Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Ferrell, Ray E.
2008.
Medicinal Clay and Spiritual Healing.
Clays and Clay Minerals,
Vol. 56,
Issue. 6,
p.
751.
Kibanova, Daria
Nieto-Camacho, Antonio
and
Cervini-Silva, Javiera
2009.
Lipid Peroxidation Induced by Expandable Clay Minerals.
Environmental Science & Technology,
Vol. 43,
Issue. 19,
p.
7550.
Vondruskova, H.
Slamova, R.
Trckova, M.
Zraly, Z.
and
Pavlik, I.
2010.
Alternatives to antibiotic growth promoters in prevention of diarrhoea in weaned piglets: a review.
Veterinární medicína,
Vol. 55,
Issue. 5,
p.
199.
Williams, Lynda B.
and
Haydel, Shelley E.
2010.
Evaluation of the medicinal use of clay minerals as antibacterial agents.
International Geology Review,
Vol. 52,
Issue. 7-8,
p.
745.
2011.
Scientific Opinion on the substantiation of health claims related to: a combination of millet seed extract, L-cystine and pantothenic acid (ID 1514), amino acids (ID 1711), carbohydrate and protein combination (ID 461), Ribes nigrum L. (ID 2191), Vitis vi.
EFSA Journal,
Vol. 9,
Issue. 6,
p.
2244.
Williams, Lynda B.
Metge, David W.
Eberl, Dennis D.
Harvey, Ronald W.
Turner, Amanda G.
Prapaipong, Panjai
and
Poret-Peterson, Amisha T.
2011.
What Makes a Natural Clay Antibacterial?.
Environmental Science & Technology,
Vol. 45,
Issue. 8,
p.
3768.
Slamova, R.
Trckova, M.
Vondruskova, H.
Zraly, Z.
and
Pavlik, I.
2011.
Clay minerals in animal nutrition.
Applied Clay Science,
Vol. 51,
Issue. 4,
p.
395.
Song, M.
Liu, Y.
Soares, J. A.
Che, T. M.
Osuna, O.
Maddox, C. W.
and
Pettigrew, J. E.
2012.
Dietary clays alleviate diarrhea of weaned pigs1.
Journal of Animal Science,
Vol. 90,
Issue. 1,
p.
345.
Davies, T.C.
2013.
Geochemical variables as plausible aetiological cofactors in the incidence of some common environmental diseases in Africa.
Journal of African Earth Sciences,
Vol. 79,
Issue. ,
p.
24.
Gomes, Celso de Sousa Figueiredo
2013.
Naturotherapies Based on Minerals.
Geomaterials,
Vol. 03,
Issue. 01,
p.
1.
Otto, Caitlin C.
Haydel, Shelley E.
and
Schuch, Raymond
2013.
Exchangeable Ions Are Responsible for the In Vitro Antibacterial Properties of Natural Clay Mixtures.
PLoS ONE,
Vol. 8,
Issue. 5,
p.
e64068.
Gomes, Celso
Carretero, Maria Isabel
Pozo, Manuel
Maraver, Francisco
Cantista, Pedro
Armijo, Francisco
Legido, José Luis
Teixeira, Frederico
Rautureau, Michel
and
Delgado, Rafael
2013.
Peloids and pelotherapy: Historical evolution, classification and glossary.
Applied Clay Science,
Vol. 75-76,
Issue. ,
p.
28.
Granados-Oliveros, Gilma
Gómez-Vidales, Virginia
Nieto-Camacho, Antonio
Morales-Serna, José Antonio
Cárdenas, Jorge
and
Salmón, Manuel
2013.
Photoproduction of H2O2and hydroxyl radicals catalysed by natural and super acid-modified montmorillonite and its oxidative role in the peroxidation of lipids.
RSC Adv.,
Vol. 3,
Issue. 3,
p.
937.
Carretero, M.I.
Gomes, C.S.F.
and
Tateo, F.
2013.
Handbook of Clay Science.
Vol. 5,
Issue. ,
p.
711.
Drelich, Jaroslaw
Li, Bowen
Villeneuve, Bradley
and
Bowen, Patrick
2013.
Inexpensive mineral copper materials with antibacterial surfaces.
Surface Innovations,
Vol. 1,
Issue. 1,
p.
15.
Pura, Agnese
Dusenkova, Inga
and
Malers, Juris
2014.
Adsorption of Organic Compounds Found in Human Sebum on Latvian Illitic, Kaolinitic, and Chloritic Phyllosilicates.
Clays and Clay Minerals,
Vol. 62,
Issue. 6,
p.
500.
Trckova, M.
Prikrylova Vondruskova, H.
Zraly, Z.
Sramkova Zajacova, Z.
Kummer, V.
and
Alexa, P.
2014.
The effect of dietary bentonite on post-weaning diarrhoea, growth performance and blood parameters of weaned piglets.
Applied Clay Science,
Vol. 90,
Issue. ,
p.
35.
Medeiros, Cássio Ilan Soares
Sá, Erica Renata Nogueira
Oliveira, Juliana Raquel de Morais Santos
Magalhães, Lis
Filho, Geraldo Gonçalves de Almeida
and
Pessôa, Hilzeth de Luna Freire
2014.
Analysis of the Tropism and Anti-Bacterial Potential of a Type of Clay.
Open Journal of Medical Microbiology,
Vol. 04,
Issue. 02,
p.
140.
Nikolajeva, Vizma
Griba, Tatjana
Petriņa, Zaiga
and
Karasa, Jūlija
2014.
Dabīgu un apstrādātu mālu antimikrobiālā aktivitāte.
Material Science and Applied Chemistry,
Vol. 29,
Issue. 29,
p.
142.
Carretero, M.I.
Pozo, M.
Legido, J.L.
Fernández-González, M.V.
Delgado, R.
Gómez, I.
Armijo, F.
and
Maraver, F.
2014.
Assessment of three Spanish clays for their use in pelotherapy.
Applied Clay Science,
Vol. 99,
Issue. ,
p.
131.