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Biomedical subjects

A R Sams

Publications and source records attributed to A R Sams.

At least 19 recordsLinked to original sources

Rigor mortis development in turkey breast muscle and the effect of electrical stunning.

Rigor mortis development in turkey breast muscle and the effect of electrical stunning on this process are not well characterized. Some electrical stunning procedures have been known to inhibit postmortem (PM) biochemical reactions, thereby delaying the onset of rigor mortis in broilers. Therefore, this study was designed to characterize rigor mortis development in stunned and unstunned turkeys. A total of 154 turkey toms in two trials were conventionally processed at 20 to 22 wk of age. Turkeys were either stunned with a pulsed direct current (500 Hz, 50% duty cycle) at 35 mA (40 V) in a saline bath for 12 seconds or left unstunned as controls. At 15 min and 1, 2, 4, 8, 12, and 24 h PM, pectoralis samples were collected to determine pH, R-value, L* value, sarcomere length, and shear value. In Trial 1, the samples obtained for pH, R-value, and sarcomere length were divided into surface and interior samples. There were no significant differences between the surface and interior samples among any parameters measured. Muscle pH significantly decreased over time in stunned and unstunned birds through 2 h PM. The R-values increased to 8 h PM in unstunned birds and 24 h PM in stunned birds. The L* values increased over time, with no significant differences after 1 h PM for the controls and 2 h PM for the stunned birds. Sarcomere length increased through 2 h PM in the controls and 12 h PM in the stunned fillets. Cooked meat shear values decreased through the 1 h PM deboning time in the control fillets and 2 h PM in the stunned fillets. These results suggest that stunning delayed the development of rigor mortis through 2 h PM, but had no significant effect on the measured parameters at later time points, and that deboning turkey breasts at 2 h PM or later will not significantly impair meat tenderness.

Abattoirs↗

The development of pale, exudative meat in two genetic lines of turkeys subjected to heat stress and its prediction by halothane screening.

Previous research has indicated that seasonal-type heat stress (HS) can contribute to the development of pale, soft, exudative (PSE) meat in fast-growing turkeys and that halothane exposure may identify stress-susceptible animals. This study evaluated the ability of halothane screening to identify stress-susceptible birds prone to developing pale, exudative meat when reared to market age. Two lines of turkeys (n = 292), one selected for rapid overall growth (BODY) and the other for large breast muscle yield (BREAST), were exposed to 3% halothane for 5 min at 2 to 4 wk of age and were raised together until 16 wk of age. Approximately 10% of both BODY and BREAST birds were sensitive to halothane. Between 16 and 20 wk, all of the halothane sensitive (HAL+) and half of the halothane nonresponders (HAL-) were exposed to an HS environment of 30 to 36 C (night/day), whereas the other half of the HAL- birds were kept at an ambient temperature of 13 to 21 C (night/day). All birds were slaughtered at 20 wk of age, and samples were collected for pH, L* value, drip loss, cooking loss, and shear value. The BREAST strain had 5% greater breast percentage than the BODY strain, and there were no differences in ready-to-cook yields between any treatments. The HAL+ HS birds had significantly lower muscle pH (0 h) and significantly higher L* values at 2 h postmortem compared with HAL- HS birds in the BREAST strain; however, there was no difference in L* value at 24 h postmortem. The HAL- HS birds had significantly lower muscle pH (0 h and 2 h) and significantly higher L* values at 2 h postmortem compared with HAL- controls in the BODY strain. The HAL- HS BREAST birds had significantly higher drip loss than HAL- controls. No differences in shear value were found among any treatments. The incidence of PSE (2-h L* values >52) was significantly higher in HAL+ HS birds (34.7%) compared with HAL- HS birds (13.4%). These results suggest that halothane sensitivity early in life is associated with HS susceptibility and the development of pale meat when birds are slaughtered at market age. These results also suggest that halothane screening may be better at predicting the development of PSE meat during HS in the strain selected for large breast yield rather than rapid overall growth.

Animals↗

The characterization and incidence of pale, soft, exudative turkey meat in a commercial plant.

Pale, soft, exudative (PSE) turkey meat is a growing problem for industry and has been associated with rapid postmortem pH decline and loss of protein functionality, similar to PSE pork. This study was designed to estimate the incidence of PSE meat in a commercial plant and use response surface methodology to characterize the relationship between pH, lightness (L* value), and water-holding capacity (WHC). One hundred thirty-four turkey breast fillets were selected from the processing line so that 67 had normal color (lightness), and the other 67 were more pale than normal. Fillets were analyzed at time of deboning (1.5 h postmortem) and at 24 h postmortem for color (L* value), pH, drip loss, expressible moisture, and temperature. Additionally, L* values were measured on 2,995 turkey breasts from the processing line to determine the commercial incidence of PSE meat based on color. The pale fillets had significantly lower pH, greater L* value, and less WHC but equal temperature when compared with the fillets with normal color. The L* value and pH were correlated with WHC as measured by expressible moisture, but L* value seems to have more predictive value. By using the L* value range (>53) from the pale-selected fillets as an indication of paleness, approximately 40% of the 2,995 fillets would exhibit poor WHC. These results suggest that PSE meat can represent a significant portion of commercially processed turkey breast meat and that the L* value measurement could be used to sort turkey meat so that PSE type meat could be used in specialized formulations.

Animals↗

The influence of transportation on turkey meat quality.

Previous research has indicated that antemortem stress factors can influence the development of pale, soft, and exudative (PSE) meat in swine as well as in turkeys. Such antemortem factors can include environmental temperatures, relative humidity, preslaughter handling practices, and transportation. However, the effect of transportation on meat quality of turkeys has not been extensively studied. Eighty Nicholas male turkeys (21 wk of age) were divided into two groups and were either transported in coops on a flatbed trailer for 3 h immediately prior to processing or processed without transportation. Breast muscle samples were collected for pH (0, 2, 24 h), L* value (2, 24 h), drip loss, and cook loss. Additionally, breast fillets were marinated and cooked to determine marination uptake, retention, and cook loss. The breast muscles from transported turkeys had significantly higher muscle pH at 0, 2, and 24 h; significantly lower L* values at 2 and 24 h; significantly higher marination retention (i.e., lower drip loss after marination); and significantly lower cook loss in the marinated fillets compared with fillets of the nontransported turkeys. There were no significant differences in drip loss and cook loss of the nonmarinated fillets or the marination uptake percentage between the transported and nontransported turkeys. These results suggest that transporting turkeys immediately before processing does not induce PSE meat and may actually improve water-holding properties.

Animals↗

Feather release force in minimally scalded broilers stunned with carbon dioxide or electricity.

Broilers were stunned with carbon dioxide or electricity prior to slaughter to evaluate feather release force (FRF) following scalding with conventional or abbreviated scald methods. Broilers (n = 72) were stunned using an electrical saline stunner (35 mA, 60 Hz AC, 7 s) or shackle-line CO2 gas stunning tunnel (15 to 40% CO2 gradient for 90 s). After bleeding for 90 s, the broilers were then scalded with a soft scald (53 C for 120 s) or a softer scald (53 C for 90 s). Within 2 min after scalding, feathers from the right femoral feather tract were removed perpendicularly using a force gauge to evaluate FRF. The FRF for the soft scald was higher than that for the softer scald. The FRF results indicated that there were no significant differences between the two stunning treatments (CO2 and electrical) for either scalding treatment.

Animals↗

The influence of postmortem electrical stimulation on rigor mortis development, calpastatin activity, and tenderness in broiler and duck pectoralis.

This study was conducted to evaluate the effects of electrical stimulation (ES) on rigor mortis development, calpastatin activity, and tenderness in anatomically similar avian muscles composed primarily of either red or white muscle fibers. A total of 72 broilers and 72 White Pekin ducks were either treated with postmortem (PM) ES (450 mA) at the neck in a 1% NaCl solution for 2 s on and 1 s off for a total of 15 s or were used as nonstimulated controls. Both pectoralis muscles were harvested from the carcasses after 0.25, 1.25, and 24 h PM and analyzed for pH, inosine:adenosine ratio (R-value), sarcomere length, gravimetric fragmentation index, calpastatin activity, shear value, and cook loss. All data were analyzed within species for the effects of ES. Electrically stimulated ducks had a lower muscle pH at 0.25 and 1.25 h PM and higher R-values at 0.25 h PM compared with controls. Electrically stimulated broilers had a lower muscle pH at 1.25 h and higher R-values at 0.25 and 1.25 h PM compared with controls. Muscles of electrically stimulated broilers exhibited increased myofibrillar fragmentation at 0.25 and 1.25 h PM, whereas there was no such difference over PM time in the duck muscle. Electrical stimulation did not affect calpastatin activity in either broilers or ducks; however, the calpastatin activity of the broilers did decrease over the aging time period, whereas that of the ducks did not. Electrical stimulation decreased shear values in broilers at 1.25 h PM compared with controls; however, there was no difference in shear values of duck muscle due to ES at any sampling time. Cook loss was lower for electrically stimulated broilers at 0.25 and 1.25 h PM compared with the controls, but had no effect in the ducks. These results suggest that the red fibers of the duck pectoralis have less potential for rigor mortis acceleration and tenderization due to ES than do the white fibers of the broiler pectoralis.

Animals↗

Tenderness, moisture loss and post-mortem metabolism of broiler Pectoralis muscle from electrically stimulated and air chilled carcases.

1. This study was to evaluate the effects of post-mortem electrical stimulation (ES) on carcase moisture loss and on tenderness, R-value and pH of breast fillets following air chilling. 2. In each of 4 replications, 8 birds were electrically stimulated and 12 birds were controls. The ES birds were stimulated at the head in a 1% saline bath (450 V, 0.45 A, 2 s on/1 s off for 7 pulses). After evisceration the carcases were air chilled in a cooler at 1 to 2 degrees C with an average relative humidity of 91% and an air speed of 44 m/min. 3. Breast fillets were harvested at 2 and 4 h postmortem from both ES and control carcases and also at 8 h postmortem from control carcases to determine moisture loss pH and R-value. 4. Although there was no significant effect of ES on shear value at 2 h postmortem, the ES fillets had a lower shear value mean than the control fillets at 4 h postmortem. There was no significant difference between the shear value means of the ES 4 h fillets and the control 8 h fillets. 5. ES accelerated the normal post-mortem decline in pH at both 2 and 4 h postmortem. 6. The R-value means for the control and ES samples were similar 2 h but the R-value mean of the ES samples was greater than the control at 4 h postmortem. 7. The results suggest that, when followed by air chilling, ES accelerates postmortem metabolism, reduces ageing by up to 50%, and has no effect upon evaporative moisture loss.

Animals↗

Bleedout efficiency, carcass damage, and rigor mortis development following electrical stunning or carbon dioxide stunning on a shackle line.

In Experiment 1, 400 male broilers were stunned using a gradient of 40 to 60% CO2 over a period of 25 s or a 1% brine solution that was electrically charged (35 mA) for 7 s. Blood loss during bleeding was measured in 30-s intervals for a total of 120 s. After conventional processing and chilling, carcass damage was subjectively evaluated. Results indicated that the birds stunned with electricity bled faster than the CO2-stunned birds until 60 s. However, the cumulative blood loss was not different after 90 s. Carcass damage evaluation indicated that birds stunned with CO2 had a significantly lower percentage of broken clavicles, and had fewer hemorrhages on the surface of the Pectoralis. However, there was no difference between the two stunning methods in the frequency of damage at the shoulder. In Experiment 2, 256 broilers were stunned using the same conditions as in Experiment 1. Measurements of pH, R-value, sarcomere length (SL), and fragmentation index (FI) were evaluated from the left breast fillets harvested at 0, 1, 2, and 6 h postmortem. Shear values (SV) were determined using the right fillets harvested at the same four postmortem times and aged on ice until 24 h. No significant difference in breast muscle pH value was observed at 0, 2, and 6 h postmortem. However, CO2-stunned fillets had significantly higher pH values than the ES fillets at 1 h postmortem. Carbon dioxide produced greater R values than electricity at 2 and 6 h. Sarcomere length, FI, and SV were not significantly different at any time tested. These data suggest that CO2 stunning reduced carcass damage but did not reduce the need for aging before deboning when compared to the electrical stunning method used.

Animals↗

Meat quality and rigor mortis development in broiler chickens with gas-induced anoxia and postmortem electrical stimulation.

This study was conducted to evaluate the combined rigor-accelerating effects of postmortem electrical stimulation (ES) and argon-induced anoxia (Ar) of broiler chickens. One hundred broilers were processed in the following treatments: untreated controls, ES, Ar, or Ar with ES (Ar + ES). Breast fillets were harvested at 1 h postmortem for all treatments or at 1 and 6 h postmortem for the control carcasses. Fillets were sampled for pH and ratio of inosine to adenosine (R-value) and were then individually quick frozen (IQF) or aged on ice (AOI) until 24 h postmortem. Color was measured in the AOI fillets at 24 h postmortem. All fillets were then cooked and evaluated for Allo-Kramer shear value. The Ar treatment accelerated the normal pH decline, whereas the ES and AR + ES treatments yielded even lower pH values at 1 h postmortem. The Ar + ES treatment had a greater R-value than the ES treatment, which was greater than either the Ar or 1-h controls, which, in turn, were not different from each other. The ES treatment had the lowest L* value, and ES, Ar, and Ar + ES produced significantly higher a* values than the 1-h controls. For the IQF fillets, the ES and Ar + ES treatments were not different in shear value but were lower than Ar, which was lower than the 1-h controls. The same was true for the AOI fillets except that the ES and the Ar treatments were not different. These results indicated that although ES and Ar had rigor-accelerating and tenderizing effects, ES seemed to be more effective than Ar; there was little enhancement when Ar was added to the ES treatment and fillets were deboned at 1 h postmortem.

Abattoirs↗

A halothane test to detect turkeys prone to developing pale, soft, and exudative meat.

The turkey industry suffers from pale, soft, and exudative meat (PSE) that is unsuitable for further processing because of excessive color variation, poor meat binding, and depressed water holding ability. This condition is caused by accelerated postmortem muscle metabolism and is thought to be related to a similarly inherited condition in swine. A quick, nondestructive method of screening animals is needed to avoid further propagation of PSE in breeding flocks. In this study, a halothane test used with swine was evaluated as a possible detection method for PSE-susceptible turkeys. In Experiment 1, a commercial strain of 4-wk-old male turkeys (n = 116) was exposed to 3% halothane gas for 3 min (6 L/min) and examined for leg muscle rigidity. Experiment 2 followed similar testing measures, using two strains of growth-selected turkeys (n = 504). Measurements of pH, R-value (ratio of inosine:adenosine), color, and expressible moisture content were made from each bird's breast fillet to determine whether the muscles of the responding birds would develop PSE characteristics. Five percent of tested birds in the first experiment and 2% in the second experiment exhibited rigid legs, indicating some of the discriminating power of this test. However, the data indicated that the characteristics of muscles from these birds did not differ from those of the nonresponding birds (P < 0.05). Possibly, the birds may need to be screened or slaughtered at a different age or using different methods.

Adenosine↗

Postmortem pH, myofibrillar fragmentation, and calpain activity in Pectoralis from electrically stimulated and muscle tensioned broiler carcasses.

Broiler carcasses were conventionally processed or were electrically stimulated (ES) and had their Pectoralis muscles tensioned during rigor mortis development (ES/MT) to evaluate the relationship between the course of postmortem muscle pH decline and myofibrillar fragmentation. Samples from Pectoralis fillets harvested at 0, 0.5, 1, 2, and 24 h postmortem were analyzed for pH, myofibrillar fragmentation index, and calpain activity. The ES/MT treatment resulted in a more rapid pH decline and less myofibrillar fragmentation at all postmortem times sampled than conventional processing. Two distinct periods of fragmentation were noted for samples from both conventionally processed and ES/MT carcasses. These results agreed with the previous studies that this ES/MT treatment accelerated the normal postmortem pH decline, inhibited calpain activity, and thereby prevented postmortem proteolysis occurring during meat aging.

Animals↗

Tenderness of broiler breast fillets from carcasses treated with electrical stimulation and extended chilling times.

Postmortem electrical stimulation (ES) (450 V, 450 mA, 2 s on, 1 s off for five pulses) has been shown to decrease the toughness associated with early deboning. Most studies involving this system have been concerned with obtaining "acceptable" tenderness in fillets deboned at about 1 h postmortem, the time of carcass exit from an immersion chiller. However, the effects of ES combined with deboning at 2 h postmortem needs to be evaluated because some processors are considering extended immersion chilling and those already using air chilling require approximately 2 h for this process. Two 32-bird trials were conducted to compare tenderness in broiler breast fillets from ES-treated carcasses deboned at 1 and 2 h postmortem and fillets from control (C) carcasses deboned at 1 and 4 h postmortem. The Allo-Kramer shear value means of ES-2 h and C-4 h fillets were not different from each other and were significantly lower than that of the ES-lh fillets, which was significantly lower than the C-lh fillets. There was no significant difference among treatments associated with thaw loss or cook loss. The ES-2 h, ES-1 h, and C-4 h samples had significantly higher R-values and lower pH values than the C-1 h samples, indicating more advanced rigor development. These results indicate that deboning fillets from ES-treated carcasses at 2 h postmortem yields meat with a tenderness equivalent to the value reached with 4 h aging on the carcass. This is a 50% reduction in the time needed to achieve this level of tenderness.

Animals↗

Meat quality during processing.

The study of growth and development of any food animal such as poultry needs to consider the effects of the muscle changes on the use of the muscle as meat. If a treatment could increase muscle growth but the increased meat was of poor quality, then the increase in production would be of little value. Muscle is of particular concern because not only is it the tissue of greatest value for food, but it also is an excitable tissue and responsive to its environment. Many of these responses can be quite deleterious to meat quality. The basis for the response of muscle to its environment is in postmortem metabolism and the simultaneous development of rigor mortis. Although the animal may die in a matter of minutes following the neck cut, its muscle cells continue to metabolize and respond for hours after respiratory cessation and brain death. During these hours, the muscle has energy that fuels the responses to the environment, most commonly in terms of color and texture. Heat, transportation, and handling all contribute to the preslaughter stress that can alter color, texture, and related protein functionality. Stunning is another preslaughter factor that has a large effect on postmortem metabolism and meat quality. After death, chilling can toughen meat while it adds juiciness, and aging prevents the meat from toughening in response to deboning. Electrical stimulation is a recent beneficial innovation that reduces the need for aging by accelerating postmortem energy depletion and reducing the muscle's ability to toughen during deboning. This paper reviews the responsiveness of the muscle and gives examples of how these responses can hurt or help meat quality.

Animals↗

A comparison of texture and quality of breast fillets from broilers stunned by electricity and carbon dioxide on a shackle line or killed with carbon dioxide.

To compare the broiler breast muscle quality resulting from three different slaughter methods, 36 broilers in each of two replicates were randomly divided into three groups receiving CO2 stunning, electrical stunning (ES), or CO2 killing. Carbon dioxide stunning was accomplished in a tunnel with a gradient from 40 to 60% CO2 by allowing the broilers on shackles to pass through the tunnel for 25 s. Electrical stunning was done by passing the bird's head through a charged 1% brine solution (35 mA, 7 s). For CO2 killing, the birds were killed by asphyxiation in an atmosphere of less than 2% oxygen (air displaced by CO2) for 2.5 min. Following slaughter, all breast fillets were harvested at 1.25 h postmortem and analyzed for pH, R value, shear value (SV), expressible moisture, and color (lightness and redness at 1.25 and 24 h postmortem). There were no differences (P<0.05) between treatments in pH, R value, SV, 1.25-h color values, or expressible moisture. There was an increase (P<0.05) in lightness between 1.25 and 24 h postmortem in all treatments, with the CO2 stun exhibiting the greatest increase and resulting in a significantly greater L* value at 24 h postmortem than the CO2 killing treatment. These results suggest that the postmortem metabolism or characteristics of the meat from animals processed with these stunning or killing methods does not differ to a large extent.

Abattoirs↗

Rigor mortis development at elevated temperatures induces pale exudative turkey meat characteristics.

Development of rigor mortis at elevated post-mortem temperatures may contribute to turkey meat characteristics that are similar to those found in pale, soft, exudative pork. To evaluate this effect, 36 Nicholas tom turkeys were processed at 19 wk of age and placed in water at 40, 20, and 0 C immediately after evisceration. Pectoralis muscle samples were taken at 15 min, 30 min, 1 h, 2 h, and 4 h post-mortem and analyzed for R-value (an indirect measure of adenosine triphosphate), glycogen, pH, color, and sarcomere length. At 4 h, the remaining intact Pectoralis muscle was harvested, and aged on ice 23 h, and analyzed for drip loss, cook loss, shear values, and sarcomere length. By 15 min post-mortem, the 40 C treatment had higher R-values, which persisted through 4 h. By 1 h, the 40 C treatment pH and glycogen levels were lower than the 0 C treatment; however, they did not differ from those of the 20 C treatment. Increased L* values indicated that color became more pale by 2 h post-mortem in the 40 C treatment when compared to the 20 and 0 C treatments. Drip loss, cook loss, and shear value were increased whereas sarcomere lengths were decreased as a result of the 40 C treatment. These findings suggested that elevated post-mortem temperatures during processing resulted in acceleration of rigor mortis and biochemical changes in the muscle that produced pale, exudative meat characteristics in turkey.

Animals↗

Pale, soft, and exudative meat in turkeys treated with succinylcholine.

Rapid post-mortem metabolism concomitant with the early onset of rigor mortis can lead to the development of pale, soft, and exudative (PSE) meat. However, a reliable, nonlethal method for induction of this syndrome for the ante-mortem identification of abnormal turkeys has not been identified. The present study was conducted to evaluate the potential use of succinylcholine for inducing PSE meat in susceptible turkeys. Four-week-old Nicholas toms were either uninjected (controls) (n = 44) or injected with succinylcholine and butorphanol (n = 76) in combination. Post-mortem tissue samples were taken from the Pectoralis at 15 min, 2 h, and 4 h, for pH and R-value (the ratio of inosine to adenosine) determination. L*values were evaluated at 4 and 24 h post-mortem and drip loss and cook loss were determined. Means for pH, R-value, L*value, drip loss, and cook loss did not differ due to injection treatment. When Pectoralis were grouped as normal (L* < 53) or pale (L* > 53), pale fillets had lower pH and higher R-values than normal birds by 15 min post-mortem. Decreased water-holding properties were evident as drip loss and cook loss were increased in the pale group. The observed frequency of pale birds was 21.6% in the population, and the occurrence of pale birds was highest in the butorphanol-treated group. These findings suggest that although butorphanol did not affect overall treatment means for the test parameters, more turkeys in the treated group exhibited PSE meat.

Analgesics, Opioid↗

Dietary methionine intake effects on egg component yield, composition, functionality, and texture profile analysis.

The influence of supplemental Met levels ranging from 413 to 556 mg per hen per d (mg/HD) on liquid egg component yield, composition, and functionality was examined in mature layers (29 wk of age). Egg weight, component yield, solids, and CP content of albumen and yolk were determined. Texture profile analysis, feed ingredient functionality testing, and PAGE were conducted to determine whether increased egg total solids and CP content resulted in altered egg component functionality or electrophoretic protein banding pattern. Albumen component yield increased significantly on a mass basis at 507 and 556 mg/HD Met compared to 413 mg/HD Met. Yolk mass yield was significantly increased at 556 mg/HD Met compared to 413 mg/HD Met. Consumption above 413 mg/HD Met resulted in significantly increased albumen total solids and protein. Yolk solids were not significantly different; however, yolk CP was significantly increased at 507 and 556 mg/HD Met compared to 413 mg/HD Met. Albumen and yolk functionality at 413 and 507 g/HD Met were not significantly different in relation to cake volume or height. Emulsion separation at 120 min was significantly increased for 556 mg/HD Met compared to 413 and 507 g/HD Met. There were no significant differences in hardness or springiness of albumen and yolk gel plugs and electrophoretic protein banding patterns. Increased understanding of the influence of Met on liquid egg yield and composition may provide the egg producer with an effective and advantageous management technique for shell egg production specifically managed to maximize liquid egg product.

Albumins↗

Meat quality of broiler breast meat following post-mortem electrical stimulation at the neck.

This experiment was conducted to evaluate the effects of electrical stimulation (ES) on breast fillets harvested at 1 h post-mortem and individually quick frozen (IQF) or aged on ice (ICE). Twelve birds were electrically stimulated (450 V, 750 mA, 2 s on/1 s off for 15 s) at the neck in a saline bath. Twenty-four unstimulated birds were used as controls. Breast fillets were harvested at 1 h post-mortem from ES and control carcasses or at 4 h post-mortem from control carcasses and were either IQF or ICE until 24 h post-mortem. Fillets were then analyzed for shear value, pH, R value, and color. Electrical stimulation significantly reduced shear values compared to the 1 h controls for both IQF and ICE treatments. The ICE fillets deboned at 1 h from ES-treated carcasses had shear values similar to those of ICE fillets deboned from the 4 h controls. Electrical stimulation increased the percentage of shear values at or below 8 kg/g for the fillets from ES-treated carcasses compared to the 1 h controls. Electrical stimulation accelerated the normal post-mortem decline in pH and increase in R value. There was no significant difference in L* or a* values between the fillets held for 1 or 24 h. The results suggest that by electrically stimulating carcasses at the neck using a saline bath, the aging period could be eliminated by removing fillets immediately after chilling at 1 h, decreasing the costs associated with aging whole carcasses or front halves.

Animals↗