Sri Estuningsih
Departemen Klinik Reproduksi Patologi, Fakultas Kedokteran Hewan, Institut Pertanian Bogor, Kampus Darmaga IPB, Bogor 16680

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Journal : Hemera Zoa

PAT-4 Histopathological Study of Mice (Mus musculus) Digestive Organs Treated with Alkali pH Water Sri Estuningsih; Vetnizah Juniantito; Yenny Rakhmawati
Hemera Zoa Proceedings of the 20th FAVA & the 15th KIVNAS PDHI 2018
Publisher : Hemera Zoa

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Abstract

Water is an important part of the body. As much as 50-60% of an adult's body weight consists of water. Water functions in the body include as a means of transporting substances, regulating body temperature, regulating body pH, forming body structures, solvents for the body's chemical reactions, and helping the body's mechanical functions, such as lubrication (Insel et al. 2004; Asamadi 2008). In the event of water deficiency, the body will become dehydrated which able to cause cell death to individual death (Stanfield and Hui 2008). Recently, there are alkaline pH drinking water products that are commercially popular that have pH around 8-10 (alkaline water). Some parties claim that alkaline water can help neutralize the level of acidity (pH) of blood due to free radicals, while also having micro cluster technology that can increase oxygen solubility. According to Shirahata et al. (2012) alkaline water is beneficial for health because it can suppress oxidative stress.This study aims to know the effect of alkaline pH drinking water reviewed through histopathological studies of the digestive organs of mice (stomach, intestine, and pancreatic exocrine glands).
PF-32 Radiography Assessment of Femoral Muscle and Bone Density in Rats as Response to Biodegradable Iron (Fe) Porous Implants Arlita Sariningrum; Mokhamad Fakhrul Ulum; Sri Estuningsih; Deni Noviana
Hemera Zoa Proceedings of the 20th FAVA & the 15th KIVNAS PDHI 2018
Publisher : Hemera Zoa

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (566.324 KB)

Abstract

Iron (Fe) is considered as one group of metals that can be used as degradable metal implants (Schinhammer et al. 2010). Previous implantation studies have used porous Fe which purposes to increase the rate of degradation (Daud and Hermawan 2013). Changes in the condition of metal implants due to degradation and peri-implant muscle tissue reactions in the body can be observed using radiographic modality (Noviana et al. 2013). The aim of this study was to assess the radiographic density of implants, peri-implants and peri-implants-muscle as a response to Fe porous implants on the femur of the rats.