Polly Fordyce

Polly Fordyce

Stanford University

H-index: 27

North America-United States

About Polly Fordyce

Polly Fordyce, With an exceptional h-index of 27 and a recent h-index of 24 (since 2020), a distinguished researcher at Stanford University, specializes in the field of microfluidics, technology development, transcription factors, spectral encoding.

His recent articles reflect a diverse array of research interests and contributions to the field:

Design automation of microfluidic single and double emulsion droplets with machine learning

FACS-Sortable Picoreactors for Ultra High-throughput Screening of Catalysts in Biphasic Environments

Alleviating cell lysate-induced inhibition to enable RT-PCR from single cells in picoliter-volume double emulsion droplets

Versatility and stability optimization of flow-focusing droplet generators via quality metric-driven design automation

Global substrate identification and high throughput in vitro dephosphorylation reactions uncover PP1 and PP2A-B55 specificity principles

Phosphatase specificity principles uncovered by MRBLE: Dephos and global substrate identification

Double emulsions as a high-throughput enrichment and isolation platform for slower-growing microbes

High-throughput force-dependent cellular response assay using spectrally encoded smart beads

Polly Fordyce Information

University

Position

___

Citations(all)

3000

Citations(since 2020)

1547

Cited By

1937

hIndex(all)

27

hIndex(since 2020)

24

i10Index(all)

40

i10Index(since 2020)

38

Email

University Profile Page

Google Scholar

Polly Fordyce Skills & Research Interests

microfluidics

technology development

transcription factors

spectral encoding

Top articles of Polly Fordyce

Design automation of microfluidic single and double emulsion droplets with machine learning

Nature Communications

2024/1/2

FACS-Sortable Picoreactors for Ultra High-throughput Screening of Catalysts in Biphasic Environments

bioRxiv

2024

Alleviating cell lysate-induced inhibition to enable RT-PCR from single cells in picoliter-volume double emulsion droplets

Analytical Chemistry

2023/1/4

Versatility and stability optimization of flow-focusing droplet generators via quality metric-driven design automation

Lab on a Chip

2023

Global substrate identification and high throughput in vitro dephosphorylation reactions uncover PP1 and PP2A-B55 specificity principles

bioRxiv

2023

Phosphatase specificity principles uncovered by MRBLE: Dephos and global substrate identification

Molecular Systems Biology

2023/12/6

Double emulsions as a high-throughput enrichment and isolation platform for slower-growing microbes

ISME communications

2023/12

High-throughput force-dependent cellular response assay using spectrally encoded smart beads

2023/11/30

High-throughput thermodynamic and kinetic measurements of transcription factor/DNA mutations reveal how conformational heterogeneity can shape motif selectivity

bioRxiv

2023/11/16

A microwell platform for high-throughput longitudinal phenotyping and selective retrieval of organoids

Cell systems

2023/9/20

Decoupling of catalysis and transition state analog binding from mutations throughout a phosphatase revealed by high-throughput enzymology

Proceedings of the National Academy of Sciences

2023/7/18

Methods and compositions related to lanthanide-encoded microbeads

2023/7/6

On the dependent recognition of some long zinc finger proteins

Nucleic Acids Research

2023/3/23

Microfluidic encapsulation of photosynthetic cyanobacteria in hydrogel microparticles augments oxygen delivery to rescue ischemic myocardium

Journal of bioscience and bioengineering

2023/6/1

De novo distillation of thermodynamic affinity from deep learning regulatory sequence models of in vivo protein-DNA binding

bioRxiv

2023/5/11

Large-scale mapping and mutagenesis of human transcriptional effector domains

Nature

2023/4/13

High throughput measurements of direct activation domain-coactivator interactions

Biophysical Journal

2023/2/10

Daniel Griffith
Daniel Griffith

H-Index: 2

Polly Fordyce
Polly Fordyce

H-Index: 18

High-throughput, quantitative measurements reveal the biophysical mechanisms by which transcription factor mutations drive disease

Biophysical Journal

2023/2/10

Polly Fordyce
Polly Fordyce

H-Index: 18

Beyond the DNA binding domain: How do intrinsically disordered regions within transcription factors impact DNA binding specificity?

Biophysical Journal

2023/2/10

Polly Fordyce
Polly Fordyce

H-Index: 18

See List of Professors in Polly Fordyce University(Stanford University)

Co-Authors

academic-engine