Onderzoek
Er is veel informatie en onderzoek beschikbaar over de zes pijlers van het CellRecoverySystems. De overeenkomst is dat het allen op natuurkunde gebaseerde systemen zijn. Ze functioneren in verschillende frequentiegebieden en bieden zo een bijzonder uitgebreide en complementaire ondersteuning.
De zes verschillende therapieën kunnen apart van elkaar worden aangezet en ingesteld, zodat een optimale synergie mogelijk is.
Voor de geïnteresseerden hebben we van de verschillende technieken een overzicht van onderzoek en informatie samengesteld.
Cold Plasma
Cold plasma inactivation of chronic wound bacteria (2016)
N. Mohd Nasir, B.K. Lee, S.S. Yap, K.L. Thong, S.L. Yap
Cold plasma selectivity and the possibility of a paradigm shift in cancer therapy (2011)
M Keidar, R Walk, A Shashurin, P Srinivasan, A Sandler, S Dasgupta, R Ravi, R Guerrero-Preston & B Trink
Cold Plasma Cancer Therapy (2019)
Keidar, M., Yan, D., Sherman, J.
Cold Plasma in Medicine and Healthcare: The New Frontier in Low Temperature Plasma Applications (2020)
Laroussi, M.
White paper on plasma for medicine and hygiene: Future in plasma health sciences (2018)
Bekeschus, S., Favia, P., Robert, E., von Woedtke, T.,
Bioelectric signaling as a unique regulator of development and regeneration (2021)
Harris, M.
Elektromagnetisch Veldtherapie
Mechanisms and therapeutic effectiveness of pulsed electromagnetic field therapy in oncology (2016)
Vadalà, M., Morales‐Medina, J. C., Vallelunga, A., Palmieri, B., Laurino, C., & Iannitti, T.
Electromagnetic field induced biological effects in humans (2015)
Jolanta Kaszuba-Zwoinska, Jerzy Gremba, Barbara Gałdzinska-Calik, Karolina Wójcik-Piotrowicz, Piotr J Thor
Electromagnetic field and brain development (2015)
Kaplan, S., Deniz, O. G., Önger, M. E., Türkmen, A. P., Yurt, K. K., Aydın, I., Altunkaynak, B. Z., & Davis, D.
Electromagnetic field exposure as a plausible approach to enhance the proliferation and differentiation of mesenchymal stem cells in clinically relevant scenarios (2022)
Hamid, H. A., Sarmadi, V. H., Prasad, V., Ramasamy, R., & Miskon, A.
Electromagnetic field therapy in cardiovascular diseases: A review of patents, clinically effective devices, and mechanism of therapeutic effects (2023)
Soltani, D., Samimi, S., Vasheghani-Farahani, A., Shariatpanahi, S. P., Abdolmaleki, P., & Ansari, A. M.
Electromagnetic stimulation increases mitochondrial function in osteogenic cells and promotes bone fracture repair (2021)
Hollenberg, A., Huber, A., Smith, C., Eliseev, R.
PhotoBioModulatie
Prospective, Randomized Study on the Efficacy and Safety of Local UV-Free Blue Light Treatment of Eczema (2016)
Keemss, K., Pfaff, S. C., Born, M., Liebmann, J., Merk, H. F., & Von Felbert, V.
The Effects of 830 nm Light-Emitting Diode Therapy on Acute Herpes Zoster Ophthalmicus: A Pilot Study (2013)
Kui Young Park, Tae Young Han, In Su Kim, In Kwon Yeo, Beom Joon Kim, Myeung Nam Kim
Inhibitory effect of 660-nm LED on melanin synthesis in in vitro and in vivo (2017)
Oh, C. T., Kwon, T., Choi, E. J., Kim, S. R., Seok, J., Mun, S. K., Yoo, K. H., Choi, Y. S., Choi, S. Y., & Kim, B. J.
Green light emitting diodes accelerate wound healing: characterization of the effect and its molecular basis in vitro and in vivo (2012)
Fushimi, T., Inui, S., Nakajima, T., Ogasawara, M., Hosokawa, K., & Itami, S.
Infrarood
Near infrared light protects cardiomyocytes from hypoxia and reoxygenation injury by a nitric oxide dependent mechanism (2009)
Rong Zhang, Yasushi Mio, Philip F Pratt, Nicole Lohr, David C. Warltier, Harry T. Whelan, Daling Zhu, Elizabeth R. Jacobs, Meetha Medhora, and Martin Bienengraeber
Near-infrared photonic energy penetration: can infrared phototherapy effectively reach the human
brain? (2015)
Theodore A Henderson, Larry D Morries
Turning On Lights to Stop Neurodegeneration: The Potential of Near Infrared Light Therapy in
Alzheimer’s and Parkinson’s Disease (2016)
Daniel M. Johnstone, Cécile Moro, Jonathan Stone, Alim-Louis Benabid and John Mitrofanis
Mitochondrial signal transduction in accelerated wound and retinal healing by near-infrared light therapy (2004)
Eells, J. T., Wong-Riley, M. T., VerHoeve, J., Henry, M., Buchman, E. V., Kane, M. P., Gould, L. J., Das, R., Jett, M., & Hodgson, B. D.
Microvibratie
The effect of low-frequency sound stimulation on patients with fibromyalgia: A clinical study (2015)
Lili Naghdi, Heidi Ahonen, Pasqualino Macario, Lee Bartel
Vibroacoustic Treatment for Chronic Pain and Mood Disorders in a Specialised Healthcare Setting (2017)
Elsa A. Campbell, Jouko Hynynen, Esa Ala-Ruona
Vibroacoustic Sound Therapy Improves Pain Management and More (2004)
Chris Boyd-Brewer, Ruth McCaffrey
Effect of low frequency sound vibration on acute stress response in university students—Pilot randomized controlled trial (2022)
Kantor J, Vilímek Z, Vítězník M, Smrčka P, Campbell EA, Bucharová M, Grohmannová J, Špinarová G, Janíčková K, Du J, Li J, Janátová M, Regec V, Krahulcová K and Kantorová L
Geluid & Muziek
The effect of music therapy on background pain, anxiety, depression, vital signs, and medication usage in adult burn patients in the Intensive Care Unit: A randomized controlled trial (2025)
Mark Ettenberger, Rafael Maya, Andrés Salgado-Vasco, Jose Gabriel Cordoba-Silva, Moshé Amarillo, William Betancourt-Zapata, Juliana Marín-Sánchez, Viviana Gómez-Ortega, Mario Valderrama
Music and low-frequency vibrations for the treatment of chronic musculoskeletal pain in elderly: A pilot study (2021)
Thom A H Eshuis, Peter J C Stuijt, Hans Timmerman, Peter Michael L Nielsen, André Paul Wolff, Remko Soer
The Effect of Low Frequency Sound on Heart Rate Variability and Subjective Perception: A Randomized Crossover Study (2022)
Zdeněk Vilímek, Jiří Kantor, Jakub Krejčí, Zbyněk Janečka, Zuzana Jedličková, Anna Nekardová, Michal Botek, Monika Bucharová, Elsa A Campbell
Music therapy for patients with depression: systematic review and meta-analysis of randomised controlled trials (2025)
Youn Joo Lee, Seog Ju Kim, Jihyun Yoon, Jung Hwan Lee





