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Identificação

Identificação pessoal

Nome completo
ANA MARIA MOREIRA FERREIRA DA ROCHA

Identificadores de autor

Ciência ID
1F1F-A32E-B76C

Endereços de correio eletrónico

  • amrocha@det.uminho.pt (Profissional)
Formação
Grau Classificação
1996/09/10
Concluído
Engenharia Têxtil (Doutoramento)
Universidade do Minho - Campus de Azurém, Portugal
Distinção e louvor
1996
Concluído
Engenharia Têxtil (Doutoramento)
Especialização em Especialidade: Tecnologia do Vestuário
Universidade do Minho, Portugal
"Contribuição para o Controlo Automático dos Parâmetros de Costura: Estudo da Dinâmica da Penetração da Agulha e da Alimentação do Tecido" (TESE/DISSERTAÇÃO)
Produções

Publicações

Artigo em conferência
  1. Martins, J.; Cerqueira, S.M.; Silva, A.F.; Catarino, A.; Rocha, A.; Santos, C.P.. "Towards a Smart-Vest for Forward Posture Monitoring: Improving Usability with E-Textiles". 2023.
    10.1109/ENBENG58165.2023.10175331
  2. Ferreira, A.G.; Catarino, A.P.; Monteiro, J.L.; Rocha, A.M.. "Textile-based pressure sensors for step detection: A preliminary assessment". 2018.
    10.1088/1757-899X/459/1/012041
  3. Ferreira, A.G.; Fernandes, D.; Montem, J.; Catarino, A.P.; Rocha, A.M.. "A Pedestrian Positioning System Integrated into a Cyber-Physical System for Emergency Responders' Monitoring". 2018.
    10.1109/IPIN.2018.8533845
  4. Fernandes, D.; Gomes, T.; Ferreira, A.; Abrishambaf, R.; Cabral, J.; Monteiro, J.L.; Rocha, A.; et al. "On-body signal propagation in WBANs for firefighters personal protective equipment: Statistical characterization and performance assessment". 2017.
    10.1109/ICIT.2017.7915562
  5. Catarino, André P.; Rocha, Ana; Carvalho, Helder; Ferreira, Fernando Nunes. "Textile based electrodes for ECG and EMG measurements". 2017.
  6. Oliveira, N. P.; Maciel, L.; Catarino, André P.; Rocha, A. M.; Oliveira, N.P.; Catarino, A.P.; Rocha, A.M.. "Parametric modelling design applied on weft knitted surface and its effects in their physical properties". 2017.
    10.1088/1757-899X/254/16/162008
  7. Vieito, António Jose Paleo; Brigandì, Antonino; Ferreira, Fernando; Rocha, A. M.; Staiti, Pietro; Lufrano, Francesco. "Development of carbon/MnO2 coated on nanofiber textile electrodes for hybrid solid-state supercapacitors". 2017.
  8. Vieito, António Jose Paleo; Staiti, P.; Ferreira, Fernando; Rocha, A. M.; Lufrano, F.. "Solid-state carbon-based textile supercapacitors for energy storage applications". 2017.
  9. Lufrano, Francesco; Vieito, António Jose Paleo; Brigandì, Antonino; Ferreira, Fernando; Rocha, A. M.; Staiti, Pietro. "Carbon and MnO2 materials on carbon nanofibers cotton textile substrate for hybrid solid-state supercapacitors". 2017.
  10. Abreu, M.J.; Catarino, A.; Rocha, A.M.; Derogarian, F.; Dias, R.; Da Silva, J.M.; Ferreira, J.C.; Tavares, V.G.; Correia, M.V.. "Wearable sensors for the prophylaxis of lower limb pathologies". 2013.
  11. Catarino, A.; Rocha, A.M.; Abreu, M.J.; Da Silva, J.M.; Ferreira, J.C.; Tavares, V.G.; Correia, M.V.; et al. "Wearable monitoring system for locomotion rehabilitation". 2013.
  12. Onofrei, E.; Rocha, A.M.; Catarino, A.. "Thermal comfort properties of knitted fabrics made of elastane and bioactive yarns". 2010.
  13. Silva, M.; Catarino, A.; Carvalho, H.; Rocha, A.; Monteiro, J.; Montagna, G.. "Study of vital sign monitoring with textile sensors in swimming pool environment". 2009.
    10.1109/IECON.2009.5414898
  14. Jiménez, L.; Rocha, A.M.; Aranberri, I.; Covas, J.A.; Catarino, A.P.. "Electrically conductive monofilaments for smart textiles". 2008.
  15. Catarino, A.; Rocha, A.; Monteiro, J.L.; Soares, F.. "A pattern recognition system based on cluster and discriminant analysis for fault identification during production". 2007.
    10.1109/ISIE.2007.4374615
  16. Carvalho, Helder; Rocha, A. M.; Abreu, Maria José Araújo Marques. "Sensitive fabrics". 2007.
  17. Catarino, A.; Rocha, A.; Monteiro, J.L.; Soares, F.; Catarino, André P.; Rocha, A. M.; Monteiro, João L.; Soares, Filomena. "Knitting process surveillance using time and frequency analysis". 2005.
    10.1109/ISIE.2005.1529165
  18. Catarino, A.; Rocha, A.; Monteiro, J.. "Low cost sensor for the measurement of yarn input tension on knitting machines". 2003.
    10.1109/ISIE.2003.1267939
  19. Carvalho, H.; Rocha, A.M.; Monteiro, J.L.. "Process control in next-generation sewing machines - A project overview". 2003.
  20. Silva, L.F.; Lima, M.; Carvalho, H.; Rocha, A.M.; Ferreira, F.N.; Monteiro, J.L.; Couto, C.. "Actuation, monitoring, and control of fabrics feeding during high-speed sewing". 2003.
  21. Carvalho, H.; Rocha, A.; Monteiro, J.L.; Silva, L.F.. "Planning, control and monitoring tools for industrial garment assembly processes". 2003.
  22. Catarino, A.P.; Rocha, A.M.; Monteiro, J.L.. "Monitoring systems for fault detection on circular weft knitting machines through yarn input tension". 2003.
Artigo em revista
  1. João Martins; Sara M. Cerqueira; André Whiteman Catarino; Alexandre Ferreira da Silva; Ana M. Rocha; Jorge Vale; Miguel Ângelo; Cristina P. Santos. "Integrating sEMG and IMU Sensors in an e-Textile Smart Vest for Forward Posture Monitoring: First Steps". Sensors (2024): https://doi.org/10.3390/s24144717.
    10.3390/s24144717
  2. Nuna G. Costa; David S. Freitas; Aline Barros; Carla Silva; Joana C. Antunes; Ana M. Rocha. "Development and Optimization of a SPME-GC-FID Method for Ethanol Detection". Processes (2024): https://doi.org/10.3390/pr12020247.
    10.3390/pr12020247
  3. Paleo, Antonio J.; Krause, Beate; Cerqueira, Maria F.; González-Domínguez, Jose M.; Muñoz, Enrique; Pötschke, Petra; Rocha, A. M.. "Thermoelectric properties of cotton fabrics dip-coated in pyrolytically stripped Pyrograf® III carbon nanofiber based aqueous inks". (2023): https://hdl.handle.net/1822/85722.
    10.3390/ma16124335
  4. Paleo, Antonio J.; Krause, Beate; Cerqueira, M. F.; Muñoz, Enrique; Pötschke, Petra; Rocha, A. M.. "Electronic features of cotton fabric e-textiles prepared with aqueous carbon nanofiber inks". (2023): https://hdl.handle.net/1822/82823.
    10.1021/acsaenm.2c00023
  5. Vieito, António Jose Paleo; Krause, Beate; Cerqueira, M. F.; Muñoz, Enrique; Pötschke, Petra; Rocha, A. M.. "Nonlinear Thermopower Behaviour of N-Type Carbon Nanofibres and Their Melt Mixed Polypropylene Composites". Polymers 14 2 (2022): 269. https://hdl.handle.net/1822/75889.
    Publicado • 10.3390/polym14020269
  6. Monteiro, E.; Carvalho, H.; Rocha, A.M.; Birkocak, D.T.; Puga, H.. "3D PRINTING OF FLEXIBLE CONDUCTIVE POLYMERS ON TEXTILES FOR SENSING AND ELECTRICAL CONNECTION,ALGILAMA VE ELEKTRIK BAGLANTISI IÇIN TEKSTIL ÜZERINE ESNEK ILETKEN POLIMERLERIN 3D BASKISI". Tekstil ve Muhendis 29 128 (2022): 315-321. http://www.scopus.com/inward/record.url?eid=2-s2.0-85146735061&partnerID=MN8TOARS.
    10.7216/teksmuh.1222553
  7. Paleo, Antonio J.; Krause, Beate; Soares, Delfim; Melle-Franco, Manuel; Muñoz, Enrique; Pötschke, Petra; Rocha, A. M.. "Thermoelectric properties of n-type poly (ether ether ketone)/carbon nanofiber melt-processed composites". (2022): https://hdl.handle.net/1822/82718.
    10.3390/polym14224803
  8. Costa, Nuna G.; Antunes, Joana C.; Paleo, Antonio J.; Rocha, A. M.. "A review on flexible electrochemical biosensors to monitor alcohol in sweat". (2022): https://hdl.handle.net/1822/79830.
    10.3390/bios12040252
  9. Paleo, Antonio J.; Krause, Beate; Cerqueira, M. F.; Melle-Franco, Manuel; Pötschke, Petra; Rocha, A. M.. "Thermoelectric properties of polypropylene carbon nanofiber melt-mixed composites: exploring the role of polymer on their Seebeck coefficient". Polymer Journal 53 10 (2021): 1145-1152. https://hdl.handle.net/1822/82830.
    Publicado • 10.1038/s41428-021-00518-7
  10. Pividal, P.; Rocha, A.M.. "Development and Mechanical Characterization of Needle-punched Kapok-Flax Nonwovens for Technical Uses". Journal of Natural Fibers 18 5 (2021): 705-716. http://www.scopus.com/inward/record.url?eid=2-s2.0-85070249612&partnerID=MN8TOARS.
    Publicado • 10.1080/15440478.2019.1645790
  11. Carvalho, Manuel; Rocha, A. M.; Carvalho, Helder. "Comparative study of needle penetration forces in sewing hems on toweling terry fabrics: influence of needle type and size". (2020): http://hdl.handle.net/1822/66392.
    10.2478/aut-2019-0047
  12. Tohidi, Shafagh Dinparast; Denchev, Z.; Dencheva, Nadya Vasileva; Rocha, A. M.; Rosa, Livia A.; Engesser, Bernhard. "Development of polyamide 6 based single polymer composites reinforced by novel stitched plain fabrics". (2020): http://hdl.handle.net/1822/71549.
    10.1016/j.mtcomm.2020.101068
  13. Tohidi, Shafagh Dinparast; Rocha, Ana Maria A. C.; Dourado, N.; Rezazadeh, Mohammadali; Quyen, Nguyen Trong; Zille, Andrea; Hesseler, Stefan; et al. "Influence of transcrystalline layer on finite element mesoscale modeling of polyamide 6 based single polymer laminate composites". (2020): http://hdl.handle.net/1822/61806.
    10.1016/j.compstruct.2019.111555
  14. Tohidi, Shafagh Dinparast; Dencheva, Nadya Vasileva; Denchev, Z.; Rocha, Ana Maria; Engesser, Bernhard. "Development and characterization of single polymer composites prepared by compression molding of polyamide 6 empty microcapsules and novel woven textile structures". (2020): http://hdl.handle.net/1822/71551.
    10.1016/j.mtcomm.2020.100912
  15. Paleo, A. J.; Vieira, E. M. F.; Wan, K.; Bondarchuk, O.; Cerqueira, M. F.; Bilotti, E.; Melle-Franco, M.; Rocha, A. M.. "Vapor grown carbon nanofiber based cotton fabrics with negative thermoelectric power". (2020): http://hdl.handle.net/1822/72301.
    10.1007/s10570-020-03391-4
  16. Pividal, P.; Rocha, A.M.. "Thermal behavior of bi-layered needle-punched nonwovens produced from 100% raw kapok fibers". Journal of the Textile Institute (2020): 1-8. http://www.scopus.com/inward/record.url?eid=2-s2.0-85087613256&partnerID=MN8TOARS.
    10.1080/00405000.2020.1786209
  17. Shafagh. D. Tohidi; Ana Maria Rocha; Nadya V. Dencheva; António Sérgio Pouzada; Zlatan Denchev. "Comparative Structural and Mechanical Studies on Polyamide 6 Knitted-Reinforced Single Polymer Composites Prepared by Different Reactive Processing Techniques". Polymer Composites (2019): https://doi.org/10.1002/pc.25075.
    10.1002/pc.25075
  18. Ferreira, André G.; Fernandes, Duarte; Catarino, André P.; Rocha, A. M.; Monteiro, João L.. "A loose-coupled fusion of inertial and UWB assisted by a decision-making algorithm for localization of emergency responders". (2019): http://hdl.handle.net/1822/63467.
    10.3390/electronics8121463
  19. Tohidi, Shafagh Dinparast; Rocha, A. M.; Engesser, Bernhard; Dencheva, Nadya Vasileva; Denchev, Z.. "Micromechanical finite element parametric study of polyamide 6 based single polymer composites reinforced by woven textile structures". (2019): http://hdl.handle.net/1822/71574.
    10.1016/j.compstruct.2019.111088
  20. Dinparast Tohidi, Shafagh; Denchev, Z.; Rocha, Ana Maria; Dencheva, Nadya V.; Engesser, Bernhard; Pouzada, A. S.. "Mechano-morphological studies of polyamide 6 based single polymer laminate composites prepared by different reactive processing techniques". (2019): http://hdl.handle.net/1822/71554.
    10.1016/j.polymertesting.2019.106017
  21. Paleo, A. J.; Vieira, E. M. F.; Wan, K.; Bondarchuk, O.; Cerqueira, M. F.; Gonçalves, L. M.; Bilotti, E.; Alpuim, P.; Rocha, A. M.. "Negative thermoelectric power of melt mixed vapor grown carbon nanofiber polypropylene composites". (2019): https://hdl.handle.net/1822/69026.
    10.1016/j.carbon.2019.05.035
  22. Vieito, António Jose Paleo; Staiti, P.; Rocha, A. M.; Squadrito, G.; Lufrano, F.. "Lifetime assessment of solid-state hybrid supercapacitors based on cotton fabric electrodes". (2019): http://hdl.handle.net/1822/74377.
    10.1016/j.jpowsour.2019.226735
  23. Paleo, A.J.; Staiti, P.; Rocha, A.M.; Squadrito, G.; Lufrano, F.. "Erratum to Lifetime assessment of solid-state hybrid supercapacitors based on cotton fabric electrodes”(Journal of Power Sources (2019) 434, (S0378775319307062), (10.1016/j.jpowsour.2019.226735))". Journal of Power Sources 439 (2019): http://www.scopus.com/inward/record.url?eid=2-s2.0-85068478776&partnerID=MN8TOARS.
    10.1016/j.jpowsour.2019.226816
  24. Shafagh D. Tohidi; Ana Maria Rocha; Nadya V. Dencheva; Zlatan Denchev. "Microstructural-mechanical properties relationship in single polymer laminate composites based on polyamide 6". Composites Part B: Engineering 153 (2018): 315-324. https://doi.org/10.1016/j.compositesb.2018.08.106.
    10.1016/j.compositesb.2018.08.106
  25. Dinparast Tohidi, S.; Zille, A.; Catarino, A.P.; Rocha, A.M.. "Effects of base fabric parameters on the electro-mechanical behavior of piezoresistive knitted sensors". IEEE Sensors Journal 18 11 (2018): 4529-4535. http://www.scopus.com/inward/record.url?eid=2-s2.0-85045345596&partnerID=MN8TOARS.
    10.1109/JSEN.2018.2826056
  26. Tohidi, S.D.; Rocha, A.M.; Dencheva, N.V.; Denchev, Z.. "Single polymer laminate composites by compression molding of knitted textiles and microparticles of polyamide 6: Preparation and structure-properties relationship". Composites Part A: Applied Science and Manufacturing 109 (2018): 171-183. http://www.scopus.com/inward/record.url?eid=2-s2.0-85043375535&partnerID=MN8TOARS.
    10.1016/j.compositesa.2018.03.003
  27. Paleo, A.J.; Staiti, P.; Brigandì, A.; Ferreira, F.N.; Rocha, A.M.; Lufrano, F.. "Supercapacitors based on AC/MnO<inf>2</inf> deposited onto dip-coated carbon nanofiber cotton fabric electrodes". Energy Storage Materials 12 (2018): 204-215. http://www.scopus.com/inward/record.url?eid=2-s2.0-85039694656&partnerID=MN8TOARS.
    10.1016/j.ensm.2017.12.013
  28. Catarino, A.; Rocha, A.M.; Abreu, M.J.; Derogarian, F.; Da Silva, J.; Ferreira, J.; Tavares, V.; Correia, M.; Dias, R.. "E-legging for monitoring the human locomotion patterns". Journal of Textile Engineering 59 6 (2014): 153-158. http://www.scopus.com/inward/record.url?eid=2-s2.0-84940359264&partnerID=MN8TOARS.
    10.4188/jte.59.153
  29. Lima, M.; Rocha, A.M.; Monteiro, J.L.; Pinto, E.; Silva, A.. "Textest® - Multiaxial planar testing equipment". Romanian Review Precision Mechanics, Optics and Mechatronics 43 (2013): 25-29. http://www.scopus.com/inward/record.url?eid=2-s2.0-84881489471&partnerID=MN8TOARS.
  30. Dencheva, N.; Denchev, Z.; Pouzada, A.S.; Sampaio, A.S.; Rocha, A.M.; Dencheva, Nadya Vasileva; Pouzada, A. S.; Sampaio, Ana Sofia; Rocha, A. M.. "Structure-properties relationship in single polymer composites based on polyamide 6 prepared by in-mold anionic polymerization". Journal of Materials Science 48 20 (2013): 7260-7273. http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=ORCID&SrcApp=OrcidOrg&DestLinkType=FullRecord&DestApp=WOS_CPL&KeyUT=WOS:000322277700045&KeyUID=WOS:000322277700045.
    10.1007/s10853-013-7546-8
  31. Zambrano, A.; Derogarian, F.; Dias, R.; Abreu, M.J.; Catarino, A.; Rocha, A.M.; Machado Da Silva, J.; et al. "A wearable sensor network for human locomotion data capture". Studies in Health Technology and Informatics 177 (2012): 216-223.
    10.3233/978-1-61499-069-7-216
  32. Onofrei, E.; Rocha, A.M.; Catarino, A.. "Investigating the effect of moisture on the thermal comfort properties of functional elastic fabrics". Journal of Industrial Textiles 42 1 (2012): 34-51. http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=ORCID&SrcApp=OrcidOrg&DestLinkType=FullRecord&DestApp=WOS_CPL&KeyUT=WOS:000305536100003&KeyUID=WOS:000305536100003.
    10.1177/1528083711425840
  33. Carvalho, Helder; Silva, Luís F.; Rocha, A. M.; Monteiro, João L.; Carvalho, H.; Rocha, A.. "Automatic presser-foot force control for industrial sewing machines". International Journal of Clothing Science and Technology 24 1 (2012): 36-55. http://hdl.handle.net/1822/14917.
    10.1108/09556221211194336
  34. Onofrei, E.; Rocha, A.M.; Catarino, A.. "The influence of knitted fabrics' structure on the thermal and moisture management properties". Journal of Engineered Fibers and Fabrics 6 4 (2011): 10-22. http://www.scopus.com/inward/record.url?eid=2-s2.0-82755182062&partnerID=MN8TOARS.
  35. Alves, J.; Catarino, A.; Carvalho, H.; Monteiro, J.; Rocha, A.M.; Alves, Joel; Catarino, André P.; et al. "Throughput limits of two 802.15.4 wireless networks applications for signal acquisition". Proceedings - ISIE 2011: 2011 IEEE International Symposium on Industrial Electronics (2011): 951-956. http://hdl.handle.net/1822/14943.
    10.1109/ISIE.2011.5984287
  36. Rocha, Ana. "Thermal comfort properties of knitted fabrics made of elastane and bioactive yarns". Journal of Materials Science and Engineering A (2011):
  37. Onofrei, Elena; Rocha, A. M.; Catarino, André P.. "Thermal comfort properties of knitted fabrics made of elastane and bioactive yarns". (2011): http://hdl.handle.net/1822/14884.
  38. Jimenez, L.; Rocha, A. M.; Aranberri, I.; Covas, J. A.; Catarino, A. P.; Vincenzini, P; Paradiso, R. "ELECTRICALLY CONDUCTIVE MONO FILAMENTS FOR SMART TEXTILES". Smart Textiles 60 (2009): 58-63. http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=ORCID&SrcApp=OrcidOrg&DestLinkType=FullRecord&DestApp=WOS_CPL&KeyUT=WOS:000265016000009&KeyUID=WOS:000265016000009.
  39. Carvalho, H.; Rocha, A.M.; Monteiro, J.L.; Carvalho, Helder; Rocha, A. M.; Monteiro, João L.. "Measurement and analysis of needle penetration forces in industrial high-speed sewing machine". Journal of the Textile Institute 100 4 (2009): 319-329. http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=ORCID&SrcApp=OrcidOrg&DestLinkType=FullRecord&DestApp=WOS_CPL&KeyUT=WOS:000268228300004&KeyUID=WOS:000268228300004.
    10.1080/00405000701806839
  40. Catarino, A.; Rocha, A.; Monteiro, J.L.; Soares, F.; Catarino, André P.; Rocha, A. M.; Monteiro, João L.; Soares, Filomena. "Using multivariate statistics on detection of particular signals during production of knitwear". IEEE International Symposium on Industrial Electronics 4 (2006): 3361-3366. http://hdl.handle.net/1822/5772.
    10.1109/ISIE.2006.296005
  41. Carvalho, H; Rocha, A; Monteiro, JL; Silva, LF; IEEE. "Planning, control and monitoring tools for industrial garment assembly processes". 2003 Ieee International Conference on Industrial Technology, Vols 1 and 2, Proceedings (2003): 381-386. http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=ORCID&SrcApp=OrcidOrg&DestLinkType=FullRecord&DestApp=WOS_CPL&KeyUT=WOS:000221383100073&KeyUID=WOS:000221383100073.
  42. Silva, L.F.; Lima, M.; Carvalho, H.; Rocha, A.M.; Ferreira, F.N.; Monteiro, J.L.; Couto, C.; et al. "Actuation, monitoring and closed-loop control of sewing machine presser foot". Transactions of the Institute of Measurement and Control 25 5 (2003): 419-432. http://www.scopus.com/inward/record.url?eid=2-s2.0-0347537879&partnerID=MN8TOARS.
    10.1191/0142331203tm0097oa
  43. Catarino, A.; Rocha, A.M.; Monteiro, J.. "Monitoring knitting process through yarn input tension: New developments". IECON Proceedings (Industrial Electronics Conference) 3 (2002): 2022-2027.
    10.1109/IECON.2002.1185283
  44. Carvalho, H; Ferreira, FN; Monteiro, JL; Rocha, AM; Adolfsson, J; Karlsen, J. "A sewing rig with automatic feature extraction". Mechatronics '98 (1998): 727-732. http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=ORCID&SrcApp=OrcidOrg&DestLinkType=FullRecord&DestApp=WOS_CPL&KeyUT=WOS:000081130500118&KeyUID=WOS:000081130500118.
    10.1016/B978-008043339-4/50118-8
  45. Rocha, A.M.; Lima, M.F.; Ferreira, F.N.; Araújo, M.D.. "Developments in Automatic Control of Sewing Parameters". Textile Research Journal 66 4 (1996): 251-256. http://www.scopus.com/inward/record.url?eid=2-s2.0-0029673484&partnerID=MN8TOARS.
    10.1177/004051759606600411
  46. De Araujo, M.D.; Rocha, A.M.; Ferreira, F.; Lima, M.; Fernandes, P.; Salgado, J.. "Advancements in automatic control of sewing parameters". in: World textile congress papers, Huddersfield, 1994 (1994): http://www.scopus.com/inward/record.url?eid=2-s2.0-0028151871&partnerID=MN8TOARS.
  47. De Araujo, M.; Rocha, A.M.; Neves, M.; Lima, M.. "Knitting machine design and performance with the aid of transducers". (1987): http://www.scopus.com/inward/record.url?eid=2-s2.0-0023138641&partnerID=MN8TOARS.
Capítulo de livro
  1. Catarino, André P.; Rocha, A. M.; Abreu, Maria José; Silva, José da; Ferreira, José C.; Tavares, Vítor; Correia, Miguel Velhote; Derogarian, Fardin; Dias, Rúben. "Applications of textile based electrodes in gait analysis: Prolimb Project". INEGI, 2013.
  2. Silva, M.; Catarino, A.; Carvalho, H.; Rocha, A.; Monteiro, J.; Montagna, G.; IEEE. "Study of vital sign monitoring with textile sensors in swimming pool environment". 4202-4207. 2009.
Livro
  1. Abreu, M.J.; Carvalho, H.; Catarino, A.; Rocha, A.; Abreu, Maria José Araújo Marques; Carvalho, Helder; Catarino, André P.; Rocha, A. M.. Integration and Embedding of Vital Signs Sensors and Other Devices into Textiles. Woodhead Publishing Limited. 2010.
    10.1533/9780857090348.381
  2. Da Rocha, A.M.M.F.. Development of textile-based high-tech products: The new challenge. 2005.
Tese / Dissertação
  1. Neves, Ana Catarina Machado das. "Estudo da influência das variáveis envolvidas no processo de tecelagem nas propriedades de tecidos de lyocell e bambu". Mestrado, 2022. https://hdl.handle.net/1822/83749.
  2. Gonçalves, Ana Sofia da Silva. "Estudo de defeitos na indústria têxtil". Mestrado, 2022. https://hdl.handle.net/1822/83758.
  3. Pinto, Alexandra Maia da Silva Torgal. "Design de vestuário de proteção ultravioleta". Mestrado, 2021. http://hdl.handle.net/1822/76555.
  4. Moreira, Mónica Andreia Teixeira. "Funcionalização de substratos têxteis celulósicos com objetivo de conferir elevada proteção ultravioleta". Mestrado, 2021. http://hdl.handle.net/1822/76088.
  5. Parra, María Paz Pividal. "Estudio de las mantas no tejidas punzonadas de fibras naturales de capoc y lino para aplicaciones técnicas". Doutoramento, 2020. https://hdl.handle.net/1822/76867.
  6. Silva, Pedro Manuel Costa Gomes da. "Estudo de estruturas têxteis aplicadas em revestimento automóvel". Mestrado, 2019. http://hdl.handle.net/1822/69582.
  7. Quillien, Héloïse le Forestier de. "Development of a multiaxial fabric out of untwisted flax slivers for high-performance composites". Mestrado, 2018. http://hdl.handle.net/1822/74341.
  8. Oliveira, Joaquim Jorge Cardoso de. "Caraterização do processo e estudo das propriedades de tecidos bi-elásticos". Mestrado, 2016. https://hdl.handle.net/1822/47316.
  9. Pires, Lila Maciel. "Joias em malha com efeitos 3D: estendendo os limites da tecnologia". Mestrado, 2014. http://hdl.handle.net/1822/33946.
  10. Rocha, A. M.. "Contribuição para o controlo automático dos parâmetros de costura: estudo da dinâmica da penetração da agulha e da alimentação do tecido". Doutoramento, 1996. https://hdl.handle.net/1822/44.

Propriedade Intelectual

Patente
  1. Catarino, André P.; Carvalho, Helder; Dias, M. J.; Rocha, A. M.. 2013. "Elétrodos baseados em substratos têxteis".

Outros

Outra produção
  1. N-type thermoelectric textile fabrics based on vapor grown carbon nanofibers. Thermoelectric (TE) devices that convert a heat gradient directly into electricity are considered as a clean technology for energy harvesting. Both hole-transporting (p-type) and electron-transporting (n-type) materials are required in order to fabricate a thermoelectric module. Carbon nanotube (CNT)-based textile fabrics are relevant in this context for the production of wearable TE modules due t. 2020. Machado, S.; Vieira, E. M. F.; Rocha, A. M.; Vieito, António Jose Paleo. http://hdl.handle.net/1822/66420.
    10.3390/CIWC2020-06828
  2. Textile electrodes for heart rate measurement: A comparative study for firefighters' monitoring. This work compares the performance of wet gel electrodes and textile-based electrodes for monitoring the firefighters' heart rate during on-duty missions. Both types of electrodes are connected to a customized wearable node that acquires the bio-signals and computes the heart rate. Both types of electrodes were evaluated by two subjects and in three different scenarios: sitting, standing and movin. 2019. Ferreira, André Filipe Gonçalves; Fernandes, Duarte Manuel Azevedo; Catarino, André P.; Monteiro, João L.; Rocha, A. M.. http://hdl.handle.net/1822/66320.
    10.4028/www.scientific.net/KEM.812.53
  3. Shape memory alloys applications on weft knitted fabrics towards a compression sock for venous disease. Shape Memory Alloys (SMA) are currently widely used in several areas, and it is possible to identify applications in textiles. Nevertheless there still are areas where they can be applied with success, and one of them may be the compression. The study that is presented here intends to contribute for a better understanding about the behaviour of SMA in textile structures, namely on weft knitted fab. 2017. Pereira, F. R.; Rocha, A. M.; Catarino, André P.; Pereira, F.R.; Rocha, A.M.; Catarino, A.P.. http://hdl.handle.net/1822/46624.
  4. Development and characterization of cotton elastic yarns to improve wear comfort of bi-elastic thin fabrics. Clothing is our second skin, beyond the aesthetic function it primarily has the protective function. One cannot speak about clothing design without mentioning comfort and we may even say that they are not dissociable. The clothing design, in conceptual sense, cannot be successful if it does not take into account the comfort component. Among the many comfort dimensions, the sensorial and ergonomic. 2016. Broega, A. C.; Rocha, A. M.; Souto, A. Pedro; Ferreira, Fernando; Oliveira, L.. http://hdl.handle.net/1822/43393.
  5. Energy saving mechanism for a Smart Wearable System: monitoring infants during the sleep. In Smart Wearable Systems (SWS), the wearable devices are powered by batteries with very limited energy available. These emergent systems have strong Quality of Service (QoS) requirements, with focus on reliable communication and low power consumption. This is the scope of the Baby Night Watch, a project developed in the context of the European Texas Instruments Innovation Challenge (TIIC) 2015. T. 2016. Fernandes, Duarte; Ferreira, André G.; Branco, Sérgio; Abrishambaf, Reza; Carvalho, Helder; Mendes, José A.; Cabral, Jorge; et al. http://hdl.handle.net/1822/42253.
    10.1109/ICIT.2016.7475062
  6. A smart wearable system for sudden infant death syndrome monitoring. Sudden Infant Death Syndrome (SIDS) is one of the major causes of death among infants during their sleep. To increase the safety of the infants, we matched different emergent research fields for the development of Baby Night Watch. This Smart Wearable System (SWS), developed under the context of the European Texas Instruments Innovation Challenge (TIIC) 2015, is composed by the following elements:. 2016. Ferreira, André G.; Fernandes, Duarte Manuel Azevedo; Branco, Sérgio; Monteiro, João L.; Cabral, Jorge; Catarino, André P.; Rocha, A. M.; et al. http://hdl.handle.net/1822/51082.
    10.1109/ICIT.2016.7475060
  7. Smart shirt with embedded vital sign and moisture sensing. This paper presents the development of a smart shirt with embedded electrodes in two-lead configuration for heart rate measurement and a knitted moisture sensor for sweat detection. Signal conditioning for heart rate measurement is based on the Analog Devices AD8232 heart rate monitor front-end. The shirt is part of a fireman interactive Personal Protective Equipment (PPE), which monitors informat. 2015. Lage, João; Catarino, André P.; Carvalho, Helder; Rocha, A. M.. http://hdl.handle.net/1822/37246.
  8. Health monitoring using textile sensors and electrodes: an overview and integration of technologies. Publicado em "MeMeA 2014 International Symposium on Medical Measurements and Applications : proceedings", ISBN 978-1-4799-2920-7. This paper gives an overview of technologies and results of integration and test of textile integrated sensors and electrodes for monitoring of biosignals (electrocardiographic - ECG and electromyographic - EMG), breathing and moisture. Using a seamless jacquard knittin. 2014. Carvalho, Helder; Catarino, André P.; Rocha, A. M.; Postolache, Octavian; Carvalho, H.; Catarino, A.P.; Rocha, A.; Postolache, O.. http://hdl.handle.net/1822/30098.
    10.1109/MeMeA.2014.6860033
  9. Biosignal monitoring implemented in a swimsuit for athlete performance evaluation. Monitor athletes during exercise has always been a major challenge for engineers and researchers due to the restrictions involving the measurement of physiological and performance parameters. An athlete should have complete freedom to perform his normal activity, in order to be correctly monitored. The advent of e-textiles can give an important contribution to overcome these limitations since it i. 2011. Catarino, André P.; Carvalho, Helder; Rocha, A. M.; Montagna, Gianni; Dias, M. J.. http://hdl.handle.net/1822/14405.
  10. Electrically conductive monofilaments for smart textiles. The main objective of this work is to develop conductive yarns to be used as electrical wiring in e-textiles with the typical mechanical properties of a textile yarn. Present work deals with the study of conductive polymer composites filaments of PP (polypropylene) with CB (carbon black), carbon black of high conductivity (CBHC) and CF (carbon fibers) .The novelty of this work resides in creating. 2009. Jiménez, L.; Rocha, A. M.; Aranberri, I.; Covas, J. A.; Catarino, André P.. http://hdl.handle.net/1822/17928.
    10.4028/www.scientific.net/AST.60.58
  11. Study and optimization of swimming performance in swimsuit designed with seamless technology. Hydrodynamic resistance, also called water drag, is one of the most discussed issues in swimming sport and recognized as a major factor in terms of swimming performance. Different authors tried to demonstrate that body compression is responsible for a better result in swimming, based on the fact that body modelling improves energy saving and helps to maintain the performance on repetitive movement. 2009. Montagna, Gianni; Catarino, André P.; Carvalho, Helder; Rocha, A. M.. http://hdl.handle.net/1822/9636.
  12. Study of vital sign monitoring with textile sensors in swimming pool environment. This paper presents the results of a series of experiments aiming at the optimisation of vital sign monitoring using textile electrodes to be used in a swimsuit. The swimsuit will integrate sensors for the measurement of several physiological and biomechanical signals; this paper will focus on ECG and respiratory movement analysis. The data obtained is mainly intended to provide tools for evaluati. 2009. Silva, Marcos; Catarino, André P.; Carvalho, Helder; Montagna, Gianni; Monteiro, João L.; Rocha, A. M.. http://hdl.handle.net/1822/9910.
    10.1109/IECON.2009.5414898
  13. Parameter monitoring and control in industrial sewing machines : an integrated approach. The industrial manufacturing of sewn products has always been one of the critical processes of the textile chain concerning quality assurance. Assuring the appropriate set-up and operation of all the machines, and thus the final seam quality, is a very complex task. Traditionally, this task is accomplished by empirical methods, with machine setting and quality control relying on the skills of oper. 2008. Carvalho, Helder; Silva, Luís F.; Monteiro, João L.; Rocha, A. M.; Carvalho, H.; Rocha, A.; Monteiro, J.L.; Silva, L.L.. http://hdl.handle.net/1822/9623.
    10.1109/ICIT.2008.4608388
  14. A new electromagnetic actuation system on an industrial sewing machine with on-line efficiency monitoring. This paper briefly reviews the study to evaluate the standard presser foot performance and a new actuation set-up to avoid the bouncing and the lack of fabric control. The compression force and displacement waveforms are also presented and widely discussed, as well as the seam’s quality analysis. A spectral (Fast Fourier Transform and Harmonic Distortion) analysis on the obtained waveforms, as wel. 2004. Silva, Luís F.; Lima, Mário; Ferreira, Fernando; Rocha, A. M.; Carvalho, Helder; Couto, Carlos. http://hdl.handle.net/1822/16460.
  15. Advancements in on-line monitoring and control of parameters in knitting and sewing processes. This paper presents a summary of the developments in process control in textile processes at the University of Minho, by a multidisciplinary research group involving three different departments (Textile, lectronic and Mechanical Engineering). The studies target the automatic process parameter monitoring and control in the areas of industrial sewing and knitting.. Fundação para a Ciência e a Tecnol. 2004. Carvalho, Helder; Catarino, André P.; Carvalho, Miguel; Silva, Luís F.; Ferreira, Fernando; Rocha, A. M.; Monteiro, João L.; Soares, Filomena. http://hdl.handle.net/1822/4237.
  16. Surveillance and control of the yarn input tension on circular weft knitting machines : new approaches. The Yarn Input Tension - YIT is one of the most important parameters in weft knitting industry. This parameter must be maintained between limits in order to produce knitted fabric without faults. However, YIT is not the only parameter to control and monitor for preventing faults. The knitting elements and the knitting machine itself should be monitored to improve productivity and quality. The moni. 2004. Catarino, André P.; Rocha, A. M.; Monteiro, João L.; Soares, Filomena; Catarino, A.; Rocha, A.M.; Monteiro, J.L.; et al. http://hdl.handle.net/1822/6043.
    10.1109/ISIE.2004.1571839
  17. A system for knitting process monitoring and fault detection on weft circular knitting machines. From the production manager point of view, the knowledge of how well a knitting machine is working during production is very important. This information allows the manager to schedule all plans and also to know the overall production level of a manufacturing plant. For this purpose there are many system information packages. One of the most important items for production is the number of faults oc. 2004. Catarino, André P.; Rocha, A. M.; Monteiro, João L.; Soares, Filomena. http://hdl.handle.net/1822/6016.
  18. Signal feature extraction for sewing analysis using non-linear tecniques. Comunicação apresentada no International Symposium on Industrial Electronics, Rio de Janeiro, Brasil, 9 - 11 Junho 2003.. This paper describes the measurement of a proc-ess variable in industrial sewing machines using a piezoelectric sensing system and non-linear filtering and processing tech-niques. The objective is to obtain a measure of the needle pene-tration and withdrawal forces in a fabric,. 2003. Carvalho, Helder; Ferreira, Pedro; Rocha, A. M.; Monteiro, João L.; Carvalho, H.; Ferreira, P.; Rocha, A.; Monteiro, J.. http://hdl.handle.net/1822/4792.
    10.1109/ISIE.2003.1267971
  19. Planning, control and monitoring tools for industrial garment assembly processes. Garment construction is a complex process due to the properties of the textile materials. Furthermore it still relies on human operators in most of the material handling and process monitoring. On the other hand, the set-up of the machines is still based on trial-and-error and empirical knowledge. Current market trends with higher demand on quality, shorter production runs and increasing variety o. 2003. Carvalho, Helder; Rocha, A. M.; Monteiro, João L.; Silva, Luís F.. http://hdl.handle.net/1822/4746.
  20. Process control in next-generation sewing machines : a project overview. The sewing machine created in the XIX century has roughly remained unchanged in its basic technologies. Although a great range of mechanical and electronic technologies has boosted its development enormously, the process of sewing itself, however, although perfected in many aspects, has remained uncontrolled.Many of the phenomena occurring at high-speed sewing (up to 10000 stitches per minute) are. 2003. Carvalho, Helder; Rocha, A. M.; Monteiro, João L.; Silva, Luís F.; Lima, Mário; Ferreira, Fernando; Couto, Carlos. http://hdl.handle.net/1822/6080.