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Together with our software development tools, we can make sure to have your sensor application on the market in no time.Represented by BASi in the USABASi, our representatives in the USA, offer not only local contact, support, and expertise but also an extensive catalog of cells and electrodes, thus they can provide everything you need for your electrochemical workstation.\u003C/p>","2024-09-06T14:12:40.705Z","2025-02-12T20:28:46.866Z","2024-09-06T14:12:41.813Z","37",{"id":139,"name":903,"alternativeText":16,"caption":16,"width":725,"height":904,"formats":905,"hash":917,"ext":20,"mime":23,"size":124,"url":918,"previewUrl":16,"provider":30,"provider_metadata":16,"createdAt":919,"updatedAt":919},"medium_Bio_Sensors_2024_Patron_Logo_Palm_Sens_BV_cffc971cce (2).png",147,{"small":906,"thumbnail":911},{"ext":20,"url":907,"hash":908,"mime":23,"name":909,"path":16,"size":910,"width":718,"height":321},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/small_medium_Bio_Sensors_2024_Patron_Logo_Palm_Sens_BV_cffc971cce_2_9711680200.png","small_medium_Bio_Sensors_2024_Patron_Logo_Palm_Sens_BV_cffc971cce_2_9711680200","small_medium_Bio_Sensors_2024_Patron_Logo_Palm_Sens_BV_cffc971cce (2).png",25.7,{"ext":20,"url":912,"hash":913,"mime":23,"name":914,"path":16,"size":915,"width":63,"height":916},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/thumbnail_medium_Bio_Sensors_2024_Patron_Logo_Palm_Sens_BV_cffc971cce_2_9711680200.png","thumbnail_medium_Bio_Sensors_2024_Patron_Logo_Palm_Sens_BV_cffc971cce_2_9711680200","thumbnail_medium_Bio_Sensors_2024_Patron_Logo_Palm_Sens_BV_cffc971cce (2).png",10.81,48,"medium_Bio_Sensors_2024_Patron_Logo_Palm_Sens_BV_cffc971cce_2_9711680200","https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/medium_Bio_Sensors_2024_Patron_Logo_Palm_Sens_BV_cffc971cce_2_9711680200.png","2024-09-06T14:12:31.797Z",{"id":214,"variation":71,"button":921},[922],{"id":214,"label":75,"size":76,"color":77,"style":16,"icon":78,"iconPosition":79,"url":923,"newWindow":8,"downloadable":16,"shape":16},"http://www.palmsens.com/?utm_source=signature&utm_medium=email&utm_campaign=email_signature&utm_id=Email+Signature","-11",{"id":74,"name":926,"description":927,"createdAt":928,"updatedAt":929,"publishedAt":930,"url_path_id":931,"logo":932,"website":941,"url_path":945},"iGii","\u003Cp style=\"text-align:justify;\">Revolutionizing global industries with low-cost, sustainable, secure and scalable carbon nanotechnology, called iGii. iGii delivers unmatched sensitivity and performance for advanced sensing technologies and product platforms across industries including Human and Veterinary Diagnostics, Water Quality, Soil Health and Food Safety.\u003C/p>","2025-01-16T14:37:29.161Z","2025-06-11T12:27:19.150Z","2025-01-16T14:37:31.054Z","52",{"id":933,"name":934,"alternativeText":16,"caption":16,"width":935,"height":936,"formats":16,"hash":937,"ext":39,"mime":40,"size":938,"url":939,"previewUrl":16,"provider":30,"provider_metadata":16,"createdAt":940,"updatedAt":940},44,"iGii_navLogo-1.svg",542,140,"i_Gii_nav_Logo_1_5ba044877b",25.03,"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/i_Gii_nav_Logo_1_5ba044877b.svg","2025-01-16T14:39:26.759Z",{"id":139,"variation":71,"button":942},[943],{"id":400,"label":75,"size":76,"color":77,"style":16,"icon":78,"iconPosition":79,"url":944,"newWindow":8,"downloadable":16,"shape":16},"http://www.igii.uk/","-21",{"id":87,"name":947,"description":948,"createdAt":949,"updatedAt":950,"publishedAt":951,"url_path_id":952,"logo":953,"website":986,"url_path":990},"Metrohm","\u003Cp style=\"text-align:justify;\">At Metrohm USA, we're more than a leader in chemical analysis; we're a community driven by passion, integrity, and a commitment to quality and innovation. With expertise in both laboratory and process systems for titration, ion chromatography, electrochemistry, and spectroscopy, our approach goes far beyond just technology. We believe in creating an environment where our people feel valued, heard, and inspired to do their best, ensuring that we not only deliver exceptional solutions but also foster a culture of mutual respect and continuous improvement. The way we take care of customers is deeply embedded in our culture, making every Metrohm experience uniquely personal and supportive. Discover how our dedication to both science and humanity shapes everything we do at www.metrohm.com.\u003C/p>","2025-02-27T20:38:30.044Z","2025-02-27T20:38:32.841Z","2025-02-27T20:38:32.835Z","90",{"id":954,"name":955,"alternativeText":16,"caption":16,"width":956,"height":957,"formats":958,"hash":982,"ext":20,"mime":23,"size":983,"url":984,"previewUrl":16,"provider":30,"provider_metadata":16,"createdAt":985,"updatedAt":985},68,"BioSensors_2025_Patron-logos_Metrohm.png",2560,575,{"large":959,"small":965,"medium":971,"thumbnail":977},{"ext":20,"url":960,"hash":961,"mime":23,"name":962,"path":16,"size":963,"width":711,"height":964},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/large_Bio_Sensors_2025_Patron_logos_Metrohm_d59e0ef15d.png","large_Bio_Sensors_2025_Patron_logos_Metrohm_d59e0ef15d","large_BioSensors_2025_Patron-logos_Metrohm.png",34.69,225,{"ext":20,"url":966,"hash":967,"mime":23,"name":968,"path":16,"size":969,"width":718,"height":970},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/small_Bio_Sensors_2025_Patron_logos_Metrohm_d59e0ef15d.png","small_Bio_Sensors_2025_Patron_logos_Metrohm_d59e0ef15d","small_BioSensors_2025_Patron-logos_Metrohm.png",15.47,112,{"ext":20,"url":972,"hash":973,"mime":23,"name":974,"path":16,"size":975,"width":725,"height":976},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/medium_Bio_Sensors_2025_Patron_logos_Metrohm_d59e0ef15d.png","medium_Bio_Sensors_2025_Patron_logos_Metrohm_d59e0ef15d","medium_BioSensors_2025_Patron-logos_Metrohm.png",24.48,168,{"ext":20,"url":978,"hash":979,"mime":23,"name":980,"path":16,"size":981,"width":63,"height":64},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/thumbnail_Bio_Sensors_2025_Patron_logos_Metrohm_d59e0ef15d.png","thumbnail_Bio_Sensors_2025_Patron_logos_Metrohm_d59e0ef15d","thumbnail_BioSensors_2025_Patron-logos_Metrohm.png",7.58,"Bio_Sensors_2025_Patron_logos_Metrohm_d59e0ef15d",20.24,"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/Bio_Sensors_2025_Patron_logos_Metrohm_d59e0ef15d.png","2025-02-27T20:38:15.007Z",{"id":248,"variation":71,"button":987},[988],{"id":268,"label":75,"size":76,"color":77,"style":16,"icon":78,"iconPosition":79,"url":989,"newWindow":8,"downloadable":16,"shape":16},"https://www.metrohm.com/en_us.html","-58",{"id":124,"name":992,"description":993,"createdAt":994,"updatedAt":995,"publishedAt":996,"url_path_id":997,"logo":998,"website":1013,"url_path":1017},"CTI","\u003Cp style=\"text-align:justify;\">As a leader in advanced printed electronics, we specialize in cutting-edge technologies such as conductive printing, ablation, biosensors, and membrane switches. With our extensive expertise in these areas, we provide tailored, high-quality contract manufacturing solutions to meet your specific needs. CTI has partnered with leading companies to turn innovative concepts into successful commercialized products.\u003C/p>","2025-03-19T15:22:27.375Z","2025-03-19T15:22:28.715Z","2025-03-19T15:22:28.704Z","92",{"id":999,"name":1000,"alternativeText":16,"caption":16,"width":1001,"height":1002,"formats":1003,"hash":1009,"ext":841,"mime":842,"size":1010,"url":1011,"previewUrl":16,"provider":30,"provider_metadata":16,"createdAt":1012,"updatedAt":1012},69,"BioSensors_2025_Patron-logos_CTI.jpg",288,108,{"thumbnail":1004},{"ext":841,"url":1005,"hash":1006,"mime":842,"name":1007,"path":16,"size":1008,"width":63,"height":885},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/thumbnail_Bio_Sensors_2025_Patron_logos_CTI_f6dc01c7fc.jpg","thumbnail_Bio_Sensors_2025_Patron_logos_CTI_f6dc01c7fc","thumbnail_BioSensors_2025_Patron-logos_CTI.jpg",5.55,"Bio_Sensors_2025_Patron_logos_CTI_f6dc01c7fc",6.78,"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/Bio_Sensors_2025_Patron_logos_CTI_f6dc01c7fc.jpg","2025-03-19T15:22:23.248Z",{"id":400,"variation":71,"button":1014},[1015],{"id":227,"label":75,"size":76,"color":77,"style":16,"icon":78,"iconPosition":79,"url":1016,"newWindow":16,"downloadable":16,"shape":16},"conductivetech.com","-59",{"id":165,"name":1019,"description":1020,"createdAt":1021,"updatedAt":1022,"publishedAt":1023,"url_path_id":1024,"logo":1025,"website":1038,"url_path":1042},"Nature Sensors","\u003Cp style=\"text-align:justify;\">New to the Nature Portfolio, Nature Sensors will publish fundamental, applied, and engineering research across the full spectrum of sensing technologies, spanning biological, computational, engineering, and systems domains. Like all Nature-branded journals, Nature Sensors is defined by a dedicated editorial team, a rigorous peer-review process, high standards of copy editing and production, rapid publication, and editorial independence. The journal is now open for submissions with the first issue launching in January 2026.\u003C/p>","2025-05-06T14:19:18.077Z","2025-06-12T14:43:15.597Z","2025-05-06T14:19:19.724Z","104",{"id":1026,"name":1027,"alternativeText":16,"caption":16,"width":1028,"height":64,"formats":1029,"hash":1034,"ext":20,"mime":23,"size":1035,"url":1036,"previewUrl":16,"provider":30,"provider_metadata":16,"createdAt":1037,"updatedAt":1037},81,"BioSensors_2025_Patron-logos_Springer-Nature.png",373,{"thumbnail":1030},{"ext":20,"url":1031,"hash":1032,"mime":23,"name":1033,"path":16,"size":887,"width":63,"height":329},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/thumbnail_Bio_Sensors_2025_Patron_logos_Springer_Nature_80e93f40c3.png","thumbnail_Bio_Sensors_2025_Patron_logos_Springer_Nature_80e93f40c3","thumbnail_BioSensors_2025_Patron-logos_Springer-Nature.png","Bio_Sensors_2025_Patron_logos_Springer_Nature_80e93f40c3",2.27,"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/Bio_Sensors_2025_Patron_logos_Springer_Nature_80e93f40c3.png","2025-05-06T14:18:53.862Z",{"id":630,"variation":71,"button":1039},[1040],{"id":349,"label":75,"size":76,"color":77,"style":16,"icon":78,"iconPosition":79,"url":1041,"newWindow":8,"downloadable":16,"shape":16},"https://www.nature.com/natsensors/","-67",{"id":53,"name":1044,"description":1045,"createdAt":1046,"updatedAt":1047,"publishedAt":1048,"url_path_id":1049,"logo":1050,"website":1083,"url_path":1087},"Amulet Scientific","\u003Cp style=\"text-align:justify;\">\u003Cspan style=\"background-color:rgb(255,255,255);color:rgb(26,32,38);\">Amulet Scientific offers the world's smallest handheld and battery-powered potentiostat on the market. This pocket-sized and wireless instrument features a small display, internal memory, and Bluetooth connectivity, making it an optimal choice for on-site detection. Its unique, compact design unlocks new opportunities in the development of affordable diagnostics, sensors, and wearable devices.\u003C/span>\u003C/p>","2025-05-08T12:14:58.319Z","2025-05-08T12:14:59.922Z","2025-05-08T12:14:59.916Z","105",{"id":1051,"name":1052,"alternativeText":16,"caption":16,"width":1053,"height":1054,"formats":1055,"hash":1079,"ext":20,"mime":23,"size":1080,"url":1081,"previewUrl":16,"provider":30,"provider_metadata":16,"createdAt":1082,"updatedAt":1082},82,"BioSensors_2025_Patron-logos_AmuletScientific.png",1500,720,{"large":1056,"small":1062,"medium":1067,"thumbnail":1073},{"ext":20,"url":1057,"hash":1058,"mime":23,"name":1059,"path":16,"size":1060,"width":711,"height":1061},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/large_Bio_Sensors_2025_Patron_logos_Amulet_Scientific_051508b44c.png","large_Bio_Sensors_2025_Patron_logos_Amulet_Scientific_051508b44c","large_BioSensors_2025_Patron-logos_AmuletScientific.png",56.24,480,{"ext":20,"url":1063,"hash":1064,"mime":23,"name":1065,"path":16,"size":1066,"width":718,"height":758},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/small_Bio_Sensors_2025_Patron_logos_Amulet_Scientific_051508b44c.png","small_Bio_Sensors_2025_Patron_logos_Amulet_Scientific_051508b44c","small_BioSensors_2025_Patron-logos_AmuletScientific.png",24.45,{"ext":20,"url":1068,"hash":1069,"mime":23,"name":1070,"path":16,"size":1071,"width":725,"height":1072},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/medium_Bio_Sensors_2025_Patron_logos_Amulet_Scientific_051508b44c.png","medium_Bio_Sensors_2025_Patron_logos_Amulet_Scientific_051508b44c","medium_BioSensors_2025_Patron-logos_AmuletScientific.png",37.57,360,{"ext":20,"url":1074,"hash":1075,"mime":23,"name":1076,"path":16,"size":1077,"width":63,"height":1078},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/thumbnail_Bio_Sensors_2025_Patron_logos_Amulet_Scientific_051508b44c.png","thumbnail_Bio_Sensors_2025_Patron_logos_Amulet_Scientific_051508b44c","thumbnail_BioSensors_2025_Patron-logos_AmuletScientific.png",12.51,118,"Bio_Sensors_2025_Patron_logos_Amulet_Scientific_051508b44c",17.96,"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/Bio_Sensors_2025_Patron_logos_Amulet_Scientific_051508b44c.png","2025-05-08T12:14:36.804Z",{"id":329,"variation":71,"button":1084},[1085],{"id":288,"label":75,"size":76,"color":77,"style":16,"icon":78,"iconPosition":79,"url":1086,"newWindow":8,"downloadable":16,"shape":16},"https://www.amuletscientific.com","-68",{"id":438,"name":1089,"description":1090,"createdAt":1091,"updatedAt":1092,"publishedAt":1093,"url_path_id":1094,"logo":1095,"website":1129,"url_path":1133},"Gamry Instruments, Inc","\u003Cp style=\"text-align:justify;\">Gamry Instruments is a trusted leader in electrochemical instrumentation, dedicated to supporting researchers at the forefront of biosensor development. With a reputation for precision, accuracy, and reliability, Gamry’s potentiostats and are optimized for the unique challenges of biosensor research—ranging from electrode characterization to real-time detection of biological interactions.Researchers rely on Gamry for advanced techniques like Electrochemical Impedance Spectroscopy (EIS), cyclic voltammetry, and chronoamperometry—critical tools for designing and characterizing sensitive, selective, and reproducible biosensors. Whether developing novel point-of-care diagnostics, wearable health monitors, or environmental biosensors, Gamry provides the performance, flexibility, and expert support to accelerate discovery and innovation.\u003C/p>","2025-05-14T13:14:55.594Z","2025-05-14T13:14:57.044Z","2025-05-14T13:14:57.038Z","106",{"id":1096,"name":1097,"alternativeText":16,"caption":16,"width":1098,"height":1099,"formats":1100,"hash":1125,"ext":841,"mime":842,"size":1126,"url":1127,"previewUrl":16,"provider":30,"provider_metadata":16,"createdAt":1128,"updatedAt":1128},83,"GamryLogo.jpg",1214,319,{"large":1101,"small":1107,"medium":1113,"thumbnail":1119},{"ext":841,"url":1102,"hash":1103,"mime":842,"name":1104,"path":16,"size":1105,"width":711,"height":1106},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/large_Gamry_Logo_d7b6401f2e.jpg","large_Gamry_Logo_d7b6401f2e","large_GamryLogo.jpg",28.09,263,{"ext":841,"url":1108,"hash":1109,"mime":842,"name":1110,"path":16,"size":1111,"width":718,"height":1112},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/small_Gamry_Logo_d7b6401f2e.jpg","small_Gamry_Logo_d7b6401f2e","small_GamryLogo.jpg",12.83,131,{"ext":841,"url":1114,"hash":1115,"mime":842,"name":1116,"path":16,"size":1117,"width":725,"height":1118},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/medium_Gamry_Logo_d7b6401f2e.jpg","medium_Gamry_Logo_d7b6401f2e","medium_GamryLogo.jpg",20.55,197,{"ext":841,"url":1120,"hash":1121,"mime":842,"name":1122,"path":16,"size":1123,"width":63,"height":1124},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/thumbnail_Gamry_Logo_d7b6401f2e.jpg","thumbnail_Gamry_Logo_d7b6401f2e","thumbnail_GamryLogo.jpg",5.53,64,"Gamry_Logo_d7b6401f2e",34.95,"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/Gamry_Logo_d7b6401f2e.jpg","2025-05-14T13:14:53.322Z",{"id":349,"variation":71,"button":1130},[1131],{"id":553,"label":1132,"size":76,"color":77,"style":16,"icon":78,"iconPosition":79,"url":16,"newWindow":8,"downloadable":16,"shape":16},"www.gamry.com","-69",{"pagination":1135},{"page":5,"pageSize":315,"pageCount":5,"total":438},{"id":274,"heading":269,"pageHeader":1137,"sections":1140},{"id":274,"description":1138,"showPageHeader":8,"backgroundColor":1139,"image":16}," ","primary",[1141],{"id":45,"__component":1142,"componentVariation":1143,"contactsVariation":1144,"styles":16,"header":16,"sessionsGroup":1145},"content.sessions","Sessions Base","Card Contact Full",[1146],{"id":45,"groupTitle":16,"sessions":1147},[1148,1198,1234],{"id":160,"session":1149},{"id":160,"title":1150,"teaser":1151,"body":1152,"createdAt":1153,"updatedAt":1154,"publishedAt":1155,"url_path_id":1156,"contacts":1157,"url_path":1197},"CRISPR-Powered Biosensing","\u003Ch4 class=\"h4\" style=\"margin-left:0px;text-align:justify;\">\u003Cspan style=\"color:rgb(196,83,43);\">\u003Cstrong>Sunday | August 3, 2025 | 11:00 - 12:30\u003C/strong>\u003C/span>\u003C/h4>\u003Cp style=\"text-align:justify;\">Nucleic acid testing is decisive for the diagnosis and treatment monitoring of various diseases. Over the last years, particularly the (re)emergence outbreak of infectious diseases (such as COVID-19 caused by the virus SARS-CoV-2) as well as the discovery of new nucleic acid-based biomarkers (like microRNA clusters for diagnosing different types of cancer or Alzheimer’s disease) further stimulated the development of novel tools for nucleic acid testing. Beyond its wide application in genome editing, Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR)-based assay technologies along with its CRISPR-associated (Cas) enzymes, known as genetic scissors, has revolutionized the field of biosensors. CRISPR technology provides a powerful method for the highly scalable, sensitive and selective quantification of nucleic acids in an easy, rapid and low-cost manner.&nbsp;\u003C/p>","\u003Cp style=\"text-align:justify;\">This tutorial aims at presenting the fundamentals of CRISPR/Cas systems together with cutting-edge research activities on CRISPR-powered biosensors, demonstrating innovative technologies, methods, as well as novel integrated devices for next-generation point-of-care diagnostics. Finally, the challenges and future applications, including wearable biosensing and non-nucleic-acid testing by CRISPR-based systems, will be discussed.\u003C/p>","2025-03-24T12:54:24.427Z","2025-06-11T13:22:40.392Z","2025-03-24T12:54:26.113Z","94",[1158],{"id":1159,"name":1160,"committee":16,"position":16,"affiliation":1161,"email":16,"biography":1162,"createdAt":1163,"updatedAt":1164,"url_path_id":1165,"contactPhoto":1166,"socialLinks":1195,"url_path":1196},47,"Can Dincer","Technical University of Munich, Germany","\u003Cp style=\"text-align:justify;\">Prof. Can Dincer is an Associate Professor of Sensors and Wearables for Healthcare at the Technical University of Munich since October 2024. The research interest of his group is the development of bioanalytical materials, sensors and microsystems, as well as their combination with data science and artificial intelligence for One-Health: human and animal health, and the shared environment. The focus is on disposable sensing devices for point-of-need testing and wearable applications.\u003C/p>\u003Cp style=\"text-align:justify;\">Having completed his studies in microsystems engineering, Prof. Dincer graduated from the Technical Faculty of the University of Freiburg, Germany. He received his PhD degree with summa cum laude in 2016. Between June 2017 – June 2019, he worked as a visiting researcher at the Department of Bioengineering at the Imperial College London, UK. Since September 2019, he is an Associate Editor of the journal \"Biosensors and Bioelectronics” (Elsevier). He is also editorial board member of the journals “Advanced Sensor Research” (Wiley) and “The Innovation Materials” (Cell Press). Up to date, Prof. Dincer has received different awards and prices for my research and contribution to the field of biosensors and analytical chemistry. He is a member of the German Society for Biomedical Engineering (VDE|DGBMT), American Chemical Society, International Society of Electrochemistry (ISE) and the Society for Electroanalytical Chemistry (SEAC).\u003C/p>","2025-03-24T12:53:53.943Z","2025-03-24T15:41:32.800Z","93",{"id":1167,"name":1168,"alternativeText":16,"caption":16,"width":1169,"height":1169,"formats":1170,"hash":1191,"ext":20,"mime":23,"size":1192,"url":1193,"previewUrl":16,"provider":30,"provider_metadata":16,"createdAt":1194,"updatedAt":1194},72,"Can Dincer.png",1080,{"large":1171,"small":1176,"medium":1181,"thumbnail":1186},{"ext":20,"url":1172,"hash":1173,"mime":23,"name":1174,"path":16,"size":1175,"width":711,"height":711},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/large_Can_Dincer_cbeb8fe837.png","large_Can_Dincer_cbeb8fe837","large_Can Dincer.png",1555.82,{"ext":20,"url":1177,"hash":1178,"mime":23,"name":1179,"path":16,"size":1180,"width":718,"height":718},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/small_Can_Dincer_cbeb8fe837.png","small_Can_Dincer_cbeb8fe837","small_Can Dincer.png",461.84,{"ext":20,"url":1182,"hash":1183,"mime":23,"name":1184,"path":16,"size":1185,"width":725,"height":725},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/medium_Can_Dincer_cbeb8fe837.png","medium_Can_Dincer_cbeb8fe837","medium_Can Dincer.png",953.17,{"ext":20,"url":1187,"hash":1188,"mime":23,"name":1189,"path":16,"size":1190,"width":26,"height":26},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/thumbnail_Can_Dincer_cbeb8fe837.png","thumbnail_Can_Dincer_cbeb8fe837","thumbnail_Can Dincer.png",54.86,"Can_Dincer_cbeb8fe837",388.25,"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/Can_Dincer_cbeb8fe837.png","2025-03-24T12:55:34.509Z",[],"-60","-61",{"id":14,"session":1199},{"id":14,"title":1200,"teaser":1201,"body":1202,"createdAt":1203,"updatedAt":1204,"publishedAt":1205,"url_path_id":1206,"contacts":1207,"url_path":1233},"Integrated CMOS and Biotechnology for Emerging Molecular Diagnostics","\u003Ch4 class=\"h4\" style=\"margin-left:0px;text-align:justify;\">\u003Cspan style=\"color:rgb(196,83,43);\">\u003Cstrong>Sunday | August 3, 2025 | 14:00 - 15:30\u003C/strong>\u003C/span>\u003C/h4>\u003Cp style=\"text-align:justify;\">Rapid, accurate, and accessible molecular diagnostics are poised to transform modern healthcare by enabling continuous monitoring and longitudinal disease tracking. This tutorial introduces the emerging landscape of molecular sensing technologies and their applications in both in vitro and in vivo settings. We will explore state-of-the-art approaches across academia and industry, highlighting key challenges and opportunities in circuit, system, and interface design.\u003C/p>","\u003Cp style=\"text-align:justify;\">The tutorial is organized into four parts: (1) Biosensor fundamentals and technologies: We begin with an overview of essential biosensor metrics and benchmarking standards. This section introduces conventional immunosensors and expands into advanced biosensors based on DNA nanotechnologies, such as aptamers and DNA switches. (2) Sensing modalities and interface circuits: We delve into the major signal transduction methods used in molecular biosensing—fluorescence, electrochemical detection, and charge-based sensing (e.g., BioFETs). Interface circuit design techniques will be discussed, with comparisons of architectures in terms of sensitivity, noise, dynamic range, and power efficiency. (3) Bioelectronic interfaces and modeling: This section covers electrode materials, surface chemistry, and biointerface. We will examine the role of the Debye layer in charge screening and its impact on signal fidelity, followed by circuit modeling and characterization techniques such as electrochemical impedance spectroscopy (EIS). (4) System integration and applications: We conclude with practical implementation challenges and strategies for integrating molecular sensors into complete platforms. Topics include wearable and implantable systems for in vivo use, as well as microfluidics for sample handling in in vitro diagnostics.\u003C/p>\u003Cp style=\"text-align:justify;\">This tutorial is designed for circuit designers, biomedical engineers, and interdisciplinary researchers seeking to translate molecular biosensing concepts into robust, miniaturized diagnostic platforms for real-world healthcare applications.\u003C/p>","2025-04-10T13:41:22.900Z","2025-06-11T13:22:32.559Z","2025-04-10T13:41:24.629Z","101",[1208],{"id":1209,"name":1210,"committee":16,"position":16,"affiliation":1211,"email":16,"biography":1212,"createdAt":1213,"updatedAt":1213,"url_path_id":1214,"contactPhoto":1215,"socialLinks":1231,"url_path":1232},49,"Jun-Chau Chien","University of California Berkeley, USA","\u003Cp style=\"text-align:justify;\">Jun-Chau Chien received B.S. and M.S. degrees from National Taiwan University and the Ph.D. degree from the University of California, Berkeley. He received postdoctoral training from 2017–2018 at Stanford University and served as a Research Engineer from 2018-2021 also at Stanford University. He was an Assistant Professor at the Department of Electrical Engineering at National Taiwan University from 2021-2022 and is currently an Assistant Professor at the Department of Electrical Engineering and Computer Sciences, University of California Berkeley. His research focuses on CMOS-based microsystems for in vitro and in vivo biosensing and high-speed millimeter-wave and mixed-signal circuits and systems. He served on the ISSCC International Technical Program Committee from 2022 to 2025, was a Guest Editor for the IEEE Journal of Solid-State Circuits in 2024, and currently serves as an Associate Editor for both the IEEE Transactions on Biomedical Circuits and Systems and the IEEE Solid-State Circuits Letters.&nbsp;\u003C/p>","2025-04-10T13:40:48.053Z","100",{"id":1216,"name":1217,"alternativeText":16,"caption":16,"width":1218,"height":1219,"formats":1220,"hash":1227,"ext":841,"mime":842,"size":1228,"url":1229,"previewUrl":16,"provider":30,"provider_metadata":16,"createdAt":1230,"updatedAt":1230},76,"Jun-Chau Chien.jpg",323,354,{"thumbnail":1221},{"ext":841,"url":1222,"hash":1223,"mime":842,"name":1224,"path":16,"size":1225,"width":1226,"height":26},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/thumbnail_Jun_Chau_Chien_cb85b8b983.jpg","thumbnail_Jun_Chau_Chien_cb85b8b983","thumbnail_Jun-Chau Chien.jpg",4.2,142,"Jun_Chau_Chien_cb85b8b983",14.44,"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/Jun_Chau_Chien_cb85b8b983.jpg","2025-04-10T13:40:32.973Z",[],"-63","-64",{"id":195,"session":1235},{"id":195,"title":1236,"teaser":1237,"body":47,"createdAt":1238,"updatedAt":1239,"publishedAt":1240,"url_path_id":1241,"contacts":1242,"url_path":1271},"Nanoparticle-Mediated, Digital, Sensitive Biomarker Detection","\u003Ch4 class=\"h4\" style=\"margin-left:0px;text-align:justify;\">\u003Cspan style=\"color:rgb(196,83,43);\">\u003Cstrong>Monday | August 4, 2025 | 13:30 - 15:00\u003C/strong>\u003C/span>\u003C/h4>\u003Cp style=\"text-align:justify;\">Fast, accurate, affordable, and accessible assays play a crucial role in the rapid diagnosis and containment of infectious diseases, as well as the early screening of chronic illnesses. Biosensors that deliver highly sensitive and digital results—while minimizing test costs, turnaround time, instrument size, and operational complexity—are particularly valuable. In this tutorial, we explore state-of-the-art nanoparticle-mediated biosensing design concepts and technology advancements, emphasizing the unique roles nanoparticles play in signal transduction that enables digital output.\u003C/p>","2025-04-14T18:13:22.810Z","2025-06-11T13:23:08.299Z","2025-04-14T18:13:24.090Z","103",[1243],{"id":1244,"name":1245,"committee":16,"position":16,"affiliation":1246,"email":16,"biography":1247,"createdAt":1248,"updatedAt":1248,"url_path_id":1249,"contactPhoto":1250,"socialLinks":1269,"url_path":1270},50,"Chao Wang","Arizona State University","\u003Cp style=\"text-align:justify;\">I am currently an associate professor in the School of Electrical, Computer &amp; Energy Engineering (ECEE) and the Center for Molecular Design &amp; Biomimetics at the Biodesign Institute in Arizona State University. My research group consists of one research scientist, one postdoctoral scholar, eight Ph.D. students, and three undergraduate students. We operate a 1,500-square-foot laboratory equipped for micro- and nanoscale fabrication, biological sample handling, and electrical and optical characterization. My research aims to develop a multidisciplinary program advancing nanobiotechnologies through three main themes: advanced manufacturing, nanophotonics, and biomolecular sensing. I am particularly interested in studying subcellular molecules and their interactions with nanomaterials, with a vision to create translational biomedical solutions that are faster, more accurate, cost-effective, and widely applicable. This vision is driven by three strategic goals. (1) Integrated Diagnostics: Developing compact devices that combine sample handling, detection, and readout to minimize human intervention, pre-analytical errors, sample volume, and sensing time. (2) Comprehensive Biomarker Analysis: Designing diagnostic platforms to analyze a broad spectrum of biomarkers—from genomics and proteomics to epigenomics and metabolomics—to enhance early disease detection, severity analysis, and prognostics for complex diseases, including infectious diseases, cancer, and autoimmune disorders. (3) Multidisciplinary innovations: Leveraging expertise in manufacturing, photonics, fluidics, circuits, statistics, machine learning, and biochemistry for advanced sensing system designs.\u003C/p>\u003Cp style=\"text-align:justify;\">My research areas include: (a) to explore new additive and scalable nanomanufacturing approaches for cost-effective production of electronic, photonic, and biosensor devices. (b) to design on-chip integrated nanophotonic structures for sensing and imaging applications. (c) to develop near-patient diagnostic platforms for high-specificity, high-sensitivity, and multifunctional detection of molecular biomarkers, from nucleic acids to antigens and antibodies, (d) to design nanofluidic chips for fundamental biophysics studies and applications in manipulation of biomolecules, such as proteins, antibodies, DNA and extracellular vesicles, and (e) to establish low-noise high-speed nanopore platforms for molecular detection. I serve as the principal investigator on 12 past and ongoing, externally funded projects, including three NIH awards. I am committed to effective communication, realistic research planning, budgeting, and project management. I hold 32 granted and pending patents, and have co-authored 37 journal publications and preprints, as well as 71 conference presentations. Our research has been published in leading journals such as Nature Nanotechnology, Nature Communications, Light: Science &amp; Applications, ACS Nano, Biosensors and Bioelectronics, Materials Today, Nano Letters, Advanced Functional Materials, Small, and Lab on a Chip.\u003C/p>","2025-04-14T18:11:22.170Z","102",{"id":1251,"name":1252,"alternativeText":16,"caption":16,"width":1253,"height":1253,"formats":1254,"hash":1265,"ext":841,"mime":842,"size":1266,"url":1267,"previewUrl":16,"provider":30,"provider_metadata":16,"createdAt":1268,"updatedAt":1268},77,"Chao Wang 2019 Jan.jpg",600,{"small":1255,"thumbnail":1260},{"ext":841,"url":1256,"hash":1257,"mime":842,"name":1258,"path":16,"size":1259,"width":718,"height":718},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/small_Chao_Wang_2019_Jan_63233a3aaf.jpg","small_Chao_Wang_2019_Jan_63233a3aaf","small_Chao Wang 2019 Jan.jpg",32.58,{"ext":841,"url":1261,"hash":1262,"mime":842,"name":1263,"path":16,"size":1264,"width":26,"height":26},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/thumbnail_Chao_Wang_2019_Jan_63233a3aaf.jpg","thumbnail_Chao_Wang_2019_Jan_63233a3aaf","thumbnail_Chao Wang 2019 Jan.jpg",4.4,"Chao_Wang_2019_Jan_63233a3aaf",44.86,"https://confcats-siteplex.s3.us-east-1.amazonaws.com/biosensors25/Chao_Wang_2019_Jan_63233a3aaf.jpg","2025-04-14T18:08:28.237Z",[],"-65","-66",{"data":1273,"meta":1274},{"id":274,"heading":269,"createdAt":275,"updatedAt":276,"publishedAt":277,"url_path_id":278,"url_path":281,"contentType":129},{},1778851939047]