Bader, N.; Hajosch, A.; Peschmann, C.; Stucke-Straub, K.; Wirtz, C.R.; Kast, R.E.; Halatsch, M.-E.; Capanni, F.; Karpel-Massler, G.
Assessment of Photodynamic Therapy Penetration Depth in a Synthetic Pig Brain Model: A Novel Approach to Simulate the Reach of PDT-Mediated Effects In Vitro. Pharmaceuticals 2025, 18, 1837.
https://doi.org/10.3390/ph18121837
AMA Style
Bader N, Hajosch A, Peschmann C, Stucke-Straub K, Wirtz CR, Kast RE, Halatsch M-E, Capanni F, Karpel-Massler G.
Assessment of Photodynamic Therapy Penetration Depth in a Synthetic Pig Brain Model: A Novel Approach to Simulate the Reach of PDT-Mediated Effects In Vitro. Pharmaceuticals. 2025; 18(12):1837.
https://doi.org/10.3390/ph18121837
Chicago/Turabian Style
Bader, Nicolas, Annika Hajosch, Christian Peschmann, Kathrin Stucke-Straub, Christian Rainer Wirtz, Richard Eric Kast, Marc-Eric Halatsch, Felix Capanni, and Georg Karpel-Massler.
2025. "Assessment of Photodynamic Therapy Penetration Depth in a Synthetic Pig Brain Model: A Novel Approach to Simulate the Reach of PDT-Mediated Effects In Vitro" Pharmaceuticals 18, no. 12: 1837.
https://doi.org/10.3390/ph18121837
APA Style
Bader, N., Hajosch, A., Peschmann, C., Stucke-Straub, K., Wirtz, C. R., Kast, R. E., Halatsch, M.-E., Capanni, F., & Karpel-Massler, G.
(2025). Assessment of Photodynamic Therapy Penetration Depth in a Synthetic Pig Brain Model: A Novel Approach to Simulate the Reach of PDT-Mediated Effects In Vitro. Pharmaceuticals, 18(12), 1837.
https://doi.org/10.3390/ph18121837