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Research investigations commonly explore the compound in experimental models examining: Peptide signalling pathways Regulatory network interactions Peptide interaction dynamics Intracellular signalling mechanisms Comparative peptide research Molecular signalling pathway analysis Receptor interaction modelling Research Applications In controlled research environments, AHK-Cu may be utilised in experimental models designed to explore peptide signalling systems and molecular interactions

Disclosure of interest: nothing to disclose Poster Session II - DIGITAL TRANSFORMATION, AI AND ROBOTICS 07.00 - DIGITAL TRANSFORMATION, AI AND ROBOTICS - 07.01 - TECHNOLOGY INNOVATIONS: ROBOTS, VIRTUAL REALITY, ARTIFICIAL INTELLIGENCE AND MORE P909 - ESOC25-201 NEUROLOGICAL SIGNS IDENTIFIED BY AI RELATED TO STROKE PATIENT RECANALIZATION Sofa Vargas Ibarra 1 , Vincent Vigneron 1 , Nicolas Chausson 2 , Hichem Maaref 1 , Sonia Garcia 3 , Didier Smadja 2 , Yann Lhermitte 2 1 IBISC Laboratory, Evry University, Paris-Saclay, Evry-Courcouronnes, France, 2 Centre Hospitalier Sud Francilien, Corbeil-Essonnes, France, 3 SAMOVAR, Tlcom SudParis, Institut Polytechnique de Paris, Palaiseau, France Background and Aims: Thrombus dimensions are critical factors influencing early recanalisation following thrombolysis in stroke patients and the Susceptibility Vessel Sign (SVS), a ferromagnetic artefact, reflects the composition of the thrombus [1] (iron content and therefore red blood cell content)

They can evaluate your specific condition, provide guidance on dosage and administration, and ensure that BPC-157 is appropriate for your knee pain management