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Periparturition alterations to liver ultrasonographic echo-texture and fat mobilization parameters in clinically
Saman Rafia1, Taghi Taghipour-Bazargani, Farzad Asadi
1Department of Clinical Sciences, Faculty of Veterinary Medicine, University of Tehran, Tehran, Iran. sam_rafia@yahoo.com
The objective of present study was to record the sequential alterations in liver echo-texture through digital analyzing of the B-mode ultrasonography in three groups of under-conditioned (UC), moderate-conditioned (MC), and over-conditioned (OC) clinically healthy Holstein cows from 30 days to calving until 30 days in milk. Furthermore, to compare their changes in association with the changes of fat mobilization parameters of non-esterified fatty acids (NEFA), betahydroxybutyric acid (BHBA), and body condition score (BCS). Although the cows lost significant (P < 0.05) BCS from calving and the NEFA values showed an increasing trend near calving and the BHBA values significantly inclined postparturition, the mean grey scale histogram (MGSH) of liver images did not reveal significant fluctuations unless a significant decrease on calving day (P < 0.05). The MGSH drop was predicted to be the result of anatomical changes in abdominal cavity, related to delivery and liver's blood flow. OC cows had higher NEFA on day +20 than UC and MC cows (P < 0.05). UC cows showed higher MGSH values on day -30 than MC cows and again on day -10 comparing to MC and OC cows (P < 0.05). MGSH values correlated with BCS values (rUC = -0.186; rMC = -0.283; rOC = -0.158). It was concluded that the studied cows did not show significant alterations in textural changes in their liver ultrasound whilst going through fat mobilization. As quantitative ultrasonography has shown the potential to detect cases of fatty liver, it could gain the attention to become a feasible device for liver health monitoring on a herd basis.
The objective of present study was to record the sequential alterations in liver echo-texture through digital analyzing of the B-mode ultrasonography in three groups of under-conditioned (UC), moderate-conditioned (MC), and over-conditioned (OC) clinically healthy Holstein cows from 30 days to calving until 30 days in milk. Furthermore, to compare their changes in association with the changes of fat mobilization parameters of non-esterified fatty acids (NEFA), betahydroxybutyric acid (BHBA), and body condition score (BCS). Although the cows lost significant (P < 0.05) BCS from calving and the NEFA values showed an increasing trend near calving and the BHBA values significantly inclined postparturition, the mean grey scale histogram (MGSH) of liver images did not reveal significant fluctuations unless a significant decrease on calving day (P < 0.05). The MGSH drop was predicted to be the result of anatomical changes in abdominal cavity, related to delivery and liver's blood flow. OC cows had higher NEFA on day +20 than UC and MC cows (P < 0.05). UC cows showed higher MGSH values on day -30 than MC cows and again on day -10 comparing to MC and OC cows (P < 0.05). MGSH values correlated with BCS values (rUC = -0.186; rMC = -0.283; rOC = -0.158). It was concluded that the studied cows did not show significant alterations in textural changes in their liver ultrasound whilst going through fat mobilization. As quantitative ultrasonography has shown the potential to detect cases of fatty liver, it could gain the attention to become a feasible device for liver health monitoring on a herd basis.
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