bbox": [ 129, 470, 466, 580 ], "blocks": [ { "bbox": [ 129, 470, 466, 580 ], "lines": [ { "bbox": [ 129, 470, 466, 580 ], "spans": [ { "bbox": [ 129, 470, 466, 580 ], "type": "image", "image_path": "658f9429df2e17bac58f780e24f03541e3a620bcd72b941449f46b988bc0e98a.jpg" } ] } ], "index": 7, "angle": 0, "type": "image_body" }, { "bbox": [ 186, 585, 407, 598 ], "lines": [ { "bbox": [ 189, 585, 405, 597 ], "spans": [ { "bbox": [ 189, 585, 405, 597 ], "type": "text", "content": "图 14 术中荧光腔镜功能性解剖区域显像系统", "score": 1.0 } ] } ], "index": 8, "angle": 0, "type": "image_caption" } ], "index": 7 }, { "bbox": [ 86, 606, 508, 692 ], "type": "text", "angle": 0, "index": 9, "lines": [ { "bbox": [ 110, 605, 505, 619 ], "spans": [ { "bbox": [ 110, 605, 505, 619 ], "type": "text", "content": "术中结合超声穿刺定位肿瘤营养血管后染色,进行功能性解剖区域正染、反", "score": 1.0 } ] }, { "bbox": [ 89, 629, 505, 643 ], "spans": [ { "bbox": [ 89, 629, 505, 643 ], "type": "text", "content": "染,利用肿瘤特异的功能性荧光成像技术在术中实时优化术者决策,术中荧光腔", "score": 1.0 } ] }, { "bbox": [ 89, 653, 505, 666 ], "spans": [ { "bbox": [ 89, 653, 505, 666 ], "type": "text", "content": "镜功能性解剖区域显像系统如图 14 所示,其可有效地明确手术切除边界,助力", "score": 1.0 } ] }, { "bbox": [ 89, 676, 192, 690 ], "spans": [ { "bbox": [ 89, 676, 192, 690 ], "type": "text", "content": "临床改进精准术式。", "score": 1.0 } ] } ] } ], "discarded_blocks": [ { "bbox": [ 291, 781, 302, 790 ], "type": "page_number", "angle": 0, "index": 10, "lines": [ { "bbox": [ 290, 780, 304, 793 ], "spans": [ { "bbox": [ 290, 780, 304, 793 ], "type": "text", "content": "29", "score": 1.0 } ] } ] } ], "page_size": [ 595, 841 ], "page_idx": 29 }, { "para_blocks": [ { "type": "image", "bbox": [ 184, 61, 409, 188 ], "blocks": [ { "bbox": [ 184, 61, 409, 188 ], "lines": [ { "bbox": [ 184, 61, 409, 188 ], "spans": [ { "bbox": [ 184, 61, 409, 188 ], "type": "image", "image_path": "8a33105b7d80c5b4f3b413b6081423346f97e3aab6f277a7c0f4d8ae31baba7e.jpg" } ] } ], "index": 0, "angle": 0, "type": "image_body" }, { "bbox": [ 155, 192, 438, 206 ], "lines": [ { "bbox": [ 157, 193, 437, 206 ], "spans": [ { "bbox": [ 157, 193, 437, 206 ], "type": "text", "content": "图 15 基于增强现实技术的术中荧光腔镜三维影像显像系统", "score": 1.0 } ] } ], "index": 1, "angle": 0, "type": "image_caption" } ], "index": 0 }, { "bbox": [ 86, 213, 507, 391 ], "type": "text", "angle": 0, "index": 2, "lines": [ { "bbox": [ 110, 213, 505, 227 ], "spans": [ { "bbox": [ 110, 213, 505, 227 ], "type": "text", "content": "将 AR 技术与术前影像三维重建的 AR 信息融合创新软硬件系统设计,匹配", "score": 1.0 } ] }, { "bbox": [ 89, 238, 506, 251 ], "spans": [ { "bbox": [ 89, 238, 506, 251 ], "type": "text", "content": "术中AR 三维影像与术中实时影像的非同质信息融合定位与配准技术,整体系统", "score": 1.0 } ] }, { "bbox": [ 88, 259, 505, 275 ], "spans": [ { "bbox": [ 88, 259, 505, 275 ], "type": "text", "content": "效果如图 15 所示。利用术前规划好的解剖基准点作为参照物,实时地将手术患", "score": 1.0 } ] }, { "bbox": [ 89, 285, 502, 297 ], "spans": [ { "bbox": [ 89, 285, 502, 297 ], "type": "text", "content": "者脉管系统投影于AR 眼镜中,术中根据抬头唤醒实时明确手术重要解剖部位,", "score": 1.0 } ] }, { "bbox": [ 89, 307, 505, 322 ], "spans": [ { "bbox": [ 89, 307, 505, 322 ], "type": "text", "content": "做到术中肝段界限可视化,更直观地呈现目标肝段的分界线,尤其是对合并肝硬", "score": 1.0 } ] }, { "bbox": [ 88, 330, 504, 344 ], "spans": [ { "bbox": [ 88, 330, 504, 344 ], "type": "text", "content": "化的肝缺血首先进行校正,有效减少术中血管神经损伤,避免医源性二次伤害;", "score": 1.0 } ] }, { "bbox": [ 88, 354, 505, 368 ], "spans": [ { "bbox": [ 88, 354, 505, 368 ], "type": "text", "content": "此外,还可实时提示是否偏移术前规划路径,做到路径矫正与实时分析,优化手", "score": 1.0 } ] }, { "bbox": [ 89, 377, 264, 391 ], "spans": [ { "bbox": [ 89, 377, 264, 391 ], "type": "text", "content": "术流程,造福每一位手术的患者。", "score": 1.0 } ] } ] }, { "type": "image", "bbox": [ 146, 398, 448, 509 ], "blocks": [ { "bbox": [ 146, 398, 448, 509 ], "lines": [ { "bbox": [ 146, 398, 448, 509 ], "spans": [ { "bbox": [ 146, 398, 448, 509 ], "type": "image", "image_path": "e8a178b522e7eecebfe8c233323620dc3ba3af20290328edb08cfe5b69e5b6d5.jpg" } ] } ], "index": 3, "angle": 0, "type": "image_body" }, { "bbox": [ 202, 513, 390, 527 ], "lines": [ { "bbox": [ 205, 514, 389, 527 ], "spans": [ { "bbox": [ 205, 514, 389, 527 ], "type": "text", "content": "图 16 荧光成像下智能识别微小转移灶", "score": 1.0 } ] } ], "index": 4, "angle": 0, "type": "image_caption" } ], "index": 3 }, { "bbox": [ 87, 534, 505, 596 ], "type": "text", "angle": 0, "index": 5, "lines": [ { "bbox": [ 110, 535, 505, 549 ], "spans": [ { "bbox": [ 110, 535, 505, 549 ], "type": "text", "content": "功能性荧光成像技术也可助力术者在术中发现肿瘤多发病灶,结合深度学习", "score": 1.0 } ] }, { "bbox": [ 90, 558, 505, 572 ], "spans": [ { "bbox": [ 90, 558, 505, 572 ], "type": "text", "content": "目标检测算法分析后可有效地发现肉眼难以察觉到的微小转移灶,荧光成像下人", "score": 1.0 } ] }, { "bbox": [ 89, 581, 498, 595 ], "spans": [ { "bbox": [ 89, 581, 498, 595 ], "type": "text", "content": "工智能微小转移灶识别效果如图16所示,可有效实现术中肿瘤病灶精准切除。", "score": 1.0 } ] } ] }, { "bbox": [ 86, 604, 232, 618 ], "type": "title", "angle": 0, "index": 6, "lines": [ { "bbox": [ 88, 605, 232, 618 ], "spans": [ { "bbox": [ 88, 605, 232, 618 ], "type": "text", "content": "2.6 术中微创图文记录模块", "score": 1.0 } ] } ] }, { "bbox": [ 86, 628, 505, 713 ], "type": "text", "angle": 0, "index": 7, "lines": [ { "bbox": [ 110, 629, 505, 642 ], "spans": [ { "bbox": [ 110, 629, 505, 642 ], "type": "text", "content": "医疗文书作为医生进行临床活动主要依据,外科手术记录是临床治疗中最为", "score": 1.0 } ] }, { "bbox": [ 89, 652, 505, 666 ], "spans": [ { "bbox": [ 89, 652, 505, 666 ], "type": "text", "content": "重要的医疗文书之一,如图 17 所示,目前手术文书记录大部分由下级医师手术", "score": 1.0 } ] }, { "bbox": [ 89, 676, 505, 689 ], "spans": [ { "bbox": [ 89, 676, 505, 689 ], "type": "text", "content": "后将信息录入至相关文书写作系统中,但其存在较多缺点,非主刀医师执笔、记", "score": 1.0 } ] }, { "bbox": [ 89, 698, 432, 712 ], "spans": [ { "bbox": [ 89, 698, 432, 712 ], "type": "text", "content": "录内容不精确、字叙述不明了且同质化严重、复制粘贴现象严重。", "score": 1.0 } ] } ] } ], "discarded_blocks": [ { "bbox": [ 291, 781, 302, 790 ], "type": "page_number", "angle": 0, "index": 8, "lines": [ { "bbox": [ 290, 780, 304, 793 ], "spans": [ { "bbox": [ 290, 780, 304, 793 ], "type": "text", "content": "30", "score": 1.0 } ] } ] } ], "page_size": [ 595, 841 ], "page_idx": 30 }, { "para_blocks": [ { "type": "image", "bbox": [ 174, 60, 421, 244 ], "blocks": [ { "bbox": [ 174, 60, 421, 244 ], "lines": [ { "bbox": [ 174, 60, 421, 244 ], "spans": [ { "bbox": [ 174, 60, 421, 244 ], "type": "image", "image_path": "163fff5129e8d7e5415ba2a3b429c1615bc6c57ba9a2fcbbae24df15345eefc0.jpg" } ] } ], "index": 0, "angle": 0, "type": "image_body" }, { "bbox": [ 218, 248, 374, 261 ], "lines": [ { "bbox": [ 221, 249, 374, 261 ], "spans": [ { "bbox": [ 221, 249, 374, 261 ], "type": "text", "content": "图 17 现有文字版外科手术记录", "score": 1.0 } ] } ], "index": 1, "angle": 0, "type": "image_caption" } ], "index": 0 }, { "bbox": [ 86, 269, 507, 423 ], "type": "text", "angle": 0, "index": 2, "lines": [ { "bbox": [ 110, 270, 504, 283 ], "spans": [ { "bbox": [ 110, 270, 504, 283 ], "type": "text", "content": "同时,现有很多诊断项目,如临床病理学诊断、影像学检查、内窥镜检查等,", "score": 1.0 } ] }, { "bbox": [ 89, 293, 505, 307 ], "spans": [ { "bbox": [ 89, 293, 505, 307 ], "type": "text", "content": "早已采用了图文报告的形式且有其规范要求。针对于现有纯文字外科手术记录存", "score": 1.0 } ] }, { "bbox": [ 89, 316, 502, 330 ], "spans": [ { "bbox": [ 89, 316, 502, 330 ], "type": "text", "content": "在的各类问题,平台构建基于外科手术影像记录设备的微创图文手术记录系统,", "score": 1.0 } ] }, { "bbox": [ 88, 339, 506, 354 ], "spans": [ { "bbox": [ 88, 339, 506, 354 ], "type": "text", "content": "构建出如图 18 所示的图文报告,直接反映患者的病变程度及术中处理情况,为", "score": 1.0 } ] }, { "bbox": [ 88, 363, 505, 377 ], "spans": [ { "bbox": [ 88, 363, 505, 377 ], "type": "text", "content": "患者后续治疗提供诊断依据,亦能作为术后医患沟通的主要凭证,减少医患矛盾,", "score": 1.0 } ] }, { "bbox": [ 88, 386, 506, 401 ], "spans": [ { "bbox": [ 88, 386, 506, 401 ], "type": "text", "content": "减少医疗资源的重复与浪费。除此之外,微创图文手术记录能够将专业医生的临", "score": 1.0 } ] }, { "bbox": [ 88, 409, 470, 423 ], "spans": [ { "bbox": [ 88, 409, 470, 423 ], "type": "text", "content": "床经验及手术流程步骤等便捷地传播给其他年轻医生,加强医学生培养。", "score": 1.0 } ] } ] }, { "type": "image", "bbox": [ 141, 431, 454, 666 ], "blocks": [ { "bbox": [ 141, 431, 454, 666 ], "lines": [ { "bbox": [ 141, 431, 454, 666 ], "spans": [ { "bbox": [ 141, 431, 454, 666 ], "type": "image", "image_path": "5ff83cb75f03ab8e96a16940bd18bcebe53be8e8206dc5215fd19e96cb136de0.jpg" } ] } ], "index": 3, "angle": 0, "type": "image_body" }, { "bbox": [ 186, 670, 407, 683 ], "lines": [ { "bbox": [ 189, 671, 405, 683 ], "spans": [ { "bbox": [ 189, 671, 405, 683 ], "type": "text", "content": "图 18 图文报告模块生成的图文外科手术记录", "score": 1.0 } ] } ], "index": 4, "angle": 0, "type": "image_caption" } ], "index": 3 }, { "bbox": [ 86, 691, 507, 753 ], "type": "text", "angle": 0, "index": 5, "lines": [ { "bbox": [ 110, 691, 505, 705 ], "spans": [ { "bbox": [ 110, 691, 505, 705 ], "type": "text", "content": "平台构建出的微创腔镜系统的图文记录模块,可以按照既定手术流程,根据", "score": 1.0 } ] }, { "bbox": [ 89, 715, 505, 729 ], "spans": [ { "bbox": [ 89, 715, 505, 729 ], "type": "text", "content": "外科手术影像记录设备所记录的术中影像,帮助主刀医生快速生成微创图文手术", "score": 1.0 } ] }, { "bbox": [ 88, 738, 505, 752 ], "spans": [ { "bbox": [ 88, 738, 505, 752 ], "type": "text", "content": "报告,系统生成的图文手术记录如图 18 所示;未来项目将以现有海量医疗文书", "score": 1.0 } ] } ] } ], "discarded_blocks": [ { "bbox": [ 291, 781, 301, 790 ], "type": "page_number", "angle": 0, "index": 6, "lines": [ { "bbox": [ 290, 781, 303, 794 ], "spans": [ { "bbox": [ 290, 781, 303, 794 ], "type": "text", "content": "31", "score": 1.0 } ] } ] } ], "page_size": [ 595, 841 ], "page_idx": 31 }, { "para_blocks": [ { "bbox": [ 86, 62, 505, 100 ], "type": "text", "angle": 0, "index": 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"blocks": [ { "bbox": [ 304, 108, 486, 203 ], "lines": [ { "bbox": [ 304, 108, 486, 203 ], "spans": [ { "bbox": [ 304, 108, 486, 203 ], "type": "image", "image_path": "547c60d6087cc62d398c43ffa5aa9c09de61e3ebb3efe4704c9fbf782df1a608.jpg" } ] } ], "index": 3, "angle": 0, "type": "image_body" }, { "bbox": [ 295, 209, 493, 223 ], "lines": [ { "bbox": [ 297, 210, 493, 222 ], "spans": [ { "bbox": [ 297, 210, 493, 222 ], "type": "text", "content": "图 20 术中腔镜图像采集装置结构示意图", "score": 1.0 } ] } ], "index": 4, "angle": 0, "type": "image_caption" } ], "index": 3 }, { "bbox": [ 86, 230, 507, 362 ], "type": "text", "angle": 0, "index": 5, "lines": [ { "bbox": [ 109, 229, 505, 245 ], "spans": [ { "bbox": [ 109, 229, 505, 245 ], "type": "text", "content": "外科手术影像记录设备,如图 19、20 所示,其上通配接口方案可以适配现", "score": 1.0 } ] }, { "bbox": [ 89, 254, 505, 268 ], "spans": [ { "bbox": [ 89, 254, 505, 268 ], "type": "text", "content": "有主流器械厂家的腔镜影像输出模式,实现不同厂家、不同输出端口的腔镜影像", "score": 1.0 } ] }, { "bbox": [ 89, 277, 505, 290 ], "spans": [ { "bbox": [ 89, 277, 505, 290 ], "type": "text", "content": "采集;设备本身带有无线传输模块,实现无线术中影像的传输和储存,并与微创", "score": 1.0 } ] }, { "bbox": [ 89, 301, 505, 314 ], "spans": [ { "bbox": [ 89, 301, 505, 314 ], "type": "text", "content": "图文手术记录系统相连,以方便图文手术报告生成。将构建带有辅助分析功能的", "score": 1.0 } ] }, { "bbox": [ 89, 324, 505, 337 ], "spans": [ { "bbox": [ 89, 324, 505, 337 ], "type": "text", "content": "术中影像分析装置,对于采集到的术中影像进行分析,进一步为微创术中医生提", "score": 1.0 } ] }, { "bbox": [ 89, 347, 205, 361 ], "spans": [ { "bbox": [ 89, 347, 205, 361 ], "type": "text", "content": "供人工智能医疗辅助。", "score": 1.0 } ] } ] }, { "type": "image", "bbox": [ 123, 374, 257, 465 ], "blocks": [ { "bbox": [ 123, 374, 257, 465 ], "lines": [ { "bbox": [ 123, 374, 257, 465 ], "spans": [ { "bbox": [ 123, 374, 257, 465 ], "type": "image", "image_path": "6cd1fda4af07babb0d5562a8b7dda51b50557ca5b69133aab37c6433373840ca.jpg" } ] } ], "index": 6, "angle": 0, "type": "image_body" }, { "bbox": [ 98, 477, 275, 491 ], "lines": [ { "bbox": [ 100, 478, 275, 491 ], "spans": [ { "bbox": [ 100, 478, 275, 491 ], "type": "text", "content": "图 21 组装后术中影像采集按钮组件", "score": 1.0 } ] } ], "index": 7, "angle": 0, "type": "image_caption" } ], "index": 6 }, { "type": "image", "bbox": [ 326, 388, 484, 454 ], "blocks": [ { "bbox": [ 326, 388, 484, 454 ], "lines": [ { "bbox": [ 326, 388, 484, 454 ], "spans": [ { "bbox": [ 326, 388, 484, 454 ], "type": "image", "image_path": "f1b5cd0658475d8e9e19750d88faa167244a1f701624e0e0c578c79bb8580fd8.jpg" } ] } ], "index": 8, "angle": 0, "type": "image_body" }, { "bbox": [ 312, 477, 489, 491 ], "lines": [ { "bbox": [ 314, 478, 489, 491 ], "spans": [ { "bbox": [ 314, 478, 489, 491 ], "type": "text", "content": "图 22 管套式术中影像采集按钮组件", "score": 1.0 } ] } ], "index": 9, "angle": 0, "type": "image_caption" } ], "index": 8 }, { "bbox": [ 86, 498, 508, 606 ], "type": "text", "angle": 0, "index": 10, "lines": [ { "bbox": [ 110, 498, 498, 513 ], "spans": [ { "bbox": [ 110, 498, 498, 513 ], "type": "text", "content": "外科手术影像记录设备配套有术中影像采集按钮组件,如图 21、22 所示,", "score": 1.0 } ] }, { "bbox": [ 90, 523, 504, 535 ], "spans": [ { "bbox": [ 90, 523, 504, 535 ], "type": "text", "content": "以方便外科手术影像记录设备进行术中影像关键帧采集,术前医生将按钮组件安", "score": 1.0 } ] }, { "bbox": [ 89, 545, 506, 560 ], "spans": [ { "bbox": [ 89, 545, 506, 560 ], "type": "text", "content": "装在腔镜影像设备中,术中医生通过按压,实现术中影像关键帧的及时采集,避", "score": 1.0 } ] }, { "bbox": [ 89, 569, 505, 583 ], "spans": [ { "bbox": [ 89, 569, 505, 583 ], "type": "text", "content": "免术中医生需要走到影像采集装置前进行术中影像采集,方便术中医生影像采集", "score": 1.0 } ] }, { "bbox": [ 87, 591, 121, 608 ], "spans": [ { "bbox": [ 87, 591, 121, 608 ], "type": "text", "content": "操作。", "score": 1.0 } ] } ] }, { "type": "image", "bbox": [ 196, 613, 398, 743 ], "blocks": [ { "bbox": [ 196, 613, 398, 743 ], "lines": [ { "bbox": [ 196, 613, 398, 743 ], "spans": [ { "bbox": [ 196, 613, 398, 743 ], "type": "image", "image_path": "8a46bc7811812c906ba6419779fd95e481323ca7ea293d0df509b55e3a207713.jpg" } ] } ], 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"content": "书书写过程中对于既有信息的繁琐复制粘贴工作。微创图文手术记录系统如图", "score": 1.0 } ] }, { "bbox": [ 88, 132, 506, 147 ], "spans": [ { "bbox": [ 88, 132, 506, 147 ], "type": "text", "content": "23 所示,在手术记录增加术中图像相关内容,对纯文字手术记录进行数字化赋", "score": 1.0 } ] }, { "bbox": [ 89, 156, 504, 170 ], "spans": [ { "bbox": [ 89, 156, 504, 170 ], "type": "text", "content": "能,使其更为生动具体,为术后及愈后阶段医生决策提供更为全面的患者信息。", "score": 1.0 } ] } ] }, { "bbox": [ 86, 179, 241, 193 ], "type": "title", "angle": 0, "index": 1, "lines": [ { "bbox": [ 88, 179, 240, 194 ], "spans": [ { "bbox": [ 88, 179, 240, 194 ], "type": "text", "content": "2.7 术后数字化随访定制体系", "score": 1.0 } ] } ] }, { "bbox": [ 86, 202, 506, 311 ], "type": "text", "angle": 0, "index": 2, "lines": [ { "bbox": [ 110, 203, 505, 216 ], "spans": [ { "bbox": [ 110, 203, 505, 216 ], "type": "text", "content": "针对每位患者在诊疗过程中动态的血清学指标、影像学数据以及手术特殊事", "score": 1.0 } ] }, { "bbox": [ 89, 226, 505, 240 ], "spans": [ { "bbox": [ 89, 226, 505, 240 ], "type": "text", "content": 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"本研究旨在研究影像组学特征提取过程中的参数设置如 GLCM 的方向、平", "score": 1.0 } ] }, { "bbox": [ 88, 365, 506, 380 ], "spans": [ { "bbox": [ 88, 365, 506, 380 ], "type": "text", "content": "均策略、对称性和距离、GLRLM 的平均策略、GLSZM 的邻域大小以及NGTDM", "score": 1.0 } ] }, { "bbox": [ 89, 389, 505, 402 ], "spans": [ { "bbox": [ 89, 389, 505, 402 ], "type": "text", "content": "的窗宽 大小对特征鲁棒性的影响,并评估不同参数设置下,影像特征对于肝细", "score": 1.0 } ] }, { "bbox": [ 89, 412, 329, 426 ], "spans": [ { "bbox": [ 89, 412, 329, 426 ], "type": "text", "content": "胞癌的诊断鉴别性能。具体流程如图24所示:", "score": 1.0 } ] } ] }, { "type": "image", "bbox": [ 177, 433, 416, 672 ], "blocks": [ { "bbox": [ 177, 433, 416, 672 ], "lines": [ { "bbox": [ 177, 433, 416, 672 ], "spans": [ { "bbox": [ 177, 433, 416, 672 ], "type": "image", "image_path": "ddfdea8c4b594097f77ae9b1832d545ceea9e2473d0fea5ef8b04adcaffe3fc4.jpg" } ] } ], "index": 5, "angle": 0, "type": "image_body" }, { "bbox": [ 114, 679, 478, 692 ], "lines": [ { "bbox": [ 116, 680, 477, 692 ], "spans": [ { "bbox": [ 116, 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"text", "content": "析,建立了一个包含放射组学评分和与Ki-67指数状态相关的临床因素的列线图。", "score": 1.0 } ] }, { "bbox": [ 89, 179, 498, 193 ], "spans": [ { "bbox": [ 89, 179, 498, 193 ], "type": "text", "content": "利用曲线下面积(AUC)来评估列线图的预测性能。具体的方法如图25所示:", "score": 1.0 } ] } ] }, { "type": "image", "bbox": [ 164, 200, 428, 322 ], "blocks": [ { "bbox": [ 164, 200, 428, 322 ], "lines": [ { "bbox": [ 164, 200, 428, 322 ], "spans": [ { "bbox": [ 164, 200, 428, 322 ], "type": "image", "image_path": "5454ddc9db7517cf6c22b6579d3edc6ba0b136bbc198dffd577714a10e9dfef0.jpg" } ] } ], "index": 1, "angle": 0, "type": "image_body" }, { "bbox": [ 138, 328, 455, 342 ], "lines": [ { "bbox": [ 140, 329, 454, 341 ], "spans": [ { "bbox": [ 140, 329, 454, 341 ], "type": "text", "content": "图 25 增强CT影像组学诺莫图术前预测肝细胞癌KI67指标方法图", "score": 1.0 } ] } ], "index": 2, "angle": 0, "type": "image_caption" } ], "index": 1 }, { "bbox": [ 86, 349, 404, 364 ], "type": "title", "angle": 0, "index": 3, "lines": [ { "bbox": [ 86, 349, 404, 364 ], "spans": [ 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"本项目的核心在于应用先进的人工智能、机器学习、深度学习技术于手术导", "score": 1.0 } ] }, { "bbox": [ 89, 602, 505, 617 ], "spans": [ { "bbox": [ 89, 602, 505, 617 ], "type": "text", "content": "航和决策支持,这一技术创新可以显著提升手术的精度和效率。通过实时分析手", "score": 1.0 } ] }, { "bbox": [ 89, 627, 506, 640 ], "spans": [ { "bbox": [ 89, 627, 506, 640 ], "type": "text", "content": "术影像,系统能够辅助医生识别关键解剖结构,预测并避免手术风险,从而降低", "score": 1.0 } ] }, { "bbox": [ 90, 649, 505, 664 ], "spans": [ { "bbox": [ 90, 649, 505, 664 ], "type": "text", "content": "了医护人员的工作压力,提高了手术的安全性和成功率。此外,项目的教育和培", "score": 1.0 } ] }, { "bbox": [ 89, 673, 505, 687 ], "spans": [ { "bbox": [ 89, 673, 505, 687 ], "type": "text", "content": "训功能也为医学生和年轻医生提供了宝贵的实践学习机会,有助于提升整体医疗", "score": 1.0 } ] }, { "bbox": [ 88, 696, 145, 711 ], "spans": [ { "bbox": [ 88, 696, 145, 711 ], "type": "text", "content": "服务水平。", "score": 1.0 } ] } ] }, { "bbox": [ 86, 719, 248, 735 ], "type": "title", "angle": 0, "index": 7, "lines": [ { "bbox": [ 87, 719, 248, 733 ], "spans": [ { "bbox": [ 87, 719, 248, 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关键性能方向器械指标
手持端视频主板支持视频分辨率4K/1080P
支持视频帧率30FPS/60FPS
视频信号输入兼容类型MIPI
手持端主板面积≤50cm2
接收显示端视频主板支持视频分辨率4K/1080P
支持视频帧率30FPS/60FPS
视频信号输出兼容类型HDMI
兼容显示器24英寸、32英寸、10英寸
无线图像传输方面本地光到光延迟≤140ms
本地加密传输半径≤10m
避障性能传输路径中实现人员自由走动,内镜画面保持稳定
远程直播具备远程直播功能
整机手持端重量≤400g
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{ "bbox": [ 88, 295, 307, 310 ], "type": "text", "content": "1.2 荧光腔镜术中导航系统临床实验验证", "score": 1.0 } ] } ] }, { "type": "image", "bbox": [ 108, 317, 257, 486 ], "blocks": [ { "bbox": [ 108, 317, 257, 486 ], "lines": [ { "bbox": [ 108, 317, 257, 486 ], "spans": [ { "bbox": [ 108, 317, 257, 486 ], "type": "image", "image_path": "1ad5a7e6c475b0db3f0498466a7f1860fae2e45c999ffb888459c5a6dd18a579.jpg" } ] } ], "index": 3, "angle": 0, "type": "image_body" }, { "bbox": [ 124, 493, 239, 506 ], "lines": [ { "bbox": [ 126, 493, 238, 506 ], "spans": [ { "bbox": [ 126, 493, 238, 506 ], "type": "text", "content": "图 31 台车设计模拟图", "score": 1.0 } ] } ], "index": 4, "angle": 0, "type": "image_caption" } ], "index": 3 }, { "type": "image", "bbox": [ 317, 317, 463, 485 ], "blocks": [ { "bbox": [ 317, 317, 463, 485 ], "lines": [ { "bbox": [ 317, 317, 463, 485 ], "spans": [ { "bbox": [ 317, 317, 463, 485 ], "type": "image", "image_path": "b0ff13ff63bea2c49ac65c97228d0b2c8eafedf3840de5a31ba3b70d4ba0aad8.jpg" } ] } ], "index": 5, "angle": 0, "type": "image_body" }, { "bbox": [ 286, 493, 494, 506 ], "lines": [ { "bbox": [ 287, 493, 493, 506 ], "spans": [ { "bbox": [ 287, 493, 493, 506 ], "type": "text", "content": "图 32 双通道微型磁锚定荧光腹腔镜实物图", "score": 1.0 } ] } ], "index": 6, "angle": 0, "type": "image_caption" } ], "index": 5 }, { "bbox": [ 86, 513, 505, 599 ], "type": "text", "angle": 0, "index": 7, "lines": [ { "bbox": [ 110, 514, 505, 528 ], "spans": [ { "bbox": [ 110, 514, 505, 528 ], "type": "text", "content": "临床验证主要是验证荧光手术导航系统在临床中的实际作用,采用临床肝切", "score": 1.0 } ] }, { "bbox": [ 88, 537, 505, 551 ], "spans": [ { "bbox": [ 88, 537, 505, 551 ], "type": "text", "content": "除病例探索所制开放式荧光手术导航系统肿瘤病灶定位及划定切肝线的有效性。", "score": 1.0 } ] }, { "bbox": [ 89, 561, 505, 575 ], "spans": [ { "bbox": [ 89, 561, 505, 575 ], "type": "text", "content": "研究经西安交通大学第一附属医院伦理委员会审批,仔细筛选病例后取得患者及", "score": 1.0 } ] }, { "bbox": [ 88, 585, 312, 597 ], "spans": [ { "bbox": [ 88, 585, 312, 597 ], "type": "text", "content": "家属的知情同意,并签署相关知情同意书。", "score": 1.0 } ] } ] }, { "bbox": [ 113, 607, 269, 622 ], "type": "title", "angle": 0, "index": 8, "lines": [ { "bbox": [ 115, 607, 270, 622 ], "spans": [ { "bbox": [ 115, 607, 270, 622 ], "type": "text", "content": "(一)肝癌病灶定位临床验证", "score": 1.0 } ] } ] }, { "bbox": [ 86, 631, 505, 692 ], "type": "text", "angle": 0, "index": 9, "lines": [ { "bbox": [ 110, 631, 506, 645 ], "spans": [ { "bbox": [ 110, 631, 506, 645 ], "type": "text", "content": "病例资料:患者魏某,男,43岁。以“乙肝病史 20 年,体检发现肝占 2w”", "score": 1.0 } ] }, { "bbox": [ 89, 655, 506, 668 ], "spans": [ { "bbox": [ 89, 655, 506, 668 ], "type": "text", "content": "之主诉入院,MRI 普美显增强提示肝右叶肝占位性病变,考虑肝癌,初步诊断", "score": 1.0 } ] }, { "bbox": [ 93, 677, 282, 692 ], "spans": [ { "bbox": [ 93, 677, 282, 692 ], "type": "text", "content": "“原发性肝癌”,行腹腔镜手术治疗。", "score": 1.0 } ] } ] }, { "bbox": [ 86, 700, 506, 762 ], "type": "text", "angle": 0, "index": 10, "lines": [ { "bbox": [ 110, 701, 505, 714 ], "spans": [ { "bbox": [ 110, 701, 505, 714 ], "type": "text", "content": "手术流程如下:a.术前 3d 外周静脉注射 ICG 溶液,行肝功尺检查;b.常规", "score": 1.0 } ] }, { "bbox": [ 89, 724, 505, 738 ], "spans": [ { "bbox": [ 89, 724, 505, 738 ], "type": "text", "content": "麻醉,消毒铺巾,肝脏离体后取出;c.开启荧光手术导航系统,设定参数;d.手", "score": 1.0 } ] }, { "bbox": [ 88, 747, 498, 761 ], "spans": [ { "bbox": [ 88, 747, 498, 761 ], "type": "text", "content": "持式荧光探头指向肝脏表面,观察系统显示屏显示内容;e.取得肝脏离体标本;", "score": 1.0 } ] } ] } ], "discarded_blocks": [ { "bbox": [ 291, 781, 301, 790 ], "type": "page_number", "angle": 0, "index": 11, "lines": [ { "bbox": [ 290, 781, 303, 793 ], "spans": [ { "bbox": [ 290, 781, 303, 793 ], "type": "text", "content": "43", "score": 1.0 } ] } ] } ], "page_size": [ 595, 841 ], "page_idx": 43 }, { "para_blocks": [ { "bbox": [ 86, 62, 506, 146 ], "type": "text", "angle": 0, "index": 0, "lines": [ { "bbox": [ 88, 63, 505, 76 ], "spans": [ { "bbox": [ 88, 63, 505, 76 ], "type": "text", "content": "f.通过显示屏观察到脏离体标本上肿瘤病灶情况;g.对肝脏离体标本进行组织学", "score": 1.0 } ] }, { 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"index": 5, "angle": 0, "type": "image_footnote" } ], "index": 3 }, { "bbox": [ 114, 290, 258, 305 ], "type": "title", "angle": 0, "index": 6, "lines": [ { "bbox": [ 116, 290, 258, 305 ], "spans": [ { "bbox": [ 116, 290, 258, 305 ], "type": "text", "content": "(二)切肝线识别临床验证", "score": 1.0 } ] } ] }, { "bbox": [ 86, 313, 507, 396 ], "type": "text", "angle": 0, "index": 7, "lines": [ { "bbox": [ 110, 314, 506, 327 ], "spans": [ { "bbox": [ 110, 314, 506, 327 ], "type": "text", "content": "病例资料:患者杨某,男,67岁,以“腹胀伴发热 6d”之主诉入院, MRI", "score": 1.0 } ] }, { "bbox": [ 89, 338, 505, 351 ], "spans": [ { "bbox": [ 89, 338, 505, 351 ], "type": "text", "content": "提示肝右叶近肝门处占位性病变,肝门区胆管及右肝管异常改变,性质多考虑肝", "score": 1.0 } ] }, { "bbox": [ 89, 360, 505, 374 ], "spans": [ { "bbox": [ 89, 360, 505, 374 ], "type": "text", "content": "脏恶性肿瘤,初步诊断为“肝占位”,行右半肝切除术,术后诊断“肝门部胆管", "score": 1.0 } ] }, { "bbox": [ 86, 382, 116, 398 ], "spans": [ { "bbox": [ 86, 382, 116, 398 ], "type": "text", "content": "癌”。", "score": 1.0 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