A Dermatoglyphic Study: Association of Fingerprint Patterns Among ABO Blood Groups

Tri Panjiasih Susmiarsih(1), M. Samsul Mustofa(2), Mirfat Mirfat(3),


(1) Departement of Biology, YARSI University, Jakarta, Indonesia
(2) Departement of Biology, YARSI University, Jakarta, Indonesia
(3) Departement of Biology, YARSI University, Jakarta, Indonesia

Abstract

Fingerprints are probably the most common biometric technique used in personal identification. The potential of fingerprints to determine sex and human identification has been well exhibited. However, very few studies have been conducted correlating finger prints with blood groups. The aim of this study was to investigate the distribution of fingerprint patterns based on ABO blood groups. The total sample consisted of 302 medical students of YARSI University Jakarta comprising of 187 females and 115 males. The fingerprint patterns were classified into arches, loops (ulnar and radial), whorls. counted and comprised triradius and total ridge count. The data analysis used Chi Square and Student-T test.The study results indicated that there were fourth especially pattern type. Significantly (p<0.05), frequency of loop types (60.36%) was highest in B blood, whorl type was highest in O blood (40.45%) and arches in AB blood was higher (5.12%) as compared to other groups. Dankmeijer indices of O and AB blood were 3.78 and 11.34, respectively. There were indicated significantly (p<0.05) difference of average ridge count total among ABO blood groups. This study implied an association between dermatoglyphics and blood groups.

How to Cite

Susmiarsih, T. P., Mustofa, M. S., & Mirfat, M. (2016). A Dermatoglyphic Study: Association of Fingerprint Patterns Among ABO Blood Groups. Biosaintifika: Journal of Biology & Biology Education, 8(3), 294-300. 

Keywords

dermatoglyphic; fingerprinting; ABO blood group

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References

Bhat, G. M., Mukhdoomi, M. A., Shah, B. A., & Ittoo, M. S. (2014). Dermatoglyphics: in health and disease a review. Int J Res Med Sci, 21(1), 31-37.

Bramon, E., Walshe, M., McDonald C., Martin B., Toulopoulou, T., Van Os J, Fearon, P., Sham, P. C., Fananas, L., & Murray, R. M. (2005). Dermatoglyphics and schizophrenia: A meta- analysis and investigation of the impact of obstetric complications upon a-b ridge count. Schizophr. Res, 75(2-3), 399-404.

Chimne, H. D., & Ksheersagar, D. D. (2012). Dermatoclyphic Patterns in Angiographically Proven Coronary Artery Disease. Journal of Anatomical Society of India, 61(2), 262-268.

Khandelwal, R., Mittal, A., Saijanani, S., Tuteja, A., Bansal, A., Bhatnagar, D., & Saxena, S. (2007). Qualitative and quantitative dermatoglyphic traits in patients with breast cancer: a prospective clinical study. BMC Cancer, 7(1), 44-50.

Fearon, P. (2001). Is reduced dermatoglyphic a-b ridge count avariable marker of developmental impairment in schizophrenia? Schizophr. Res., 50, 151-157.

Gondivkar, S. M., Indurkar, A., Degwekar, S., & Bhowate, R. (2009). Cheiloscopy for sex determination. Journal Forensic Dent Sci, 1(2), 56-60.

Jalali, F., Hajjan, K. O., & Tilaki. (2002). A comparative study of dermatoglyphic pattern in patients with myocardial infarction and control group. Acta Medical Iranica, 40(3), 187-191.

Kanchan, T., & Chattopadhyay, S. (2006). Distribution of fingerprint patterns among medical students. Journal of Indian Academy of Forensic Medicine, 28(2), 65-68.

Khadri, S. Y., Goudar, E. S., & Kadri, S.Y. (2013). A study of fingerprint pattern and gender distribution of fingerprint in and around Bijapur. Al Ameen J Med Sci, 6(4), 328-331.

Koneru, A., Hunasgi, S., Sinha, P., Surekha, R., Vanishree, S., & Ravikumar. (2014). Association of different finger prints in relation to ABO and Rh blod groups. Int J Biol Med Res, 5(3), 4287-42992.

Kshirsagar, S.V., & Fulari, S. P. (2013). Qualitative analysis fingertip patterns in ABO blood group. Global Journal of Medicine and Public Health, 2(2), 1-6.

Kücken, M., & Newell, A. C. (2005). Fingerprint formation. Journal of Theoretical Biology, 235(1), 71-83.

Manoranjitham, R. M. S., Arunkumar, K. R ., Gosai, Shalini. R. M. D., & Dandekar, R. H. (2015). Study of Palmar dermatoglyhics in ABO and Rh Blood groups. Indian Journal of Basic and Applied Medical Research, 4(3), 467-477

Matsuyama, N., & Ito, Y. (2006). The frequency of fingerprint type in parents of children with Trisomy 21 in Japan. Journal of Physiological Anthropology, 25(1), 15-21.

Medland, S. E., Loesch, D. Z., Mdzewski, B., Zhu, G., Montgomery, G. W., & Martin, N. G. (2007). Linkage analysis of a model quantitative trait in humans: finger ridge count shows significant multivariate linkage to 5q14. 1. PLoS Genet, 3(9), 1736-44.

Mehta, A. A., & Mehta, A. A. (2011). Palmar dermatoglyphics in ABO, RH blood groups. J Bio Med Res, 2(4), 961-964.

Nagy, A. S., & Pap, M. (2005). Pattern influence on the fingers. HOMO-Journal of Comparative Human Biology, 56(1), 51-67.

Patil, A. D., Sant, S. M., & Patwardhan, S. A. (2015). Dermatoglyphics in relation with Blood Groups. Indian Journal of Basic and Applied Medical Research, 4(2), 542-545.

Pillay, V. V. (2009). Textbook of Forensic Medicine and Toxicology. 15th ed. Hyderabad: Paras. Medical Publishers, 53-94.

Rastogi, P., & Pillai, K. R. (2010). A study of finger prints in relation of gender and blood group. J Indian Acad Forensic Medicine, 32(1), 11-13.

Smith, S. G., Walder, D. J., Daly, M., Mittal, V. A., Kline, E., Reeves, G., & Schiffman, J. (2012).The Presentation of Dermatoglyphic Abnormalities in Schizophrenia: A Meta-Analytic Review. Schizophr Res, 142(1-3), 1–11.

Vij, K. (2005). Textbook of Forensic Medicine and Toxicology. 3rd ed. New Delhi: Elsevier.

Yunyu, Z., Yanjun, H., Lizhen, H. & Wenlei. (2002). Application and development of palm print research. Techn. Health Care, 10(5), 383-390.

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