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Medical School Watercooler Newsletter - March 30, 2023
This is the March 30, 2023 edition of the Frederick P. Whiddon College of Medicine\u27s newsletter - Watercooler.
Contents include: Return to Rwanda: Medical students, faculty serve on medical mission OB-GYN interest group to host book club discussion SRFC to provide colorectal cancer screenings March 3
Medical School Watercooler Newsletter - March 17, 2023
This is the March 17, 2023 edition of the Frederick P. Whiddon College of Medicine\u27s newsletter - Watercooler.
Contents include: Students celebrate residency matches at match day Trauma surgeon wins prestigious award for project inspire abstract Labs receive grant for new flow cytometer Mark your calendar: Town hall set for March 2
Medical School Watercooler Newsletter - February 17, 2023
This is the February 17, 2023 edition of the Frederick P. Whiddon College of Medicine\u27s newsletter - Watercooler.
Contents include: Inabnet to present Fazier / Leigh Memorial Lectures Faculty development to focus on conflict resolution Teaching kitchen provides hands-on culinary medicine experience for medical students Menger invited to present at international symposium Pierce presents talk on HPV, cervical cancer Solidarity Bingo winners announced for solidarity week Save the date: USA Neuroscience Symposium Distinguished Scientists seminar set for Feb. 16 USA researchers uncover novel mechanism that supports survival of pancreatic cancel cell
U2.31.989_TA3 06.14.21 Prox. Humerus.ta3
Objectives We estimate adult age distributions from Unar 1 and Unar 2, two late Umm an-Nar (2400-2100 BCE) tombs in the modern-day Emirate of Ras al-Khaimah, United Arab Emirates. These collective tombseach contained hundreds of skeletons in commingled, fragmented, and variably cremated states. Previous studies placed the vast majority of this mortuary community in a generalized “adult” category, as have most analyses of similar tombs from this period. We sought to test how adult age estimation methods compare in identifying young, middle, and old age individuals in commingled assemblages.
Materials and Methods We employed Transition Analysis 3 (TA3) and traditional age estimation methods to generate adult age distributions for each tomb. We compared these distributions between tomb contexts as well as by method.
Results Unar 1 and Unar 2 had similar adult age distributions within each method, but TA3 age distributions included significantly more middle and older adult individuals than those generated by traditional methods.
Discussion These results support findings of earlier iterations of Transition Analysis in regard to sensitivity in old adult age estimation, compared to traditional methods. Our findings indicate a potential use of TA3 in reconstructing age distributions and mortality profiles in commingled skeletal assemblages. Increasing our understanding of everyday life in the distant past necessitates better understandings of adult age, and here, we illustrate how age estimation method choice significantly changes bioarchaeological interpretations of aging in Bronze Age Arabia
U2.31.1038_TA3 06.14.21 Prox. Humerus.ta3
Objectives We estimate adult age distributions from Unar 1 and Unar 2, two late Umm an-Nar (2400-2100 BCE) tombs in the modern-day Emirate of Ras al-Khaimah, United Arab Emirates. These collective tombseach contained hundreds of skeletons in commingled, fragmented, and variably cremated states. Previous studies placed the vast majority of this mortuary community in a generalized “adult” category, as have most analyses of similar tombs from this period. We sought to test how adult age estimation methods compare in identifying young, middle, and old age individuals in commingled assemblages.
Materials and Methods We employed Transition Analysis 3 (TA3) and traditional age estimation methods to generate adult age distributions for each tomb. We compared these distributions between tomb contexts as well as by method.
Results Unar 1 and Unar 2 had similar adult age distributions within each method, but TA3 age distributions included significantly more middle and older adult individuals than those generated by traditional methods.
Discussion These results support findings of earlier iterations of Transition Analysis in regard to sensitivity in old adult age estimation, compared to traditional methods. Our findings indicate a potential use of TA3 in reconstructing age distributions and mortality profiles in commingled skeletal assemblages. Increasing our understanding of everyday life in the distant past necessitates better understandings of adult age, and here, we illustrate how age estimation method choice significantly changes bioarchaeological interpretations of aging in Bronze Age Arabia
Everything You Always Wanted to Know About JagWorks...But Were Afraid to Ask
This is a presentation by Jana Herrmann, Institutional Repository Administrator, about the JagWorks@USA Institutional Repository. This presentation was part of the material presented at the 2023 USA Libraries Staff Summer Workshop
U2.31.147_TA3 06.22.21 Dist. Humerus.ta3
Objectives We estimate adult age distributions from Unar 1 and Unar 2, two late Umm an-Nar (2400-2100 BCE) tombs in the modern-day Emirate of Ras al-Khaimah, United Arab Emirates. These collective tombseach contained hundreds of skeletons in commingled, fragmented, and variably cremated states. Previous studies placed the vast majority of this mortuary community in a generalized “adult” category, as have most analyses of similar tombs from this period. We sought to test how adult age estimation methods compare in identifying young, middle, and old age individuals in commingled assemblages.
Materials and Methods We employed Transition Analysis 3 (TA3) and traditional age estimation methods to generate adult age distributions for each tomb. We compared these distributions between tomb contexts as well as by method.
Results Unar 1 and Unar 2 had similar adult age distributions within each method, but TA3 age distributions included significantly more middle and older adult individuals than those generated by traditional methods.
Discussion These results support findings of earlier iterations of Transition Analysis in regard to sensitivity in old adult age estimation, compared to traditional methods. Our findings indicate a potential use of TA3 in reconstructing age distributions and mortality profiles in commingled skeletal assemblages. Increasing our understanding of everyday life in the distant past necessitates better understandings of adult age, and here, we illustrate how age estimation method choice significantly changes bioarchaeological interpretations of aging in Bronze Age Arabia
U2.31.331_TA3 06.22.21 Dist. Humerus.ta3
Objectives We estimate adult age distributions from Unar 1 and Unar 2, two late Umm an-Nar (2400-2100 BCE) tombs in the modern-day Emirate of Ras al-Khaimah, United Arab Emirates. These collective tombseach contained hundreds of skeletons in commingled, fragmented, and variably cremated states. Previous studies placed the vast majority of this mortuary community in a generalized “adult” category, as have most analyses of similar tombs from this period. We sought to test how adult age estimation methods compare in identifying young, middle, and old age individuals in commingled assemblages.
Materials and Methods We employed Transition Analysis 3 (TA3) and traditional age estimation methods to generate adult age distributions for each tomb. We compared these distributions between tomb contexts as well as by method.
Results Unar 1 and Unar 2 had similar adult age distributions within each method, but TA3 age distributions included significantly more middle and older adult individuals than those generated by traditional methods.
Discussion These results support findings of earlier iterations of Transition Analysis in regard to sensitivity in old adult age estimation, compared to traditional methods. Our findings indicate a potential use of TA3 in reconstructing age distributions and mortality profiles in commingled skeletal assemblages. Increasing our understanding of everyday life in the distant past necessitates better understandings of adult age, and here, we illustrate how age estimation method choice significantly changes bioarchaeological interpretations of aging in Bronze Age Arabia
U2.31.589_TA3 06.22.21 Dist. Humerus.ta3
Objectives We estimate adult age distributions from Unar 1 and Unar 2, two late Umm an-Nar (2400-2100 BCE) tombs in the modern-day Emirate of Ras al-Khaimah, United Arab Emirates. These collective tombseach contained hundreds of skeletons in commingled, fragmented, and variably cremated states. Previous studies placed the vast majority of this mortuary community in a generalized “adult” category, as have most analyses of similar tombs from this period. We sought to test how adult age estimation methods compare in identifying young, middle, and old age individuals in commingled assemblages.
Materials and Methods We employed Transition Analysis 3 (TA3) and traditional age estimation methods to generate adult age distributions for each tomb. We compared these distributions between tomb contexts as well as by method.
Results Unar 1 and Unar 2 had similar adult age distributions within each method, but TA3 age distributions included significantly more middle and older adult individuals than those generated by traditional methods.
Discussion These results support findings of earlier iterations of Transition Analysis in regard to sensitivity in old adult age estimation, compared to traditional methods. Our findings indicate a potential use of TA3 in reconstructing age distributions and mortality profiles in commingled skeletal assemblages. Increasing our understanding of everyday life in the distant past necessitates better understandings of adult age, and here, we illustrate how age estimation method choice significantly changes bioarchaeological interpretations of aging in Bronze Age Arabia