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Paper Citation Record · LEDGER

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods

As of 20 August 2026, this Paper Citation Record lists 100 of 299 outbound references and 8 inbound Pith citation observations for arXiv:2505.05396.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2505.05396 v2

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measured 100 of 299 reference resolution

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measured 8 of 8 inbound itemization

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Reference resolution

100 of 299 outbound references displayed

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Outbound references

Observation f161b0ac-68d6-48e5-9339-dfc063975f04 · outbound

This paper cites Pain terms: a list with definitions and notes on usage.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Pain terms: a list with definitions and notes on usage

Reference 1

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Observation 46c0fc4f-5d2d-4927-bd10-412902fc1ca2 · outbound

This paper cites Updating the definition of pain.Pain, 157(11):2420–2423, nov 2016.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Updating the definition of pain.Pain, 157(11):2420–2423, nov 2016

Reference 2

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Observation 31d01227-d1d7-4075-94d7-6fb3b933b8c5 · outbound

This paper cites Developmental Dimensions in Under- standing Interpersonal Features of Pain, pages 43–55.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Developmental Dimensions in Under- standing Interpersonal Features of Pain, pages 43–55

Reference 3

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Observation 6594fca2-4178-4861-913f-09802ab4b7a4 · outbound

This paper cites Why Do We Care? Evolutionary Mecha- nisms in the Social Dimension of Pain, pages 3–22.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Why Do We Care? Evolutionary Mecha- nisms in the Social Dimension of Pain, pages 3–22

Reference 4

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This paper cites an unresolved cited work.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Unresolved cited work

Reference 5

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This paper cites A regional examination of surgery and fracture treatment in iron age and roman britain.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods A regional examination of surgery and fracture treatment in iron age and roman britain

Reference 6

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Observation 83eb8baa-07f6-4922-9825-24514f47f7d3 · outbound

This paper cites Chronic pain: an update on burden, best practices, and new advances.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Chronic pain: an update on burden, best practices, and new advances

Reference 7

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Observation 4478a560-6059-4dd4-95a8-2da7a0ad7df7 · outbound

This paper cites Guidance on the management of pain in older people.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Guidance on the management of pain in older people

Reference 8

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This paper cites The Lancet , 392(10159):1789–1858, nov 2018.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods The Lancet , 392(10159):1789–1858, nov 2018

Reference 9

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This paper cites The State of US Health, 1990-2010: Burden of Diseases, Injuries, and Risk Factors.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods The State of US Health, 1990-2010: Burden of Diseases, Injuries, and Risk Factors

Reference 10

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Observation 8671bd42-649f-450d-b6a3-d25e6f7576a6 · outbound

This paper cites Gaskin and Patrick Richard.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Gaskin and Patrick Richard

Reference 11

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Observation 86317bf8-37d7-49e2-acbb-3b0727eb1ef1 · outbound

This paper cites The individual and societal bur- den of chronic pain in europe: the case for strategic prioritisation and action to im- prove knowledge and availability of appropriate care.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods The individual and societal bur- den of chronic pain in europe: the case for strategic prioritisation and action to im- prove knowledge and availability of appropriate care

Reference 12

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Observation 7b27a7d1-2328-4599-9de2-a703366ebaf4 · outbound

This paper cites The cost of pain in australia, 2019.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods The cost of pain in australia, 2019

Reference 13

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This paper cites Pathogenesis of Pain.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Pathogenesis of Pain

Reference 14

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This paper cites Rudd, Rita K.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Rudd, Rita K

Reference 15

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This paper cites Opioid complications and side effects.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Opioid complications and side effects

Reference 16

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Observation e11477b6-4587-4f8b-b085-f1fc84999ef2 · outbound

This paper cites Automatic assessment of pain based on deep learning methods: A systematic review.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Automatic assessment of pain based on deep learning methods: A systematic review

Reference 17

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Observation 02f3a6e0-b1ba-40b7-a227-13284fa8d17d · outbound

This paper cites The fifth vital sign: pain.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods The fifth vital sign: pain

Reference 18

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Observation 10dffff1-6843-48a7-bae0-d9647024160f · outbound

This paper cites Multimodal signal analysis for pain recognition in physiotherapy using wavelet scat- tering transform.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Multimodal signal analysis for pain recognition in physiotherapy using wavelet scat- tering transform

Reference 19

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A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Bostick, Lisa C

Reference 20

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Observation 39d8921c-8774-4225-805d-b1a7140c7021 · outbound

This paper cites Are people good prognosticators of their own pain? an exploration of the relationship between sex-specific pain beliefs and clinical pain evaluation.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Are people good prognosticators of their own pain? an exploration of the relationship between sex-specific pain beliefs and clinical pain evaluation

Reference 21

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Observation 4f62fbfb-a869-4794-a5c4-3db8f385313c · outbound

This paper cites A systematic review of neurophysiological sensing for the assessment of acute pain.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods A systematic review of neurophysiological sensing for the assessment of acute pain

Reference 22

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Observation 69d09705-1a46-4604-92ce-33796829c64c · outbound

This paper cites Cortical network response to acupuncture and the effect of the hegu point: An fnirs study.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Cortical network response to acupuncture and the effect of the hegu point: An fnirs study

Reference 23

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This paper cites Pain assessment tool with electrodermal activity for postop- erative patients: method validation study.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Pain assessment tool with electrodermal activity for postop- erative patients: method validation study

Reference 24

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Observation 675cdaa3-37c9-4e0a-950d-5a7f5bc6d002 · outbound

This paper cites Development of a pain atti- tudes questionnaire to assess stoicism and cautiousness for possible age differences.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Development of a pain atti- tudes questionnaire to assess stoicism and cautiousness for possible age differences

Reference 25

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This paper cites Sex differences in pain: a brief review of clinical and experimental findings.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Sex differences in pain: a brief review of clinical and experimental findings

Reference 26

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This paper cites Using sensor-fusion and machine-learning algorithms to assess acute pain in non-verbal infants: a study protocol.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Using sensor-fusion and machine-learning algorithms to assess acute pain in non-verbal infants: a study protocol

Reference 27

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This paper cites Medical evidence influence on inpatients and nurses pain ratings agreement.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Medical evidence influence on inpatients and nurses pain ratings agreement

Reference 28

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A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Hoffman, Sophie Trawalter, Jordan R

Reference 29

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A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Assess- ment of pain behaviors

Reference 30

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This paper cites Beyond pain scales: A critical phenomenology of the expression of pain.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Beyond pain scales: A critical phenomenology of the expression of pain

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This paper cites Wearable Devices: Current Status and Opportunities in Pain Assessment and Man- agement.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Wearable Devices: Current Status and Opportunities in Pain Assessment and Man- agement

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This paper cites Automatic recognition methods supporting pain assess- ment: A survey.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Automatic recognition methods supporting pain assess- ment: A survey

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A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods De Sario, Clifton R

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This paper cites Automatic pain intensity estimation based on electrocardiogram and demographic factors.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Automatic pain intensity estimation based on electrocardiogram and demographic factors

Reference 35

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A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Multi-task neural net- works for pain intensity estimation using electrocardiogram and demographic factors

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This paper cites A full transformer-based framework for au- tomatic pain estimation using videos.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods A full transformer-based framework for au- tomatic pain estimation using videos

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This paper cites Tachos, Stelios Andreadis, Vasileios C.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Tachos, Stelios Andreadis, Vasileios C

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Observation 58e5b476-7c0f-4f7b-946e-0c7bec834904 · outbound

This paper cites Synthetic thermal and rgb videos for auto- matic pain assessment utilizing a vision-mlp architecture.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Synthetic thermal and rgb videos for auto- matic pain assessment utilizing a vision-mlp architecture

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Observation 18e71408-4ba6-4c72-9f25-7874a1997c56 · outbound

This paper cites Twins-painvit: Towards a modality-agnostic vision transformer framework for multimodal automatic pain assessment using facial BIBLIOGRAPHY 167 videos and fnirs.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Twins-painvit: Towards a modality-agnostic vision transformer framework for multimodal automatic pain assessment using facial BIBLIOGRAPHY 167 videos and fnirs

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Observation 1bdb3378-5256-43d7-90e6-caeaa3c6fcae · outbound

This paper cites Painformer: a vision foundation model for automatic pain assessment, 2025.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Painformer: a vision foundation model for automatic pain assessment, 2025

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Observation 29b07080-1856-42f4-b9fe-8b0431f30205 · outbound

This paper cites The revised international association for the study of pain definition of pain: concepts, challenges, and compromises.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods The revised international association for the study of pain definition of pain: concepts, challenges, and compromises

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Observation f85f32d4-f702-47a0-ade1-11c3bcaa11ac · outbound

This paper cites Neuroanatomy and Neuropsychology of Pain.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Neuroanatomy and Neuropsychology of Pain

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Observation 18c0d3c8-f129-43fd-a43c-29a5cec2bf57 · outbound

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A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Unresolved cited work

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Observation 961d1b8b-ab1a-49c0-b12c-eb92447bd6a7 · outbound

This paper cites Almeida, Suely Roizenblatt, and Sergio Tufik.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Almeida, Suely Roizenblatt, and Sergio Tufik

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Observation 105d64eb-d88c-4b10-852f-320a6e5c33b5 · outbound

This paper cites Vania Apkarian, M.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Vania Apkarian, M

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Observation 85381265-0ae1-4b06-98ca-5d402eb1f593 · outbound

This paper cites Pathophys- iology of pain.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Pathophys- iology of pain

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Observation 941b19c1-74bf-4416-9b71-0d999c4f25ec · outbound

This paper cites an unresolved cited work.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Unresolved cited work

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Observation 0bcb4265-534d-4953-9f3a-cca967a86e53 · outbound

This paper cites Cellular and molecular mechanisms of pain.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Cellular and molecular mechanisms of pain

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Observation ee1e61bd-2706-4eba-ad40-eb0a9e2a9675 · outbound

This paper cites A classification of chronic pain for icd-11.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods A classification of chronic pain for icd-11

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Observation 3f5b5323-79de-427b-8cc2-5a64b5997f54 · outbound

This paper cites Automatic pain assessment from face video (continuous pain intensity estimation in adults and newborns).

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Automatic pain assessment from face video (continuous pain intensity estimation in adults and newborns)

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Observation 006727d8-e987-4a13-94c2-f47926d5ec56 · outbound

This paper cites Causes and consequences of inadequate management of acute pain.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Causes and consequences of inadequate management of acute pain

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Observation e9a2b138-1750-4ee6-b12e-85a1ec099332 · outbound

This paper cites Psychophysical parameters of a multidimensional pain scale in newborns.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Psychophysical parameters of a multidimensional pain scale in newborns

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Observation 117c38d3-0625-4882-8b19-702bc7bb7fe7 · outbound

This paper cites The checklist of nonverbal pain indicators.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods The checklist of nonverbal pain indicators

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Observation 7448185a-84bf-4330-b95a-cb7b07297de3 · outbound

This paper cites Pain behaviors in lbw infants accompany some” nonpainful” caregiving procedures.Neonatal network: NN, 16(3):33–40, 1997.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Pain behaviors in lbw infants accompany some” nonpainful” caregiving procedures.Neonatal network: NN, 16(3):33–40, 1997

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Observation b31f39ee-7f6f-419e-927b-8ac25f2f5b33 · outbound

This paper cites As- sessment of pain in the neonate.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods As- sessment of pain in the neonate

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Observation bc57e4fb-5201-4d3b-a6a9-1d8a9bc23d2e · outbound

This paper cites Swearing as a response to pain.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Swearing as a response to pain

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source=pdf_text observed=2026-08-15T23:12:33.548394Z digest=sha256:f361dcbe585ad12126e50413941b8c8e1c2f4fa05e65c5012daafa3829bd96c6

Observation aeff31bd-f5b3-4417-84e6-710c2ad3ffcc · outbound

This paper cites Swearing as a response to pain–effect of daily swearing frequency.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Swearing as a response to pain–effect of daily swearing frequency

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Observation 35d19242-c6cd-4592-8ee2-d4a07e5a60f1 · outbound

This paper cites Acute pain induces insulin resistance in humans.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Acute pain induces insulin resistance in humans

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source=pdf_text observed=2026-08-15T23:12:33.555162Z digest=sha256:08a4ed1453b7b0a2a9ec2426208a9728e153aab4eb227f7bd0d8ccf0e9b5c392

Observation b0cee67a-2cf3-4e1e-9a53-bf37a0dec33d · outbound

This paper cites Physiological responses of premature in- fants to a painful stimulus.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Physiological responses of premature in- fants to a painful stimulus

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source=pdf_text observed=2026-08-15T23:12:33.558627Z digest=sha256:2072a1e2ed1a3ca3cd317ce657767e15dd11aab03f16ffcb2d6d2bbdd050d4d5

Observation 60324764-3352-4c19-91ad-065b673045f2 · outbound

This paper cites Modulation of thermal pain-related brain activity with virtual reality: evidence from fmri.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Modulation of thermal pain-related brain activity with virtual reality: evidence from fmri

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Observation 27010e8e-4cfe-4223-ae7e-ec29b9a02c72 · outbound

This paper cites Assessment and management of pain in infants.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Assessment and management of pain in infants

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Observation c691a780-e99e-4d3d-a881-e5a6515d157b · outbound

This paper cites Pain mechanisms: a new theory.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Pain mechanisms: a new theory

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source=pdf_text observed=2026-08-15T23:12:33.569825Z digest=sha256:7464b79ab54cb3871fa3314ed62b5e3dfd96822f33226928a8c1a14cd782f3d1

Observation 503e4b0b-876e-4e84-a1c6-caf42bebde55 · outbound

This paper cites A biopsy- chosocial formulation of pain communication.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods A biopsy- chosocial formulation of pain communication

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source=pdf_text observed=2026-08-15T23:12:33.573265Z digest=sha256:f373832992c5e928b28bf119d2ce461bea1c2ef876ac8e28d61d0ecae2dfbe1f

Observation a9fcd9d2-07ab-4b3d-85a2-c855889e83cf · outbound

This paper cites Sex differences in experimental pain among healthy children: a systematic review and meta-analysis.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Sex differences in experimental pain among healthy children: a systematic review and meta-analysis

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Observation 725d9faa-fcad-49f4-8cd3-04df42fcf600 · outbound

This paper cites Men, masculinity, and pain.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Men, masculinity, and pain

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source=pdf_text observed=2026-08-15T23:12:33.581079Z digest=sha256:cb3156bbebf9d11cd3e099d64daedeb3f6e02b3a8590993dfccfc0e55e871124

Observation 54908d11-5766-410f-964c-18198c49b7c3 · outbound

This paper cites The effects of experimenter gender on pain report in male and female subjects.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods The effects of experimenter gender on pain report in male and female subjects

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source=pdf_text observed=2026-08-15T23:12:33.584556Z digest=sha256:01df30dcfd62df9cb798ff36c96f82a1d35ce885e473c03c9327a5f287a327de

Observation aee31c22-329c-4e9d-9816-32a32e94f10a · outbound

This paper cites Social influence and pain response in women and men.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Social influence and pain response in women and men

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source=pdf_text observed=2026-08-15T23:12:33.588874Z digest=sha256:549c0ed615b0ddd6e4a5189047623604d4003b1e1bf13fa5f59e5d0cd51358c5

Observation e0cbd697-6923-42d0-a28f-7d7d54d6c3dc · outbound

This paper cites Tough guys or sensitive guys? Disentangling the role of examiner sex on patient pain reports.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Tough guys or sensitive guys? Disentangling the role of examiner sex on patient pain reports

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Observation 3b0eae9f-bb41-4e8b-b521-ae8523f1fb51 · outbound

This paper cites Gender-associated differences in emergency department pain management.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Gender-associated differences in emergency department pain management

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source=pdf_text observed=2026-08-15T23:12:33.595736Z digest=sha256:a261fdc5ace63d8593f636779adb7d03bade53795d7dfeb94fa8da0f134d65bd

Observation 3b06f0f7-3fbd-4225-bc18-4537382c9cfa · outbound

This paper cites Patient characteristics that influence physician behavior.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Patient characteristics that influence physician behavior

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source=pdf_text observed=2026-08-15T23:12:33.599644Z digest=sha256:2b74b8943dab82a5eb128c291f3105da91b660639a8046e036d4566dd141b873

Observation d27afca5-d5c5-4293-b63d-2eca72de2989 · outbound

This paper cites Sex and Gender as Social-Contextual Factors in Pain , pages 433–.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Sex and Gender as Social-Contextual Factors in Pain , pages 433–

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source=pdf_text observed=2026-08-15T23:12:33.603805Z digest=sha256:ea937b57f2915b0ca42ed2d92219f6d1cfb22d83a46a1489b010956ddc69b483

Observation f906188c-8b97-4d06-b3f9-afcabf4d53b8 · outbound

This paper cites Pain in Older Adults: Caregiver Challenges, pages 415–429.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Pain in Older Adults: Caregiver Challenges, pages 415–429

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source=pdf_text observed=2026-08-15T23:12:33.611536Z digest=sha256:d03ae0056703264fb4ad3cc0290a4a5795d8bb6ec69324071ac1dbe9719d50cf

Observation 10b07e1e-2780-485f-9c8d-388b7ecba321 · outbound

This paper cites A qualitative investigation of the roles and perspectives of older patients with advanced cancer and their family caregivers in managing pain in the home.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods A qualitative investigation of the roles and perspectives of older patients with advanced cancer and their family caregivers in managing pain in the home

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Observation 07fcc6b5-8c9c-43f9-bdfa-cde9a63f9011 · outbound

This paper cites Mea- suring movement-exacerbated pain in cognitively impaired frail elders.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Mea- suring movement-exacerbated pain in cognitively impaired frail elders

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source=pdf_text observed=2026-08-15T23:12:33.619302Z digest=sha256:ac9354eb924712e4f9230ba81262c90e19055bfba0e33a1885d86d2de351d99a

Observation 53a951d4-3a86-4b80-be67-b2a96e5ffbef · outbound

This paper cites The dementia antipsychotic withdrawal trial (DART-AD): long-term follow- up of a randomised placebo-controlled trial.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods The dementia antipsychotic withdrawal trial (DART-AD): long-term follow- up of a randomised placebo-controlled trial

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source=pdf_text observed=2026-08-15T23:12:33.623154Z digest=sha256:22756f7e2d0b07999a9c345a1051c56949fdcfa177f61f8fd700ba5d6189da5d

Observation 73e2d1a7-d9f3-4ae6-b4e5-78f15a2e5f93 · outbound

This paper cites Decline in Emotional Face Recognition Among Elderly People May Reflect Mild Cognitive Impairment.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Decline in Emotional Face Recognition Among Elderly People May Reflect Mild Cognitive Impairment

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Observation 9eb777a4-dce6-426a-9151-24a6638c5928 · outbound

This paper cites Assessing pain in infancy: The caregiver context.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Assessing pain in infancy: The caregiver context

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Observation fcaaf4b3-be19-4be0-a3cc-7ebcac6b67e1 · outbound

This paper cites Social modulation of facial pain display in high-catastrophizing chil- dren: an observational study in schoolchildren and their parents.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Social modulation of facial pain display in high-catastrophizing chil- dren: an observational study in schoolchildren and their parents

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Observation 178f19c6-ac84-4369-a671-a97a0c2a4700 · outbound

This paper cites Keefe, Robert H.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Keefe, Robert H

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Observation ced2e3ab-1e5e-4307-9481-b3f8dab3425b · outbound

This paper cites Burns, Phillip Quartana, Wesley Gilliam, Erika Gray, Justin Matsuura, Carla Nappi, Brandy Wolfe, and Kenneth Lofland.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Burns, Phillip Quartana, Wesley Gilliam, Erika Gray, Justin Matsuura, Carla Nappi, Brandy Wolfe, and Kenneth Lofland

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Observation 83ac2e79-822e-437e-85c8-9d719970e268 · outbound

This paper cites Health Care Professionals’ Reactions to Patient Pain: Impact of Knowledge About Medical Evidence and Psychosocial Influences.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Health Care Professionals’ Reactions to Patient Pain: Impact of Knowledge About Medical Evidence and Psychosocial Influences

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Observation 30e1bdc5-335f-443c-88cc-1ef64db2e761 · outbound

This paper cites When race matters: disagreement in pain perception between patients and their physicians in primary care.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods When race matters: disagreement in pain perception between patients and their physicians in primary care

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Observation 3e44ee60-ac5b-46ea-b5a7-063e02ed65c3 · outbound

This paper cites Meints, Madison Stout, Samuel Abplanalp, and Adam T.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Meints, Madison Stout, Samuel Abplanalp, and Adam T

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Observation 313a8b02-d529-41c3-9a49-ca4bbdeefd19 · outbound

This paper cites Race and Pain: A Dual Injustice , pages 455–480.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Race and Pain: A Dual Injustice , pages 455–480

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Observation 9e6b4dea-83ac-451e-a3b6-94b7369dc134 · outbound

This paper cites Pain and its treatment in outpatients with metastatic cancer.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Pain and its treatment in outpatients with metastatic cancer

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Observation 33b232ab-9377-4f90-affb-c36f2a94ccb0 · outbound

This paper cites Facing Others in Pain: Why Context Matters , pages 241–269.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Facing Others in Pain: Why Context Matters , pages 241–269

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Observation c94d5edd-6e47-445c-88f0-88830b0b9e31 · outbound

This paper cites Tait, John T.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Tait, John T

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Observation 3d8364b8-f3dd-4cec-a545-8ae46833e596 · outbound

This paper cites National Academies Press, oct 2011.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods National Academies Press, oct 2011

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Observation 08c5212a-8e0a-4112-9c02-217b28de4c10 · outbound

This paper cites An ecological and lifespan approach of social influences on childhood pain experiences.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods An ecological and lifespan approach of social influences on childhood pain experiences

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Observation 05ae814e-a139-421f-b1e8-791909da3919 · outbound

This paper cites The child version of the pain catastrophizing scale (PCS-C): a preliminary validation.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods The child version of the pain catastrophizing scale (PCS-C): a preliminary validation

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Observation 3644a627-2850-4f03-8cc0-75f1e8880303 · outbound

This paper cites Social information processing in adolescents with chronic pain: my friends don’t really understand me.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Social information processing in adolescents with chronic pain: my friends don’t really understand me

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Observation 4db643c2-2414-4044-8845-3a5eea4733a7 · outbound

This paper cites an unresolved cited work.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Unresolved cited work

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Observation fe359f29-6f2d-4d2d-b731-653a7be0bdf4 · outbound

This paper cites Infant pain management: a developmental neurobiological approach.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Infant pain management: a developmental neurobiological approach

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Observation 83444405-46df-4577-8402-bf8a04694a52 · outbound

This paper cites McAuley, Monzurul Alam, Zina Trost, Caroline D.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods McAuley, Monzurul Alam, Zina Trost, Caroline D

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Observation dabd31ce-80f1-4a2f-9159-72013fbe450a · outbound

This paper cites Validation of Digi- tal Visual Analog Scale Pain Scoring With a Traditional Paper-based Visual Analog Scale in Adults.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Validation of Digi- tal Visual Analog Scale Pain Scoring With a Traditional Paper-based Visual Analog Scale in Adults

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Observation 00e4f552-901c-473a-9129-0defab3165ee · outbound

This paper cites Pain assessment.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Pain assessment

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Observation 85684106-1101-43ec-b7b2-97d11223ef31 · outbound

This paper cites Prkachin and Patricia E.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Prkachin and Patricia E

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Observation 37534473-0516-4dc9-89a4-92adec4dd32a · outbound

This paper cites The development of a tool to assess neonatal pain.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods The development of a tool to assess neonatal pain

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Observation 21c90b9e-21e4-4adf-a435-eb4d72189433 · outbound

This paper cites Opioid pseudoaddiction–an iatrogenic syn- drome.

A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods Opioid pseudoaddiction–an iatrogenic syn- drome

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Pith citing papers

Observation 58062f7e-46e9-468e-bc67-c51399f77654 · inbound

A Lightweight Transformer for Pain Recognition from Brain Activity cites this paper.

A Lightweight Transformer for Pain Recognition from Brain Activity A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods

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arxiv_id, observed 2026-05-11T11:01:05.497421Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-20T06:33:59.587034+00:00.

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Observation 4d8ffe84-9577-4e2e-a5eb-cff5832eba22 · inbound

A Lightweight Transformer for Pain Recognition from Brain Activity cites this paper.

A Lightweight Transformer for Pain Recognition from Brain Activity A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods

Reference 20

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arxiv_id, observed 2026-05-13T06:52:26.092875Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-20T06:33:59.587034+00:00.

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Observation bb863823-bbe6-4bc4-b4cd-770c2acc08b1 · inbound

A Lightweight Transformer for Pain Recognition from Brain Activity cites this paper.

A Lightweight Transformer for Pain Recognition from Brain Activity A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods

Reference 20

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arxiv_id, observed 2026-05-21T00:19:16.758332Z

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No event found in the named queried sources as of 2026-08-20T06:33:59.587034+00:00.

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Observation 8a97be4c-087b-4828-a308-dae81bdba526 · inbound

One-Block Transformer (1BT) for EEG-Based Cognitive Workload Assessment cites this paper.

One-Block Transformer (1BT) for EEG-Based Cognitive Workload Assessment A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods

Reference 12

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No event found in the named queried sources as of 2026-08-20T06:33:59.587034+00:00.

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Observation d13d649f-f50b-4981-9a50-8262ba3cc37c · inbound

One-Block Transformer (1BT) for EEG-Based Cognitive Workload Assessment cites this paper.

One-Block Transformer (1BT) for EEG-Based Cognitive Workload Assessment A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods

Reference 12

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arxiv_id, observed 2026-05-21T01:19:20.887664Z

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No event found in the named queried sources as of 2026-08-20T06:33:59.587034+00:00.

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Observation 34aa3bdb-33a7-42c0-bab9-6f7a51d0d8c8 · inbound

A Unified Tokenization Framework for Pain Recognition using Heterogeneous 3D Modalities cites this paper.

A Unified Tokenization Framework for Pain Recognition using Heterogeneous 3D Modalities A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods

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source=pdf_text observed=2026-08-01T11:58:55.747816Z digest=sha256:7d97da492d4d25f70fd75f9894fad84c913caa235f78ab79baf1e0cf3fb462cb

Observation 42a6d4fd-30da-4d95-b987-31fb19b89fb8 · inbound

ReFace: Reorganizing Facial Spatiotemporal Representations for Improved Pain Assessment cites this paper.

ReFace: Reorganizing Facial Spatiotemporal Representations for Improved Pain Assessment A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods

Reference 2

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source=pdf_text observed=2026-08-01T11:56:56.346055Z digest=sha256:05a5d52fa4912d6b4e6f90471028b2d44349737169dee826bd61f2366307ad9c

Observation b8cdca4c-d99e-4a20-86b3-bc3d08033a13 · inbound

An Exploratory Analysis of Pain Localization via Explainable Computational Modeling cites this paper.

An Exploratory Analysis of Pain Localization via Explainable Computational Modeling A Pain Assessment Framework based on multimodal data and Deep Machine Learning methods

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source=pdf_text observed=2026-08-01T11:55:55.267185Z digest=sha256:625222d02a444ce5b6f4411daea5bead821280fdba9c0c365ba71d3c4b710963