Dartsch Scientific

In vitro studies on the activation of cell metabolism in organ-specific cell cultures

All three studies were carried out at the Institute for Cell Biological Test Systems (DARTSCH SCIENTIFIC GMBH) by Prof Dr rer. nat. Peter C. Dartsch.

Arrangement of the 96-well culture plates below and above the Mini-Rayonex device 

In vitro studies on the activation of cell metabolism in organ-specific cell cultures 

Since 1982, we have been dedicated to developing complementary medical solutions aimed at stimulating and supporting the organism’s own regulation through cell stimulation. We have developed two Class I and IIa medical devices, certified to DIN EN ISO 13485 for medical use, which have been designed to complement each other: The stationary high-end device Rayocomp PS 1000 polar 4.0 med. features the ECG-based Rayoscan® function, which uses biofeedback methods to create an energetic fingerprint of the patient. Based on this energetic analysis, personalised treatment concepts can be formulated. With the Rayocomp PS 10 med. these can be used at home on an outpatient basis – i.e. during home sessions under the supervision of a practitioner.

In vitro studies to simulate wound healing in cultured connective tissue fibroblasts

The Mini-Rayonex has already proven its value and effectiveness to hundreds of thousands of users worldwide. Another in vitro study conducted by Dartsch Scientific used cultured connective tissue fibroblasts to investigate whether the frequency spectra emitted by the device could produce quantifiable positive effects in vitro, as assessed by objective and established measurement methods. The stimulating effect of Mini-Rayonex on wound healing observed by users was confirmed in the in vitro study. The effect of the Mini-Rayonex resulted in a stimulation percentage of almost 20 %. This test result shows that the use of the Mini-Rayonex can, for example, support the acceleration of healing processes.

Note: In vitro studies cannot be transferred 1:1 to humans.

Photomicrographs of stimulated and non-stimulated connective tissue fibroblasts