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Clinical trialNCT03678389RecruitingInterventional

Feasibility of Endosphenoidal Coil Placement for Imaging of the Sella During Transsphenoidal Surgery

SponsorNational Institute of Neurological Disorders and Stroke (NINDS)Enrollment70Pituitary Neoplasm
View the registry record on ClinicalTrials.gov

Summary

The lay summary the sponsor registered on ClinicalTrials.gov.

Tumors of the pituitary gland comprise up to 20% of all brain tumors. The central location and the small size of the pituitary gland make the management of tumors particularly challenging. Transsphenoidal surgery (TSS) to resect pituitary tumors is highly successful at achieving complete cure for functional pituitary adenomas. It is most successful when such adenomas can be localized by preoperative MRI of the pituitary. However, in some instances, small functional tumors cannot be visualized. In the case of Cushing s disease (CD), such non-visualization may be as high as 50%. The success of transsphenoidal surgery is substantially reduced in patients with negative MRI, as some of the adenomas that cause CD are so small that they are difficult to find during surgical exploration of the pituitary. Surgical success is also diminished when tumors invade the walls of the cavernous sinus. MRI of the pituitary lacks imaging resolution to detect such invasion and so the surgeon cannot perform a complete resection with surgery based on the preoperative MRI. Signal to noise ratio (SNR) is the primary constraint on achieving high quality high resolution MRI images. SNR can be improved by longer scan times or by increasing the field strength of the MRI magnet. SNR is proportional to the square of imaging time, however, long imaging times are not clinically feasible. SNR is linearly proportional to field strength, however, replacing MRI magnets is cost prohibitive. Another strong determinant of SNR is the proximity of the MRI receiver coil to the tissue being imaged. Placement of a coil in close proximity to the structure of interest dramatically increases SNR, often as much as 10-fold. Clinically this is routinely put into practice for superficial body parts, such as the temporomandibular joints, in which small coils are placed directly over the joints to achieve rapid high-resolution imaging. For deep structures, the use of superficial coils is of no benefit. This has led to the development of endocavitary coils, such as the endorectal coil used to image the prostate gland. Such coils are now in routine clinical use here at the NIH and elsewhere. During routine TSS, the surgical approach to the pituitary provides a route for placement of imaging tools, such as handheld ultrasound and Doppler probes in close proximity to the gland. Extending this model to MRI imaging, we realized that an endocavitary surface coil within the sphenoid sinus will allow for a marked improvement in SNR for imaging the sella. To this end, we have developed an endosphenoidal coil (ESC), demonstrated its MRI safety, and performed preliminary studies in cadaver heads to determine that the ESC can be placed through the transsphenoidal approach. Placement of ESC needs no modification in the surgical TSS approach to the pituitary gland. The goal of this protocol is to examine the safety and feasibility of ESC placement and imaging during TSS.

Investigators

The overall officials registered on this study. Names that resolve to a findmyKOL profile link to it; the rest are shown as registered.

  • Prashant Chittiboina, M.D.

    National Institute of Neurological Disorders and Stroke (NINDS)

    Principal Investigator

A profile link is shown only when the registered name resolves to a person record with a confident, namesake-checked match; ambiguous names stay unlinked.

Sites

1 registered facility, with the per-site recruitment status where the registry publishes one. ClinicalTrials.gov does not publish per-site enrollment counts.

United States
  • National Institutes of Health Clinical Center

    Bethesda, Maryland, United States

    Recruiting

Site investigator names are published by ClinicalTrials.gov only while a study recruits, so completed studies list sites without them.

Drugs studied

No drug or biological interventions are in our data for this study — it may test a procedure, device or behavioral intervention, or the intervention list isn't in our current snapshot. See the registry record ↗. Why? →

Registration & key dates

Registry attributes as recorded on the ClinicalTrials.gov study record.

Start
9 May 2019
Primary completion
1 Mar 2028
Completion
1 Dec 2028
Last update posted
13 Aug 2026
Registered enrollment
70
Registry id
NCT03678389

Source: ClinicalTrials.gov, via the CTTI AACT database, data as of 24 Aug 2026. Registry facts are shown as registered by the study sponsor; findmyKOL does not interpret them.