Responsible pathogen complex #
Dr. Clark realized that allergies are not random immune reactions, but the result of a specific pathogen complex centered in the liver. The extreme form of allergies requires killing the sheep liver fluke and other liver flukes. When flukes are present, solvents accumulate, the liver loses detoxifying capacity, and a vicious cycle begins in which parasites multiply more easily and immune reactions intensify. Food molds further poison the liver, reinforcing this cycle. Each pathogen has a specific frequency and can be targeted with a zapper or frequency generator.
Fasciola hepatica (sheep liver fluke) – Central trigger of extreme allergies. Lives in the liver, weakens detoxification, and causes hypersensitivity reactions, including specific reactions such as lanolin allergy.
Clonorchis sinensis – Liver fluke contributing to bile duct and liver dysfunction, supporting allergic reactivity through hepatic stress.
Fasciolopsis buski – Intestinal fluke that increases immune burden and contributes to systemic hypersensitivity.
Eurytrema pancreaticum – Pancreatic fluke that interferes with digestive and metabolic balance, increasing inflammatory load.
Salmonella spp. – Intestinal bacteria add immune stress; bacterial overload intensifies allergic reactions when liver detoxification is impaired.
Aflatoxin – Potent liver poison from food molds that weakens detoxification and enables fluke multiplication.
Cytochalasin B – Mold toxin that damages liver function and contributes to immune dysregulation .
Sterigmatocystin – Food mold toxin poisoning liver tissue and reinforcing the parasite–solvent cycle .
Zearalenone – Mycotoxin disrupting liver balance and immune stability .
Sorghum mold – Liver toxin impairing detox capacity and promoting parasite survival .
Griseofulvin – Mold metabolite contributing to hepatic stress and immune burden .
Ergot – Food mold toxin that poisons the liver and sustains the allergic cycle .
Arcyria (slime mold) – Mold-related toxin burden further stressing detoxification pathways.
Eliminating this pathogen complex restores liver function and resolves allergic hypersensitivity at its root.
Frequency session table #
| Pathogen | freq. (kHz) | Freq. low–high (kHz) |
| Fasciola hepatica | 423 | 421.35–427.3 |
| Fasciola hepatica (2nd freq.) | 425 | 423.8–430.6 |
| Fasciola hepatica (3rd freq.) | 427 | 422.0–427.6 |
| Fasciola hepatica (4th range) | — | 421.75–424.7 |
| Fasciola hepatica (5th range) | — | 420.6–427.5 |
| Salmonella enteritidis intestinal infection | 329 | 329–329 |
| Salmonella typhimurium food poisoning, nervousness, apathy | 355 | 382.3–386.55 |
| Salmonella paratyphi | 368 | 365.05–370.1 |
| Salmonella typhimurium food poisoning, nervousness, apathy (2nd freq.) | 385 | — |
| Salmonella typhimurium food poisoning, nervousness, apathy (3rd freq.) | 386 | — |
| Salmonella typhimurium food poisoning, nervousness, apathy (4th freq.) | 390 | — |
| Clonorchis sinensis | 427 | 425.7–428.75 |
| Fasciolopsis buski adult | 432 | 427.7–435.1 |
| Fasciolopsis buski adult (2nd freq.) | 434 | 427.35–435.45 |
| Fasciolopsis buski adult (3rd range) | — | 429.5–436.25 |
| Fasciolopsis buski adult (4th range) | — | 427.35–435.2 |
| Fasciolopsis buski adult (5th range) | — | 427.3–433 |
| Eurytrema pancreaticum | 421 | 420.35–422.3 |
| Aflatoxin | 177 | 177–177 |
| Aflatoxin (2nd freq.) | 188 | — |
| Cytochalasin B | 77 | — |
| Cytochalasin B (2nd freq.) | 91 | 91–91 |
| Sterigmatocystin | 88 | 126–126 |
| Sterigmatocystin (2nd freq.) | 96 | 133–133 |
| Sterigmatocystin (3rd freq.) | 133 | 133–133 |
| Sterigmatocystin (4th freq.) | 126 | 126–126 |
| Zearalenone | 100 | 100–100 |
| Sorghum mold | 277 | 277–277 |
| Griseofulvin | 288 | 288–288 |
| Ergot | 295 | 295–295 |
| Argyria | 81 | 81–81 |






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