Effects of differences in level of post-weaning nutrition and in sire expected progeny differences for ribeye area on retail cuts yield in Hereford steers

2020 ◽  
Author(s):  
Daniela Correa ◽  
Mario Lema ◽  
Olga Ravagnolo ◽  
Juan Clariget ◽  
Santiago Luzardo ◽  
...  

EDIS ◽  
2017 ◽  
Vol 2017 (6) ◽  
Author(s):  
Brian J. Estevez ◽  
Chad Carr ◽  
Larry F. Eubanks

  A visual representation of the beef retail cuts along with suggested cooking methods.



1969 ◽  
Vol 28 (3) ◽  
pp. 311-315
Author(s):  
D. M. Allen ◽  
R. A. Merkel ◽  
W. T. Magee ◽  
R. H. Nelson


1977 ◽  
Vol 44 (2) ◽  
pp. 195-202 ◽  
Author(s):  
D. D. Kress ◽  
P. J. Burfening ◽  
P. D. Miller ◽  
D. Vaniman


2016 ◽  
Vol 94 (suppl_4) ◽  
pp. 17-17
Author(s):  
A. Inoue ◽  
T. Nakajima ◽  
A. Nakajima ◽  
Y. Uemoto ◽  
M. Fukushima ◽  
...  


Meat Science ◽  
2021 ◽  
pp. 108644
Author(s):  
Anderson B. Moro ◽  
Yuri R. Montanholi ◽  
Diego B. Galvani ◽  
Pedro Bertemes-Filho ◽  
Rafael S. Venturini ◽  
...  


2021 ◽  
Vol 99 (Supplement_3) ◽  
pp. 142-143
Author(s):  
Noah P Jesko ◽  
Thomas L Perkins ◽  
Ty E Lawrence ◽  
John Richeson ◽  
Charles Looney

Abstract Sixty-eight (68) crossbred steers were evaluated using two real-time, B-mode ultrasound units to estimate final carcass attributes. The cattle were ultrasounded at the West Texas A&M research feedlot (Canyon, Texas) and carcass data was collected at the West Texas A&M Meats Laboratory (Canyon, Texas) or Tyson Fresh Meats (Amarillo, Texas). Objectives of the study were 1) to compare ultrasound live animal data to carcass attributes at harvest 2) to evaluate the performance differences between the ALOKA 500 (ALK) and the EVO ultrasound units All ultrasound images were captured by the same Ultrasound Guidelines Council (UGC) certified technician with images being processed at the UltraInsights Laboratory (Pierce, Colorado). The correlations between 12th rib fat thickness of the carcass (FTC) and ultrasound (FTU) were 0.84 for the ALK and 0.85 for the EVO, with no differences being found between the two units (P = 0.15). Correlations between the 12-13th rib carcass ribeye area (REAC) and ultrasound ribeye area (REAU) were 0.69 for the ALK and 0.66 for the EVO. There was no difference in REAU size between the two units. Carcass marbling score (MS) and ultrasound intramuscular fat (IMFU) correlations were 0.78 for the ALK and 0.84 for the EVO. The IMF data were found to be different between the two units, with the EVO measuring a mean IMFU value of 6.03 and the ALK a value of 5.26 with the change of 0.77 being different (P < 0.01). It is concluded that both ultrasound units performed favorably when predicting FTC and marbling score but were not highly correlated for REAU. It was found that the predictions between the two units on FT and REA were the same, though the EVO was higher on both. The IMFU values between the ALK and EVO were different, with the EVO again predicting higher values.



2021 ◽  
Vol 99 (Supplement_3) ◽  
pp. 291-291
Author(s):  
Harley Buie ◽  
Noah P Jesko

Abstract Live animal ultrasound measurements were taken on thirty-two feedlot steers and heifers for estimation of carcass endpoints including 12th rib fat thickness (FTU), ribeye area (REAU) and intramuscular fat (%FatU). Ultrasound measurements were collected by an inexperienced technician using an Aloka 500 ultrasound unit using Beef Image Analysis (BIA) software. The objective of the study was to evaluate carcass differences of four sire breed types including Angus (n = 11), Ultrablack (n = 6), Nelore (n = 6), Braunvieh (n = 1) and Angus X Nelore X Braunvieh hybrid (n = 8). Carcass data collected at harvest included 12th rib fat Thickness (FTC), Ribeye area (REAC), marbling score (MS), Yield Grade (YG), and Quality Grade (QG). The data were analyzed using SAS to determine breed effects. Means for FTU, FTC, REAU, REAC, %FatU and MS were 0.59 cm, 0.57 cm, 90.80 cm2, 83.53 cm2, 4.83%, and 483.75, respectively. There was no significant difference (P > 0.05) in YG and FT due to breed of sire. However, there was a trend for sire breed for ribeye area (P = 0.0728) for Angus X Nelore X Braunvieh cross and MS (P = 0.0786) for Ultrablack. Pearson correlation values between FTU and FTC, REAU and REAC, and %FatU and MS were 0.1217 (P = 0.05068), 0.3545 (P = .0465) and 0.5161 (P = 0.0025), respectively. These data suggest little differences existed in carcass attributes between various sire breeds out of a set of crossbred commercial cows.



2017 ◽  
Vol 46 (1) ◽  
pp. 17-23 ◽  
Author(s):  
N Sultana ◽  
KS Huque ◽  
MZ Rahman ◽  
NG Das

The study was conducted with the objectives to understand the effect of age of native Pabna bulls on feed conversion ratio (FCR), digestibility and carcass yield characteristics. Fifteen Pabna bulls having five  in each age groups of 6 to12, 13 to 24 and 25 to 36 months  were fed   ad libitum mix silages of Splendida (Setaria splendida) and Andrpogan (Andropogon gyunus) grasses (1:1 fresh) and supplemented with a concentrate mixture at 1% of live weight (LW) for a period of 72 days. With the increase of age, and subsequently LW (initial LW: 98.2, 182.6 and 288 kg, respectively), there was significant decrease in dry matter (DM) intake as % LW (<0.05; 2.94, 2.61 and 2.36, respectively) and increased daily gain (<0.01; 294, 519 and 597 g/d, respectively). However, the feed conversion ratio (FCR) (>0.05; 10.88, 10.10 and 12.24, respectively) and DM digestibility (>0.05; 51.0, 48.1 and 49.1 %, respectively) of bulls were remained unchanged. In case of carcass yield characteristics, significantly lower yield grade (<0.01; 1.79, 1.27 and 0.20, respectively) of bulls of 25 to 36 years produced higher closely trimmed boneless retail cuts (CTBRC) (<0.01; 50.47, 51.64 and 54.14 %, respectively), retail cut (<0.01; 76.14, 78.55 and 83.48 %, respectively) and meat quality index (MQI) (<0.01; 67.28, 67.89 and 69.07, respectively) compared to younger bulls. It may, therefore, be recommended that beef cattle farming with native Pabna bulls of 24 to 36 months will give more daily LW gain and produce more CTBRC at a similar FCR compared to younger ones.Bang. J. Anim. Sci. 2017. 46 (1): 17-23



2010 ◽  
Vol 12 (3) ◽  
Author(s):  
  Pla M. ◽  
Pascual M. ◽  
Ariño B.


Author(s):  
T.T. Marston ◽  
D.D. Simms ◽  
R.R. Schalles ◽  
K.O. Zoellner ◽  
L.S. Clarke ◽  
...  


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