LOSKE MEHLING, ACHIM MAX

LOSKE MEHLING, ACHIM MAX

FÍSICA · Nivel 3

shock waves extracorporeal shock wave lithotripsy ESWL SWL extracorporeal shock wave therapy ESWT acoustic cavitation cell transfection genetic transformation tandem shock waves

Desde 1987 es en Universidad Nacional Autónoma de México Campus Juriquilla

Achim Max Loske Mehling holds a B.Sc. degree in Physics Engineering, a M.Sc. degree in Physics, a Ph.D. in Applied Physics, received the “Gabino Barreda” medal granted by the University Council of the “Universidad Nacional Autónoma de México” (UNAM) and...

Achim Max Loske Mehling holds a B.Sc. degree in Physics Engineering, a M.Sc. degree in Physics, a Ph.D. in Applied Physics, received the “Gabino Barreda” medal granted by the University Council of the “Universidad Nacional Autónoma de México” (UNAM) and has been distinguished by the National Council of Science and Technology of Mexico (CONACYT) with the highest level. His master and doctoral thesis involved innovations in extracorporeal shock wave lithotripsy. Dr. Loske is Head of the Shock Wave Laboratory at the Center of Applied Physics and Advanced Technology at UNAM and the lead researcher on several programs that combine basic science with applications of shock waves to medicine and biotechnlogy, such as the design of more efficient shock wave sources, shock wave-mediated cell transfection, drug-delivery, genetic transformation of microorganisms, as well as the interaction of shock waves with matter and biological tissue. For more than 35 years, he has maintained a strong commitment to teaching in physics and mathematics.

Leer más

Perfil académico

Nombre ACHIM MAX LOSKE MEHLING
Área FÍSICO-MATEMÁTICAS Y CIENCIAS DE LA TIERRA
Campo FÍSICA
Disciplina OTRAS ESPECIALIDADES FÍSICAS
Especialidad ONDAS DE CHOQUE
CVU 8551
Institución
Dependencia COORDINACION DE LA INVESTIGACION CIENTIFICA
Entidad QUERETARO
Nivel 3
Vigencia Inicio: 01/01/2026
Fin: 31/12/2035

Publicaciones ORCID

2024
Underwater Shock Wave-Enhanced Cavitation to Induce Morphological Changes and Cell Permeabilization in Microscopic Fungi Fluids
2023
Extracción de quitina de Aspergillus niger asistida por ondas de choque: caracterización fisicoquímica y eléctrica Mundo Nano. Revista Interdisciplinaria en Nanociencias y Nanotecnología
Green Synthesis and Antiproliferative Activity of Gold Nanoparticles of a Controlled Size and Shape Obtained Using Shock Wave Extracts from Amphipterygium adstringens Bioengineering
2022
Effect of Shock Waves on the Growth of Aspergillus niger Conidia: Evaluation of Germination and Preliminary Study on Gene Expression Journal of Fungi
Effect of Shock Waves on the Growth of Aspergillus niger Conidia: Evaluation of Germination and Preliminary Study on Gene Expression
2020
The influence of the number of shock waves and the energy flux density on the Raman spectrum of collagen type I from rat Shock Waves
2017
Dynamic light scattering: A fast and reliable method to analyze bacterial growth during the lag phase Journal of Microbiological Methods
Erratum to: Shock Wave-Induced Damage and Poration in Eukaryotic Cell Membranes (The Journal of Membrane Biology, (2017), 250, 1, (41-52), 10.1007/s00232-016-9921-2) Journal of Membrane Biology
Extracellular Expression in Aspergillus niger of an Antibody Fused to Leishmania sp. Antigens Current Microbiology
Shock Wave-Induced Damage and Poration in Eukaryotic Cell Membranes Journal of Membrane Biology