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Keywords = bimodal milk flow

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16 pages, 2130 KB  
Communication
Milkability in Dairy Species: A Comparative Field Study on Milk Flow Dynamics in Cattle, Buffaloes, Sheep, Goats, and Donkeys Using an Electronic Milk Meter
by Carlo Boselli, Antonella Chiariotti, Valentina D’Onofrio, Maria Concetta Campagna, Giuliano Palocci, Vittoria Lucia Barile and Antonio Borghese
Dairy 2026, 7(3), 42; https://doi.org/10.3390/dairy7030042 - 15 Jun 2026
Viewed by 786
Abstract
Milk flow dynamics during mechanical milking are strongly influenced by species-specific mammary anatomy, milk partitioning between cisternal and alveolar compartments, and milking management. The present study aimed to compare milkability traits across the main dairy species reared in central Italy using a large [...] Read more.
Milk flow dynamics during mechanical milking are strongly influenced by species-specific mammary anatomy, milk partitioning between cisternal and alveolar compartments, and milking management. The present study aimed to compare milkability traits across the main dairy species reared in central Italy using a large dataset collected over 20 years. A total of 7315 animals were included: dairy cows (1103), buffaloes (2870), goats (2399), sheep (754), and donkeys (189). Milk flow curves were recorded using a portable Lactocorder® device. The following traits were analyzed: milk yield (MY), lag time (LT), milk ejection time (MET), total milking time (TMT), peak flow rate (PFR), average flow rate (AFR), plateau phase (PL), bimodal phase (BM), and bimodality incidence (Bimo). Marked interspecific differences emerged. Dairy cows showed the highest MY and PFR, with bimodality occurring in 23.7% of curves. Buffaloes exhibited lower flow rates, prolonged LT, and extended TMT, reflecting their strong dependence on oxytocin-mediated alveolar milk ejection. Sheep demonstrated short milking times and low bimodality (13.5%), consistent with their large cisternal milk fraction. Goats displayed breed-dependent variability, with specialized dairy breeds showing higher PFR and longer TMT. Donkeys produced low milk volumes but exhibited rapid and efficient milk flow, with the lowest incidence of bimodality (7.4%). Overall, milk flow patterns reflected species-specific udder morphology and physiological mechanisms of milk ejection. Although this field-based study faces inherent limitations in environmental and protocol standardization across farms, the resulting long-term dataset remains highly representative. These findings highlight the importance of tailoring milking machine settings and prestimulation protocols to species and breed characteristics to optimize milking efficiency, labor management, and animal welfare. Full article
(This article belongs to the Section Milk Processing)
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10 pages, 232 KB  
Communication
The Influence of Vacuum Level on the Milk Emission Curves and Udder Health of Saanen Goats Reared in Italy
by Mariagiovanna Domanico, Valentina D’Onofrio, Guglielmo Militello, Giuseppina Giacinti, Giuseppe Bitonti, Marcella Guarducci, Domenico Giontella, Silverio Grande, Maria Caria and Carlo Boselli
Animals 2025, 15(16), 2432; https://doi.org/10.3390/ani15162432 - 19 Aug 2025
Cited by 1 | Viewed by 1177
Abstract
The kinetics of milk release is influenced by several factors, including the milking facility, which affects the milk emission profile and quality. In dairy goats, the typical working vacuum level is 41–44 kPa; higher levels negatively impact health, quality, and milkability traits. This [...] Read more.
The kinetics of milk release is influenced by several factors, including the milking facility, which affects the milk emission profile and quality. In dairy goats, the typical working vacuum level is 41–44 kPa; higher levels negatively impact health, quality, and milkability traits. This study, which was conducted on a commercial dairy farm located in the Latium region (central Italy), evaluates the impact of two vacuum levels (38 kPa and 42 kPa) on the milk emission profile and somatic cell content in Saanen goats. Statistical analysis (one-way ANOVA) of 400 milk flow curves recorded from 100 goats in four different afternoon milking sessions (200 at 42 kPa and 200 at 38 kPa) showed no significant differences in terms of milk yield, total milking time, or bimodal curve percentage when using two different operating vacuum levels. However, the milk emission time was longer at 38 kPa (1.86 vs. 1.71 min), while the peak flow rate (1.04 vs. 0.96 kg/min) and blind time (0.32 vs. 0.24 min) were higher at 42 kPa. Somatic cell content decreased significantly as the working vacuum level decreased (2470 vs. 2167 × 1000 cells/mL). This is in line with current studies which suggest that high vacuum levels increase the risk of udder injury and intramammary infection. In conclusion, adjusting the milking machine to a working vacuum level of 38 kPa, and performing proper maintenance and routine checks, significantly improves somatic cell content, and, consequently, milk quality, in goats. Full article
13 pages, 1322 KB  
Article
The Association of Delayed Milk Ejection and Milk Production in Dairy Cows Milked by an Automated Milking System
by Matthias Wieland and Heleen ten Have
Animals 2025, 15(7), 1011; https://doi.org/10.3390/ani15071011 - 31 Mar 2025
Cited by 1 | Viewed by 2122
Abstract
This retrospective cohort study examined the association between delayed milk ejection (DME), defined as bimodal milk flow, and milk yield in dairy cows milked with an automated milking system (AMS). Additionally, we identified risk factors for DME. Using data from a farm milking [...] Read more.
This retrospective cohort study examined the association between delayed milk ejection (DME), defined as bimodal milk flow, and milk yield in dairy cows milked with an automated milking system (AMS). Additionally, we identified risk factors for DME. Using data from a farm milking approximately 1350 cows, we analyzed 689,484 individual milking records and 194,142 daily cow observations over 350 days with generalized linear mixed models. Cows with DME generally had higher daily milk yields, regardless of lactation number. However, first-lactation cows early in lactation and older cows (≥third lactation) late in lactation produced less milk when experiencing DME. In contrast to the higher daily milk yield, cows produced less milk per milking when experiencing delayed milk ejection. However, more frequent milkings contributed to higher daily milk yield, even with more instances of delayed milk ejection. Risk factors for DME included lactation number, stage of lactation, milking frequency, and milking interval. These findings underscore the complexity of DME in AMS and suggest that optimizing individualized milking protocols could improve milk yield efficiency. Understanding the interplay of cow characteristics and milking management may enhance AMS performance and dairy herd productivity. Full article
(This article belongs to the Section Cattle)
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15 pages, 1096 KB  
Article
Study of the Milkability of the Mediterranean Italian Buffalo and the Tunisian Maghrebi Camel According to Parity and Lactation Stage
by Moufida Atigui, Marwa Brahmi, Pierre-Guy Marnet, Wiem Ben Salem, Maria Concetta Campagna, Antonio Borghese, Giuseppe Todde, Maria Caria, Mohamed Hammadi and Carlo Boselli
Animals 2024, 14(7), 1055; https://doi.org/10.3390/ani14071055 - 29 Mar 2024
Cited by 2 | Viewed by 2733
Abstract
While considered as hard milkers, both buffaloes and camels are milked with equipment destined for dairy cows based on external morphological similarities with this species. This work aimed to study similarities and differences in milkability traits between Mediterranean buffaloes and Maghrebi she-camels and [...] Read more.
While considered as hard milkers, both buffaloes and camels are milked with equipment destined for dairy cows based on external morphological similarities with this species. This work aimed to study similarities and differences in milkability traits between Mediterranean buffaloes and Maghrebi she-camels and to evaluate the effect of parity and lactation stage. A total of 422 milk flow curves recorded with an electronic milkmeter (Lactocorder®) for both species were accessed. Milking characteristics including milk yield per milking, peak milk flow, average milk flow, duration of the main milking phase, duration of total milking, duration of various phases of milk flow, lag time and time to milk ejection, stripping yield, overmilking time and incidence of bimodal milk flow curves were evaluated for both species. Results showed that the values of milk yield per milking, duration of the main milking phase and duration of total milking were higher in buffaloes (3.98 ± 0.10 kg; 4.07 ± 0.11 min; 9.89 ± 0.21 min, respectively) compared to camels (3.51 ± 0.08 kg; 3.05 ± 0.09 min; 3.76 ± 0.09 min, respectively). However, camels had significantly higher peak and average milk flow (2.45 ± 0.07 kg/min and 1.16 ± 0.03 kg/min, respectively). Camels took significantly less time for milk ejection to occur. Only 15.49% of recorded curves were bimodal in buffaloes while 34.93% of bimodal curves were recorded for camels. Overmilking was significantly higher in buffaloes (3.64 ± 0.21 min vs. 0.29 ± 0.02 min). Parity and lactation stage had a significant effect on most studied milking traits suggesting the need for some particular practices with primiparous animals and animals at different levels of lactation for both species. Full article
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12 pages, 991 KB  
Article
Machine Milkability of Dromedary Camels: Correlation between Udder Morphology and Milk Flow Traits
by Moufida Atigui, Marwa Brahmi, Imen Hammadi, Pierre-Guy Marnet and Mohamed Hammadi
Animals 2021, 11(7), 2014; https://doi.org/10.3390/ani11072014 - 6 Jul 2021
Cited by 18 | Viewed by 6430
Abstract
This study aims to measure mammary morphological traits with a functional influence on machine milking ability of Tunisian Camels (Camelus dromedarius) and their evolution according to the stage of lactation and parity. Udder and teat measurements were recorded before morning milking [...] Read more.
This study aims to measure mammary morphological traits with a functional influence on machine milking ability of Tunisian Camels (Camelus dromedarius) and their evolution according to the stage of lactation and parity. Udder and teat measurements were recorded before morning milking and associated with the measurement of milk emission kinetics parameters evaluated with Lactocorder® devices (WMB AG, Balgache, Switzerland) and observations. Three main teat shapes were recorded and their dimensions evolved with parity and stage of lactation. The milk flow curves were classified into three main types according to their maximum and average flow rates and they also evolve according to parity and stage of lactation. An average of 41% of the milk flow curves was bimodal. The correlations showed that some morphological traits were unfavorable to rapid milking and that these increase with parity. Therefore, this study provides the first elements for a morphological selection associated with an aptitude for mechanical milking which appears rather good in our dromedaries. Nevertheless, it will be necessary to monitor a possible negative evolution of the functional and anatomical traits of the udders during the career of the animals. Full article
(This article belongs to the Special Issue Trends in Camel Health and Production)
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15 pages, 612 KB  
Article
Vacuum Dynamics as an Alternative Method for Detection of Bimodal Milk Ejection in Dairy Cows
by Matthias Wieland, Christina Marie Geary, Gloria Gioia, Kerry Lynn Case, Paolo Moroni and Anja Sipka
Animals 2021, 11(7), 1860; https://doi.org/10.3390/ani11071860 - 23 Jun 2021
Cited by 17 | Viewed by 3641
Abstract
The primary objective of our study was to assess the ability of a vacuum recorder to detect the presence of bimodal milk flow curves in dairy cows compared with a portable milk flow meter. In a cross-sectional study, 241 individual cow milking observations [...] Read more.
The primary objective of our study was to assess the ability of a vacuum recorder to detect the presence of bimodal milk flow curves in dairy cows compared with a portable milk flow meter. In a cross-sectional study, 241 individual cow milking observations were analyzed. We simultaneously collected (1) individual cow vacuum events during milking using portable vacuum recorders, and (2) individual cow milk flow curves by attaching a portable milk flow meter to the same milking unit. Presence of bimodality was assessed with the vacuum recorder visually (BIMVA) and with the gold standard method of a milk flow meter through automatic detection (BIMLA). Kappa statistics revealed moderate agreement between BIMVA and BIMLA [κ, 95% confidence intervals (95% CI) = 0.59 (0.46–0.71)]. Diagnostic test statistics for BIMVA for detection of bimodality indicated moderate performance for sensitivity [0.65 (0.52–0.76)] and positive predictive value [0.71 (0.58–0.82)] and high values for specificity [0.92 (0.87–0.95)] and negative predictive value [0.93 (0.84–0.93)]. We conclude that milking vacuum dynamics are a suitable measure to assess bimodal milk flow curves in dairy cows. Full article
(This article belongs to the Section Animal System and Management)
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