Remote Organ Assessment

Remote organ assessment is the evaluation of organ structure or function from a distance, using digital health technologies to support clinical decision-making when in-person examination is limited. The process combines patient-reported symptoms with remotely collected measurements, such as vital signs, wearable sensor data, laboratory results, or medical imaging, which clinicians review through secure communication systems. In medicine, this approach can support screening, chronic disease monitoring, postoperative follow-up, and triage while reducing travel and enabling earlier recognition of deterioration. Its reliability depends on measurement quality, data connectivity, clinical validation, and appropriate integration with in-person care.

Remote Organ Assessment - Related Videos

Research

JoVE Journal - Neuroscience

Using the Electroretinogram to Assess Function in the Rodent Retina and the Protective Effects of Remote Limb Ischemic Preconditioning

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Cited by 22 •

2015

The electroretinogram (ERG) is an electrical potential generated by the retina in response to light. This paper describes how to use the ERG to assess retinal function, in dark-adapted rats, and how it can be can be used to assess a neuroprotective intervention, in the present case remote ischemic preconditioning.

The Measurement of Unsteady Surface Pressure Using a Remote Microphone Probe

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Cited by 11 •

2016

Here, we present a protocol to measure, with high spatial resolution, the unsteady surface pressure in turbulent flows. This method demonstrates the construction of a remote microphone probe (RMP) and the determination of its frequency-dependent, complex transfer function. An analytical determination of the dynamic response is presented and validated.

Research

JoVE Journal - Neuroscience
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Remotely Supervised Transcranial Direct Current Stimulation: An Update on Safety and Tolerability

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Cited by 52 •

2017

This manuscript provides an updated remote supervision protocol that enables participation in transcranial direct current stimulation (tDCS) clinical trials while receiving treatment sessions from home. The protocol has been successfully piloted in both patients with multiple sclerosis and Parkinson's disease.

Research

JoVE Journal - Medicine
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A Protocol for the Use of Remotely-Supervised Transcranial Direct Current Stimulation (tDCS) in Multiple Sclerosis (MS)

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Cited by 51 •

2015

The goal of this pilot study is to describe a protocol for the remotely-supervised delivery of transcranial direct current stimulation (tDCS) so that the procedure maintains standards of in-clinic practice, including safety, reproducibility, and tolerability. The feasibility of this protocol was tested in participants with multiple sclerosis (MS).

Research

JoVE Journal - Medicine
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Remote Magnetic Navigation for Accurate, Real-time Catheter Positioning and Ablation in Cardiac Electrophysiology Procedures

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Cited by 51 •

2013

This report provides a detailed description of a new remote navigation system based on magnetic driven forces, which has been recently introduced as a new robotic tool for human cardiac electrophysiology procedures.

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