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Naomichi Yamamoto

Seoul National University · Environmental Science

About the Lab

Professor Naomichi Yamamoto's research lab specializes in atmospheric microbiology, focusing on the sources, transport, and deposition of airborne fungi and bacteria in urban and indoor environments. The lab investigates the seasonal and size-resolved dynamics of fungal and bacterial communities, emphasizing their impacts on human health, particularly respiratory diseases like asthma. Using advanced molecular techniques such as quantitative PCR and high-throughput sequencing, the lab quantifies microbial exposure and apportions indoor and outdoor sources through mass balance modeling. Their work bridges environmental science, public health, and aerobiology to understand the role of atmospheric microbes in global biogeochemical cycles and human exposure.

atmospheric microbiologyfungal sporesbacterial depositionair exchange rateindoor air quality

Research Overview

Papers
139
Total Citations
3,571
Papers (5y)
22
Primary Field
Environmental Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
22total
2022
2023
2024
2025
2026
Citations per year (5y)
65total
20222023202420252026

Selected Papers

15
1
Article|266 citations·2012
Particle-size distributions and seasonal diversity of allergenic and pathogenic fungi in outdoor air
Naomichi Yamamoto, Kyle Bibby, Jing Qian, Denina Hospodsky, Hamid Rismani‐Yazdi, William W. Nazaroff, Jordan Peccia
SJR Q1The ISME JournalOA

Fungi are ubiquitous in outdoor air, and their concentration, aerodynamic diameters and taxonomic composition have potentially important implications for human health. Although exposure to fungal allergens is considered a strong risk factor for asthma prevalence and severity, limitations in tracking fungal diversity in air have thus far prevented a clear understanding of their human pathogenic properties. This study used a cascade impactor for sampling, and quantitative real-time PCR plus 454 py

Health, Toxicology and MutagenesisEnvironmental Science
2
Article|157 citations·2009
Residential air exchange rates in three major US metropolitan areas: results from the Relationship Among Indoor, Outdoor, and Personal Air Study 1999â2001
Naomichi Yamamoto, Derek G. Shendell, Arthur M. Winer, Junfeng Zhang
SJR Q1Indoor AirOA

UNLABELLED: We report approximately 500 indoor-outdoor air exchange rate (AER) calculations based on measurements conducted in residences in three US metropolitan areas in 1999-2001: Elizabeth, New Jersey; Houston, Texas; and Los Angeles County, California. Overall, a median AER across these urban areas and seasons was 0.71 air changes per hour (ACH, or per hour; n = 509) while median AERs measured in California (n = 182), New Jersey (n = 163), and Texas (n = 164) were 0.87, 0.88, and 0.47 ACH,

Health, Toxicology and MutagenesisEnvironmental Science
3
Article|127 citations·2006
Size Distributions of Soil Particles Adhered to Children’s Hands
Naomichi Yamamoto, Yuko Takahashi, Jun Yoshinaga, Atsushi Tanaka, Yasuyuki Shibata
SJR Q1Archives of Environmental Contamination and Toxicology
Soil ScienceAgricultural and Biological Sciences
4
Article|110 citations·2015
Indoor Emissions as a Primary Source of Airborne Allergenic Fungal Particles in Classrooms
Naomichi Yamamoto, Denina Hospodsky, Karen C. Dannemiller, William W. Nazaroff, Jordan Peccia
SJR Q1Environmental Science & TechnologyOA

This study quantifies the influence of ventilation and indoor emissions on concentrations and particle sizes of airborne indoor allergenic fungal taxa and further examines geographical variability, each of which may affect personal exposures to allergenic fungi. Quantitative PCR and multiplexed DNA sequencing were employed to count and identify allergenic fungal aerosol particles indoors and outdoors in seven school classrooms in four different countries. Quantitative diversity analysis was comb

Health, Toxicology and MutagenesisEnvironmental Science
5
Article|97 citations·2018
Taxonomic diversity of fungi deposited from the atmosphere
Cheolwoon Woo, Choa An, Siyu Xu, Seung‐Muk Yi, Naomichi Yamamoto
SJR Q1The ISME JournalOA

Abstract Fungi release spores into the global atmosphere. The emitted spores are deposited to the surface of the Earth by sedimentation (dry deposition) and precipitation (wet deposition), and therefore contribute to the global cycling of substances. However, knowledge is scarce regarding the diversities of fungi deposited from the atmosphere. Here, an automatic dry and wet deposition sampler and high-throughput sequencing plus quantitative PCR were used to observe taxonomic diversities and flux

Ecology, Evolution, Behavior and SystematicsAgricultural and Biological Sciences
6
Article|55 citations·2014
Assessing the aerodynamic diameters of taxon-specific fungal bioaerosols by quantitative PCR and next-generation DNA sequencing
Naomichi Yamamoto, William W. Nazaroff, Jordan Peccia
SJR Q1Journal of Aerosol Science
Health, Toxicology and MutagenesisEnvironmental Science
7
Article|50 citations·2020
Falling bacterial communities from the atmosphere
Cheolwoon Woo, Naomichi Yamamoto
SJR Q1Environmental MicrobiomeOA

Abstract Background Bacteria emitted into the atmosphere eventually settle to the pedosphere via sedimentation (dry deposition) or precipitation (wet deposition), constituting a part of the global cycling of substances on Earth, including the water cycle. In this study, we aim to investigate the taxonomic compositions and flux densities of bacterial deposition, for which little is known regarding the relative contributions of each mode of atmospheric deposition, the taxonomic structures and memb

EcologyEnvironmental Science
8
Article|46 citations·2011
Assessing allergenic fungi in house dust by floor wipe sampling and quantitative PCR
Naomichi Yamamoto, Derek G. Shendell, Jordan Peccia
SJR Q1Indoor AirOA

Fungi are ubiquitous in indoor and outdoor environments, and many fungi are known to cause allergic reactions and exacerbate asthma attacks. This study established--by modifying an existing--a wipe sampling method to collect fungi in floor dust followed by real-time quantitative PCR (qPCR)-based detection methodologies. Results from this combined laboratory and field assessment suggested the methodology's potential to inform larger human exposure studies for fungal pathogens and allergens in hou

Health, Toxicology and MutagenesisEnvironmental Science
9
Article|42 citations·2011
Comparison of quantitative airborne fungi measurements by active and passive sampling methods
Naomichi Yamamoto, Detlef Schmechel, Bean T. Chen, William G. Lindsley, Jordan Peccia
SJR Q1Journal of Aerosol Science
Health, Toxicology and MutagenesisEnvironmental Science
10
Article|35 citations·2015
Fungal compositions and diversities on indoor surfaces with visible mold growths in residential buildings in the Seoul Capital Area of South Korea
C. An, Naomichi Yamamoto
SJR Q1Indoor Air

Indoor visible mold growths are known to be associated with allergies and respiratory illnesses. However, a question remains of their compositions and diversities. Using swab sampling and high-throughput DNA sequencing, this study analyzed taxonomic compositions and diversities of fungi on indoor surfaces laden with visible mold growths in residential apartments in South Korea. The sequencing results showed low species diversities with Shannon indices ranging from 0.14 to 2.29 (mean = 1.11). Sev

Health, Toxicology and MutagenesisEnvironmental Science
11
Article|31 citations·2006
A passive sampler for airborne coarse particles
Naomichi Yamamoto, Masaji Hikono, Hiromi Koyama, Kazukiyo Kumagai, Minoru Fujii, Yukio Yanagisawa
SJR Q1Journal of Aerosol Science
Health, Toxicology and MutagenesisEnvironmental Science
12
Article|29 citations·2019
DNA metabarcoding-based diet survey for the Eurasian otter (Lutra lutra): Development of a Eurasian otter-specific blocking oligonucleotide for 12S rRNA gene sequencing for vertebrates
Priyanka Kumari, Ke Dong, Kyung-Yeon Eo, Woo-Shin Lee, Junpei Kimura, Naomichi Yamamoto
SJR Q1PLoS ONEOA

The Eurasian otter (Lutra lutra) is an endangered species for which diet analyses are needed as part of its conservation efforts. Eurasian otters feed on vertebrates, such as fishes, and invertebrates, such as crustaceans, but their detailed taxonomies are not fully understood in part due to limited resolving power of traditional morphological identification methods. Here, we used high-throughput sequencing (HTS)-based DNA metabarcoding approaches to analyze diet profiles of Eurasian otters inha

EcologyEnvironmental Science
13
Article|27 citations·2009
Optimization of a real-time PCR assay to quantitate airborne fungi collected on a gelatin filter
Naomichi Yamamoto, Minoru Kimura, Hideaki Matsuki, Yukio Yanagisawa
SJR Q2Journal of Bioscience and Bioengineering
Health, Toxicology and MutagenesisEnvironmental Science
14
Article|27 citations·2014
Clustering of fungal community internal transcribed spacer sequence data obscures taxonomic diversity
Naomichi Yamamoto, Kyle Bibby
SJR Q1Environmental Microbiology

Next-generation DNA sequencing has enabled a rapid expansion in the size of molecular fungal ecology studies employing the nuclear internal transcribed spacer (ITS) region. Many sequence-processing pipelines and protocols require sequence clustering to generate operational taxonomic units (OTUs) based on sequence similarity as a step to reduce total data quantity and complexity prior to taxonomic assignment. However, the consequences of ITS sequence clustering in regard to sample taxonomic cover

Cell BiologyBiochemistry, Genetics and Molecular Biology
15
Article|26 citations·2015
Relationships among Indoor, Outdoor, and Personal Airborne Japanese Cedar Pollen Counts
Naomichi Yamamoto, Yuuki Matsuki, Hiromichi Yokoyama, Hideaki Matsuki
SJR Q1PLoS ONEOA

Japanese cedar pollinosis (JCP) is an important illness caused by the inhalation of airborne allergenic cedar pollens, which are dispersed in the early spring throughout the Japanese islands. However, associations between pollen exposures and the prevalence or severity of allergic symptoms are largely unknown, due to a lack of understanding regarding personal pollen exposures in relation to indoor and outdoor concentrations. This study aims to examine the relationships among indoor, outdoor, and

Immunology and AllergyMedicine

Research Areas

Health, Toxicology and MutagenesisAerospace EngineeringEcologyCell BiologyMolecular BiologyBiomedical Engineering

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