Hair Million, for hair growth




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Interferon research abs 1 || Hemoglobin research abs || Stem cell research abs || Nucleic acid research abs || Herpes research abs || Bronchitis research abs || Schizophrenia research abs || Tuberculosis research abs || Pneumonia research abs || Constipation research abs || Laxative research abs || hair research abs







Perception. 2002;31(9):1109-21.
Representation of the gender of human faces by infants: a preference for female.

Quinn PC, Yahr J, Kuhn A, Slater AM, Pascalils O.

Department of Psychology, Washington & Jefferson College, Washington, PA 15301, USA. pquinashjeff.edu

Six experiments based on visual preference procedures were conducted to examine gender categorization of female versus male faces by infants aged 3 to 4 months. In experiment 1, infants familiarized with male faces preferred a female face over a novel male face, but infants familiarized with female faces divided their attention between a male face and a novel female face. Experiment 2 demonstrated that these asymmetrical categorization results were likely due to a spontaneous preference for females. Experiments 3 and 4 showed that the preference for females was based on processing of the internal facial features in their upright orientation, and not the result of external hair cues or higher-contrast internal facial features. While experiments 1 through 4 were conducted with infants reared with female primary caregivers, experiment 5 provided evidence that infants reared with male primary caregivers tend to show a spontaneous preference for males. Experiment 6 showed that infants reared with female primary caregivers displayed recognition memory for individual females, but not males. These results suggest that representation of information about human faces by young infants may be influenced by the gender of the primary caregiver.


online pharmacy ref. source: www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&list_uids=12375875&dopt=Abstract



Med Hypotheses. 2002 Nov;59(5):522-6.
The hydraulic influence in androgen-related hair growth: implications in autoimmune disease.

Foote SI.

stephen.footc24.net

Androgen-related changes in hair growth represent something of a mystery. Through the action of dihydrotestosterone (DHT), hair growth is increased in specific areas of the body. Elevated levels of DHT produce a general increase over the larger part of the body, often accompanied by hair loss in specific areas of the scalp. Because of this 'opposite' effect, a genetic difference in the hair follicles is proposed. This view is supported through the success of the 'plug graft' transplantation technique. However, this is unsatisfactory, because transplantation procedures that should work well according to this theory, ultimately fail. There is an alternative 'mechanism', that demonstrates its origins in the prime function of hair as an insulator. This simple mechanism makes sense of all the recognized effects of DHT in the dermal system, and throughout the body. In DHT-related hair growth it can be directly observed. The implication is that DHT achieves its effects through a primary physiological action that can be easily tested given the necessary expertise. Given existing knowledge, such a proven action of DHT would have serious implications for further understanding of female susceptibility to autoimmune disease.


online pharmacy ref. source: www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&list_uids=12376073&dopt=Abstract



Plant Physiol. 2002 Oct;130(2):977-88.
Endoplasmic microtubules configure the subapical cytoplasm and are required for fast growth of Medicago truncatula root hairs.

Sieberer BJ, Timmers AC, Lhuissier FG, Emons AM.

Laboratory of Plant Cell Biology, Wageningen University, Arboretumlaan 4, 6703 BD Wageningen, The Netherlands.

To investigate the configuration and function of microtubules (MTs) in tip-growing Medicago truncatula root hairs, we used immunocytochemistry or in vivo decoration by a GFP linked to a MT-binding domain. The two approaches gave similar results and allowed the study of MTs during hair development. Cortical MTs (CMTs) are present in all developmental stages. During the transition from bulge to a tip-growing root hair, endoplasmic MTs (EMTs) appear at the tip of the young hair and remain there until growth arrest. EMTs are a specific feature of tip-growing hairs, forming a three-dimensional array throughout the subapical cytoplasmic dense region. During growth arrest, EMTs, together with the subapical cytoplasmic dense region, progressively disappear, whereas CMTs extend further toward the tip. In full-grown root hairs, CMTs, the only remaining population of MTs, converge at the tip and their density decreases over time. Upon treatment of growing hairs with 1 microM oryzalin, EMTs disappear, but CMTs remain present. The subapical cytoplasmic dense region becomes very short, the distance nucleus tip increases, growth slows down, and the nucleus still follows the advancing tip, though at a much larger distance. Taxol has no effect on the cytoarchitecture of growing hairs; the subapical cytoplasmic dense region remains intact, the nucleus keeps its distance from the tip, but growth rate drops to the same extent as in hairs treated with 1 microM oryzalin. The role of EMTs in growing root hairs is discussed.


online pharmacy ref. source: www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&list_uids=12376661&dopt=Abstract



Int J Legal Med. 2002 Oct;116(5):286-8. Epub 2002 May 24.
Canine STR analyses in forensic practice. Observation of a possible mutation in a dog hair.

Padar Z, Egyed B, Kontadakis K, Furedi S, Woller J, Zoldag L, Fekete S.

DNA Laboratory, Institute for Forensic Sciences, P.O. Box 314/4, 1903 Budapest, Hungary. padarzreemail.hu

In a case of the death of a 7-year-old boy, the police investigations revealed a possible dog attack contrary to the witness testimonies. DNA investigations were carried out from hairs, saliva and bloodstains with 10 canine-specific STR loci by the use of fluorescently labelled multiplex PCR and the ABI PRISM 310 genetic analyzer. The analysis of one hair sample revealed one allele deviation from the profile of the putative Rottweiler perpetrator possibly caused by a mutation. The PCR fragments in question at the PEZ20 locus were sequenced and compared with the alleles detected in the Hungarian canine population and identified on a repeat number basis. The allele frequencies were determined based on typing of 242 genetically independent canine individuals from 72 breeds. The results suggested that two of the canine individuals could be the perpetrators.


online pharmacy ref. source: www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&list_uids=12376839&dopt=Abstract








Vitamins, amino acids, oils for topical application, and prescription medications...
There are a number of approaches to hair loss problems.
Hair Million is an herbal alternative. It is a formula made of traditional, edible herbs and has been anecdotally demonstrated the efficacy to ward off hair loss problems.

There is no singular medical or alternative cure for hair loss since the biology of hair growth is a highly complicated phenomenon. It is unknown how Hair Million stops hair loss, and promotes hair restoration. The advantages of Hair Million over other approaches are, firstly, Hair Million is comparatively inexpensive, and secondly, it is made only of traditionally used safe and healthy herbs that promote hair growth according to Chinese pharmacopoeia. In addition, Hair Million is cardiotonic, meaning that Hair Million consists of herbs that strengthens your heart, according to Chinese medicine. There is an interesting research paper which correlates baldness to heart diseases: people with alopecia or hair loss problems are significantly more likely to develop heart attacks.














DHEA is a natural hormone, and it is produced in our body by the adrenal glands. DHEA has been suggested to provide numerous potential benefits. DHEA (or dehydroepiandrosterone) is converted into androgens (male hormones) or estrogens (female hormones) in the cells.







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